Chinese Journal OF Rice Science ›› 2020, Vol. 34 ›› Issue (5): 457-469.DOI: 10.16819/j.1001-7216.2020.9117
• Research Papers • Previous Articles Next Articles
Chunmei XU1, Lilun YUAN2, Song CHEN1, Guang CHU1, Weifa YE2, Yuhua DING2, Danying WANG1,*(), Xiufu ZHANG1,*(
)
Received:
2019-11-04
Revised:
2019-12-30
Online:
2020-09-10
Published:
2020-09-10
Contact:
Danying WANG, Xiufu ZHANG
徐春梅1, 袁立伦2, 陈松1, 褚光1, 叶为发2, 丁玉华2, 王丹英1,*(), 章秀福1,*(
)
通讯作者:
王丹英,章秀福
基金资助:
CLC Number:
Chunmei XU, Lilun YUAN, Song CHEN, Guang CHU, Weifa YE, Yuhua DING, Danying WANG, Xiufu ZHANG. Difference in Growth Characteristics, Utilization of Temperature and Illumination of Double- Cropping High Quality Late Rice in Different Ecological Regions of the Lower Reaches of the Yangtze River[J]. Chinese Journal OF Rice Science, 2020, 34(5): 457-469.
徐春梅, 袁立伦, 陈松, 褚光, 叶为发, 丁玉华, 王丹英, 章秀福. 长江下游不同生态区双季优质晚稻生长特性和温光利用差异[J]. 中国水稻科学, 2020, 34(5): 457-469.
Add to citation manager EndNote|Ris|BibTeX
URL: http://www.ricesci.cn/EN/10.16819/j.1001-7216.2020.9117
变异来源 Source of variation | 自由度 df | 平方和 Sum of square | 均方 Mean square | F值 F-value | F0.05 | F0.01 |
---|---|---|---|---|---|---|
年份Year | 1 | 0.26 | 0.26 | 4.05 ns | 4.17 | 7.56 |
纬度 Latitude | 1 | 6.95 | 6.95 | 378.16** | 4.17 | 7.56 |
类型 Type | 3 | 25.39 | 8.64 | 460.52** | 2.92 | 4.51 |
年份×纬度Year × Latitude | 1 | 0.04 | 0.04 | 1.07 ns | 4.17 | 7.56 |
年份×类型Year × Type | 3 | 0.12 | 0.04 | 1.07 ns | 2.92 | 4.51 |
纬度×类型 Latitude × Type | 3 | 0.95 | 0.32 | 17.17** | 2.92 | 4.51 |
年份×纬度×类型Year × Latitude ×Type | 3 | 0.08 | 0.03 | 1.40 ns | 2.92 | 4.51 |
误差 Error | 15 | 0.55 | 0.02 | |||
总变异 Total | 47 | 34.54 |
Table 1 Analysis of variances of grain yield with different latitudes and types in different years.
变异来源 Source of variation | 自由度 df | 平方和 Sum of square | 均方 Mean square | F值 F-value | F0.05 | F0.01 |
---|---|---|---|---|---|---|
年份Year | 1 | 0.26 | 0.26 | 4.05 ns | 4.17 | 7.56 |
纬度 Latitude | 1 | 6.95 | 6.95 | 378.16** | 4.17 | 7.56 |
类型 Type | 3 | 25.39 | 8.64 | 460.52** | 2.92 | 4.51 |
年份×纬度Year × Latitude | 1 | 0.04 | 0.04 | 1.07 ns | 4.17 | 7.56 |
年份×类型Year × Type | 3 | 0.12 | 0.04 | 1.07 ns | 2.92 | 4.51 |
纬度×类型 Latitude × Type | 3 | 0.95 | 0.32 | 17.17** | 2.92 | 4.51 |
年份×纬度×类型Year × Latitude ×Type | 3 | 0.08 | 0.03 | 1.40 ns | 2.92 | 4.51 |
误差 Error | 15 | 0.55 | 0.02 | |||
总变异 Total | 47 | 34.54 |
品种类型 Type of variety | 试验地 Site | 纬度 Latitude /° | 有效穗数 Effective panicle number/(×104·hm-2) | 每穗粒数 Spikelet number per panicle | 总颖花量 Total number of spikelets /(×104·hm-2) | 结实率 Filled-grain percentage/% | 千粒重 1000-grain weight/g | 实际产量 Actual yield /(t·hm-2) |
---|---|---|---|---|---|---|---|---|
杂交籼稻 IHR | 安徽庐江 Lujiang, Anhui Province | 31.15 | 384.79 a | 124.51 b | 4.78 a | 82.35 a | 24.91 a | 9.00 a |
浙江富阳 Fuyang, Zhejiang Province | 30.05 | 334.17 b | 148.22 a | 4.89 a | 82.32 a | 23.97 a | 8.44 b | |
常规籼稻 ICR | 安徽庐江 Lujiang, Anhui Province | 31.15 | 351.92 a | 114.38 b | 4.05 a | 80.99 a | 26.96 a | 7.90 a |
浙江富阳 Fuyang, Zhejiang Province | 30.05 | 297.08 b | 129.25 a | 3.81 a | 80.48 a | 25.70 b | 7.11 b | |
常优杂粳 CYJHR | 安徽庐江 Lujiang, Anhui Province | 31.15 | 390.37 a | 127.80 b | 4.99 a | 74.68 a | 27.32 a | 9.79 a |
浙江富阳 Fuyang, Zhejiang Province | 30.05 | 290.32 b | 144.63 a | 4.20 a | 80.92 a | 27.18 a | 8.67 b | |
常规粳稻 JCR | 安徽庐江 Lujiang, Anhui Province | 31.15 | 419.23 a | 109.87 b | 4.56 a | 82.79 a | 27.08 a | 9.59 a |
浙江富阳 Fuyang, Zhejiang Province | 30.05 | 319.47 b | 124.27 a | 3.97 b | 87.25 a | 27.39 a | 8.53 b |
Table 2 Yield and its components of double cropping late rice in two ecological areas.
品种类型 Type of variety | 试验地 Site | 纬度 Latitude /° | 有效穗数 Effective panicle number/(×104·hm-2) | 每穗粒数 Spikelet number per panicle | 总颖花量 Total number of spikelets /(×104·hm-2) | 结实率 Filled-grain percentage/% | 千粒重 1000-grain weight/g | 实际产量 Actual yield /(t·hm-2) |
---|---|---|---|---|---|---|---|---|
杂交籼稻 IHR | 安徽庐江 Lujiang, Anhui Province | 31.15 | 384.79 a | 124.51 b | 4.78 a | 82.35 a | 24.91 a | 9.00 a |
浙江富阳 Fuyang, Zhejiang Province | 30.05 | 334.17 b | 148.22 a | 4.89 a | 82.32 a | 23.97 a | 8.44 b | |
常规籼稻 ICR | 安徽庐江 Lujiang, Anhui Province | 31.15 | 351.92 a | 114.38 b | 4.05 a | 80.99 a | 26.96 a | 7.90 a |
浙江富阳 Fuyang, Zhejiang Province | 30.05 | 297.08 b | 129.25 a | 3.81 a | 80.48 a | 25.70 b | 7.11 b | |
常优杂粳 CYJHR | 安徽庐江 Lujiang, Anhui Province | 31.15 | 390.37 a | 127.80 b | 4.99 a | 74.68 a | 27.32 a | 9.79 a |
浙江富阳 Fuyang, Zhejiang Province | 30.05 | 290.32 b | 144.63 a | 4.20 a | 80.92 a | 27.18 a | 8.67 b | |
常规粳稻 JCR | 安徽庐江 Lujiang, Anhui Province | 31.15 | 419.23 a | 109.87 b | 4.56 a | 82.79 a | 27.08 a | 9.59 a |
浙江富阳 Fuyang, Zhejiang Province | 30.05 | 319.47 b | 124.27 a | 3.97 b | 87.25 a | 27.39 a | 8.53 b |
品种类型 Type of variety | 试验地 Site | 纬度 Latitude /° | 播种期 S (Month-Day) | 移栽期 T (Month-Day) | 齐穗期 H (Month-Day) | 成熟期 M (Month-Day) | 播种-齐穗期天数 S-H/d | 齐穗-成熟期天数 H-M/d | 全生育期天数 Growth duration/d |
---|---|---|---|---|---|---|---|---|---|
杂交籼稻 IHR | 安徽庐江 Lujiang, Anhui Province | 31.15 | 06-26 | 07-15 | 09-02–9-14 (09-09) | 10-16–10-30 (10-25) | 75.2 a | 46.5 a | 121.7 a |
浙江富阳 Fuyang, Zhejiang Province | 30.05 | 06-27 | 07-19 | 09-01–9-14 (09-08) | 10-4–10-26 (10-18) | 73.5 a | 39.8 b | 113.3 b | |
常规籼稻 ICR | 安徽庐江 Lujiang, Anhui Province | 31.15 | 06-26 | 07-15 | 09-06–9-12 (09-09) | 10-16–11-5 (10-28) | 75.7 a | 48.5 a | 124.2 a |
浙江富阳 Fuyang, Zhejiang Province | 30.05 | 06-27 | 07-19 | 09-06–9-15 (09-12) | 10-10–10-26 (10-18) | 77.3 a | 36.5 b | 113.8 b | |
常优杂粳 CYJHR | 安徽庐江 Lujiang, Anhui Province | 31.15 | 06-26 | 07-15 | 09-15–9-20 (09-17) | 11-9–11-15 (11-12) | 83.5 a | 55.5 b | 139.0 a |
浙江富阳 Fuyang, Zhejiang Province | 30.05 | 06-27 | 07-19 | 09-10–9-12 (09-11) | 11-2–11-13 (11-7) | 76.0 b | 57.5 a | 133.5 b | |
常规粳稻 JCR | 安徽庐江 Lujiang, Anhui Province | 31.15 | 06-26 | 07-15 | 09-09–9-21 (09-15) | 10-24–11-13 (11-6) | 81.8 a | 51.2 b | 133.0 a |
浙江富阳 Fuyang, Zhejiang Province | 30.05 | 06-27 | 07-19 | 09-06–9-12 (09-10) | 10-22–11-3 (11-3) | 75.0 b | 54.5 a | 129.5 b |
Table 3 Growth duration of double cropping late rice of two ecological areas.
品种类型 Type of variety | 试验地 Site | 纬度 Latitude /° | 播种期 S (Month-Day) | 移栽期 T (Month-Day) | 齐穗期 H (Month-Day) | 成熟期 M (Month-Day) | 播种-齐穗期天数 S-H/d | 齐穗-成熟期天数 H-M/d | 全生育期天数 Growth duration/d |
---|---|---|---|---|---|---|---|---|---|
杂交籼稻 IHR | 安徽庐江 Lujiang, Anhui Province | 31.15 | 06-26 | 07-15 | 09-02–9-14 (09-09) | 10-16–10-30 (10-25) | 75.2 a | 46.5 a | 121.7 a |
浙江富阳 Fuyang, Zhejiang Province | 30.05 | 06-27 | 07-19 | 09-01–9-14 (09-08) | 10-4–10-26 (10-18) | 73.5 a | 39.8 b | 113.3 b | |
常规籼稻 ICR | 安徽庐江 Lujiang, Anhui Province | 31.15 | 06-26 | 07-15 | 09-06–9-12 (09-09) | 10-16–11-5 (10-28) | 75.7 a | 48.5 a | 124.2 a |
浙江富阳 Fuyang, Zhejiang Province | 30.05 | 06-27 | 07-19 | 09-06–9-15 (09-12) | 10-10–10-26 (10-18) | 77.3 a | 36.5 b | 113.8 b | |
常优杂粳 CYJHR | 安徽庐江 Lujiang, Anhui Province | 31.15 | 06-26 | 07-15 | 09-15–9-20 (09-17) | 11-9–11-15 (11-12) | 83.5 a | 55.5 b | 139.0 a |
浙江富阳 Fuyang, Zhejiang Province | 30.05 | 06-27 | 07-19 | 09-10–9-12 (09-11) | 11-2–11-13 (11-7) | 76.0 b | 57.5 a | 133.5 b | |
常规粳稻 JCR | 安徽庐江 Lujiang, Anhui Province | 31.15 | 06-26 | 07-15 | 09-09–9-21 (09-15) | 10-24–11-13 (11-6) | 81.8 a | 51.2 b | 133.0 a |
浙江富阳 Fuyang, Zhejiang Province | 30.05 | 06-27 | 07-19 | 09-06–9-12 (09-10) | 10-22–11-3 (11-3) | 75.0 b | 54.5 a | 129.5 b |
变异来源 Source of variation | 自由度 df | 平方和 Sum of square | 均方 Mean square | F值 F-value | F0.05 | F0.01 |
---|---|---|---|---|---|---|
年份 Year | 1 | 0.16 | 0.16 | 2.05 ns | 4.17 | 7.56 |
纬度 Latitude | 1 | 16.85 | 16.85 | 86.84** | 4.17 | 7.56 |
类型 Type | 3 | 25.51 | 8.50 | 43.81** | 2.92 | 4.51 |
年份×纬度Year ×Latitude | 1 | 0.08 | 0.08 | 0.43 ns | 4.17 | 7.56 |
年份×类型Year × Type | 3 | 0.25 | 0.08 | 0.43 ns | 2.92 | 4.51 |
纬度×类型 Latitude × Type | 3 | 9.26 | 3.09 | 15.91** | 2.92 | 4.51 |
年份×纬度×类型Year × Latitude × Type | 3 | 0.25 | 0.08 | 0.43 ns | 2.92 | 4.51 |
误差 Error | 15 | 5.82 | 0.19 | |||
总变异 Total | 47 | 60.13 |
Table 4 Analysis of variances of grain dry matter with different latitudes and types in different years.
变异来源 Source of variation | 自由度 df | 平方和 Sum of square | 均方 Mean square | F值 F-value | F0.05 | F0.01 |
---|---|---|---|---|---|---|
年份 Year | 1 | 0.16 | 0.16 | 2.05 ns | 4.17 | 7.56 |
纬度 Latitude | 1 | 16.85 | 16.85 | 86.84** | 4.17 | 7.56 |
类型 Type | 3 | 25.51 | 8.50 | 43.81** | 2.92 | 4.51 |
年份×纬度Year ×Latitude | 1 | 0.08 | 0.08 | 0.43 ns | 4.17 | 7.56 |
年份×类型Year × Type | 3 | 0.25 | 0.08 | 0.43 ns | 2.92 | 4.51 |
纬度×类型 Latitude × Type | 3 | 9.26 | 3.09 | 15.91** | 2.92 | 4.51 |
年份×纬度×类型Year × Latitude × Type | 3 | 0.25 | 0.08 | 0.43 ns | 2.92 | 4.51 |
误差 Error | 15 | 5.82 | 0.19 | |||
总变异 Total | 47 | 60.13 |
品种类型 Type of variety | 试验地 Site | 纬度 Latitude/° | 干物质积累量 Dry matter accumulation/(t·hm-2) | 群体生长速率 Crop growth rate/(g·d-1m-2) | ||
---|---|---|---|---|---|---|
齐穗期 Heading stage | 成熟期 Maturing stage | 移栽-齐穗期 S-H | 齐穗-成熟期 H-M | |||
杂交籼稻 IHR | 安徽庐江 Lujiang, Anhui Province | 31° | 10.67 a | 19.28 a | 14.26 a | 18.49 b |
浙江富阳 Fuyang, Zhejiang Province | 30° | 9.88 b | 18.05 b | 13.47 b | 19.84 a | |
常规籼稻 ICR | 安徽庐江 Lujiang, Anhui Province | 31° | 9.95 a | 18.26 a | 13.14 a | 17.31b |
浙江富阳 Fuyang, Zhejiang Province | 30° | 9.66 a | 16.73 b | 12.49 b | 19.54 a | |
常优杂粳 CYJHR | 安徽庐江 Lujiang, Anhui Province | 31° | 10.31 a | 20.17 a | 12.33 a | 17.78 a |
浙江富阳 Fuyang, Zhejiang Province | 30° | 9.37 b | 19.64 a | 12.34 a | 17.80 a | |
常规粳稻 JCR | 安徽庐江 Lujiang, Anhui Province | 31° | 9.38 a | 20.28 a | 11.50 a | 21.48 a |
浙江富阳 Fuyang, Zhejiang Province | 30° | 8.38 b | 18.53 b | 11.16 a | 18.77 b |
Table 5 Effects of different ecological regions on dry matter accumulation and crop growth rate of double cropping late rice.
品种类型 Type of variety | 试验地 Site | 纬度 Latitude/° | 干物质积累量 Dry matter accumulation/(t·hm-2) | 群体生长速率 Crop growth rate/(g·d-1m-2) | ||
---|---|---|---|---|---|---|
齐穗期 Heading stage | 成熟期 Maturing stage | 移栽-齐穗期 S-H | 齐穗-成熟期 H-M | |||
杂交籼稻 IHR | 安徽庐江 Lujiang, Anhui Province | 31° | 10.67 a | 19.28 a | 14.26 a | 18.49 b |
浙江富阳 Fuyang, Zhejiang Province | 30° | 9.88 b | 18.05 b | 13.47 b | 19.84 a | |
常规籼稻 ICR | 安徽庐江 Lujiang, Anhui Province | 31° | 9.95 a | 18.26 a | 13.14 a | 17.31b |
浙江富阳 Fuyang, Zhejiang Province | 30° | 9.66 a | 16.73 b | 12.49 b | 19.54 a | |
常优杂粳 CYJHR | 安徽庐江 Lujiang, Anhui Province | 31° | 10.31 a | 20.17 a | 12.33 a | 17.78 a |
浙江富阳 Fuyang, Zhejiang Province | 30° | 9.37 b | 19.64 a | 12.34 a | 17.80 a | |
常规粳稻 JCR | 安徽庐江 Lujiang, Anhui Province | 31° | 9.38 a | 20.28 a | 11.50 a | 21.48 a |
浙江富阳 Fuyang, Zhejiang Province | 30° | 8.38 b | 18.53 b | 11.16 a | 18.77 b |
生育期 Growth stage | 项目 Item | 品种类型 Type of variety | ||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|
杂交籼稻 IHR | 常规籼稻 ICR | 常优杂粳 CYJHR | 常规粳稻 JCR | |||||||||
安徽庐江 Lujiang, Anhui Province | 浙江富阳 Fuyang, Zhejiang Province | 安徽庐江 Lujiang, Anhui Province | 浙江富阳 Fuyang, Zhejiang Province | 安徽庐江 Lujiang, Anhui Province | 浙江富阳 Fuyang, Zhejiang Province | 安徽庐江 Lujiang, Anhui Province | 浙江富阳 Fuyang, Zhejiang Province | |||||
播种-齐穗期 S-H | 日均温度 Average daily temperature/℃ | 29.03 a | 29.56 a | 29.02 a | 29.38 a | 28.58 a | 29.44 a | 28.67 a | 29.55 a | |||
日均温差 Average daily temperature difference/℃ | 8.00 a | 8.38 a | 8.05 a | 8.34 a | 7.98 a | 8.37 a | 8.01 a | 8.39 a | ||||
日均日照时数 Average daily sunshine hours/h | 6.88 b | 7.24 a | 6.90 a | 7.11 a | 6.64 b | 7.19 a | 6.70 b | 7.24 a | ||||
齐穗-成熟期 H-M | 日均温度 Average daily temperature /℃ | 20.35 b | 22.89 a | 20.06 b | 22.35 a | 17.91 b | 21.28 a | 18.61 b | 21.52 a | |||
日均温差 Average daily temperature difference/℃ | 9.87 a | 7.47 b | 9.98 a | 7.54 b | 10.21 a | 7.53 b | 10.21 a | 7.50 b | ||||
日均日照时数 Average daily sunshine hours/h | 5.03 a | 5.03 a | 5.03 a | 5.14 a | 4.93 a | 4.93 a | 5.02 a | 4.85 a | ||||
全生育期 WGP | 日均温度 Average daily temperature /℃ | 25.70 b | 27.14 a | 25.51 b | 27.13 a | 24.30 b | 25.65 a | 25.00 a | 25.94 a | |||
日均温差 Average daily temperature difference/℃ | 8.72 a | 7.05 b | 8.80 a | 7.83 b | 8.89 a | 8.01 b | 8.80 a | 8.04 b | ||||
日均日照时数 Average daily sunshine hours/h | 6.14 b | 7.50 a | 6.19 b | 6.75 a | 5.98 a | 6.19 a | 6.07 a | 6.24 a |
Table 6 Difference of daily average temperature and light in different growth stages of double cropping late rice at different latitudes.
生育期 Growth stage | 项目 Item | 品种类型 Type of variety | ||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|
杂交籼稻 IHR | 常规籼稻 ICR | 常优杂粳 CYJHR | 常规粳稻 JCR | |||||||||
安徽庐江 Lujiang, Anhui Province | 浙江富阳 Fuyang, Zhejiang Province | 安徽庐江 Lujiang, Anhui Province | 浙江富阳 Fuyang, Zhejiang Province | 安徽庐江 Lujiang, Anhui Province | 浙江富阳 Fuyang, Zhejiang Province | 安徽庐江 Lujiang, Anhui Province | 浙江富阳 Fuyang, Zhejiang Province | |||||
播种-齐穗期 S-H | 日均温度 Average daily temperature/℃ | 29.03 a | 29.56 a | 29.02 a | 29.38 a | 28.58 a | 29.44 a | 28.67 a | 29.55 a | |||
日均温差 Average daily temperature difference/℃ | 8.00 a | 8.38 a | 8.05 a | 8.34 a | 7.98 a | 8.37 a | 8.01 a | 8.39 a | ||||
日均日照时数 Average daily sunshine hours/h | 6.88 b | 7.24 a | 6.90 a | 7.11 a | 6.64 b | 7.19 a | 6.70 b | 7.24 a | ||||
齐穗-成熟期 H-M | 日均温度 Average daily temperature /℃ | 20.35 b | 22.89 a | 20.06 b | 22.35 a | 17.91 b | 21.28 a | 18.61 b | 21.52 a | |||
日均温差 Average daily temperature difference/℃ | 9.87 a | 7.47 b | 9.98 a | 7.54 b | 10.21 a | 7.53 b | 10.21 a | 7.50 b | ||||
日均日照时数 Average daily sunshine hours/h | 5.03 a | 5.03 a | 5.03 a | 5.14 a | 4.93 a | 4.93 a | 5.02 a | 4.85 a | ||||
全生育期 WGP | 日均温度 Average daily temperature /℃ | 25.70 b | 27.14 a | 25.51 b | 27.13 a | 24.30 b | 25.65 a | 25.00 a | 25.94 a | |||
日均温差 Average daily temperature difference/℃ | 8.72 a | 7.05 b | 8.80 a | 7.83 b | 8.89 a | 8.01 b | 8.80 a | 8.04 b | ||||
日均日照时数 Average daily sunshine hours/h | 6.14 b | 7.50 a | 6.19 b | 6.75 a | 5.98 a | 6.19 a | 6.07 a | 6.24 a |
生育期 Growth stage | 项目 Item | 品种类型 Type of variety | |||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|
杂交籼稻 IHR | 常规籼稻 ICR | 常优杂粳 CYJHR | 常规粳稻 JCR | ||||||||||
安徽庐江 Lujiang, Anhui Province | 浙江富阳 Fuyang, Zhejiang Province | 安徽庐江 Lujiang, Anhui Province | 浙江富阳 Fuyang, Zhejiang Province | 安徽庐江 Lujiang, Anhui Province | 浙江富阳 Fuyang, Zhejiang Province | 安徽庐江 Lujiang, Anhui Province | 浙江富阳 Fuyang, Zhejiang Province | ||||||
播种-齐穗期 S-H | 有效积温 Effective accumulated temperature/℃ | 1447.70 a | 1456.72 a | 1457.13 a | 1517.70 a | 1570.05 a | 1496.95 a | 1545.37 a | 1485.09 a | ||||
日照时数 Illumination hour/h | 523.38 a | 539.18 a | 528.60 a | 555.98 a | 560.75 a | 553.80 a | 554.73 a | 549.78 a | |||||
太阳辐射 Solar radiation/(MJ·m-2) | 1349.80 a | 1358.77 a | 1361.84 a | 1419.12 a | 1478.35 a | 1399.77 a | 1454.68 a | 1384.66 b | |||||
齐穗-成熟期 H-M | 有效积温 Effective accumulated temperature/℃ | 491.30 a | 516.53 a | 495.53 a | 460.37 a | 439.20 b | 618.40 a | 445.48 b | 607.13 a | ||||
日照时数 Illumination hour/h | 238.43 a | 207.07 b | 249.28 a | 192.02 b | 278.70 a | 282.45 a | 261.82 a | 270.08 a | |||||
太阳辐射 Solar radiation/(MJ·m-2) | 744.86 a | 580.66 b | 772.33 a | 526.80 b | 833.22 a | 777.68 b | 790.79 a | 750.14 b | |||||
全生育期 WGP | 有效积温 Effective accumulated temperature/℃ | 1923.53 a | 1957.35 a | 1938.53 a | 1962.23 a | 2001.25 a | 2102.35 a | 1975.93 a | 2076.70 a | ||||
日照时数 Illumination hour/h | 756.87 a | 739.87 b | 774.70 a | 742.98 b | 837.10 a | 831.60 a | 811.65 a | 814.18 a | |||||
太阳辐射 Solar radiation/(MJ·m-2) | 2078.78 a | 1923.15 b | 2116.89 a | 1929.89 b | 2303.27 a | 2162.39 b | 2229.35 a | 2119.23 b |
Table 7 Difference of effective accumulated temperature and light in different growth stages of double cropping late rice at two latitudes.
生育期 Growth stage | 项目 Item | 品种类型 Type of variety | |||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|
杂交籼稻 IHR | 常规籼稻 ICR | 常优杂粳 CYJHR | 常规粳稻 JCR | ||||||||||
安徽庐江 Lujiang, Anhui Province | 浙江富阳 Fuyang, Zhejiang Province | 安徽庐江 Lujiang, Anhui Province | 浙江富阳 Fuyang, Zhejiang Province | 安徽庐江 Lujiang, Anhui Province | 浙江富阳 Fuyang, Zhejiang Province | 安徽庐江 Lujiang, Anhui Province | 浙江富阳 Fuyang, Zhejiang Province | ||||||
播种-齐穗期 S-H | 有效积温 Effective accumulated temperature/℃ | 1447.70 a | 1456.72 a | 1457.13 a | 1517.70 a | 1570.05 a | 1496.95 a | 1545.37 a | 1485.09 a | ||||
日照时数 Illumination hour/h | 523.38 a | 539.18 a | 528.60 a | 555.98 a | 560.75 a | 553.80 a | 554.73 a | 549.78 a | |||||
太阳辐射 Solar radiation/(MJ·m-2) | 1349.80 a | 1358.77 a | 1361.84 a | 1419.12 a | 1478.35 a | 1399.77 a | 1454.68 a | 1384.66 b | |||||
齐穗-成熟期 H-M | 有效积温 Effective accumulated temperature/℃ | 491.30 a | 516.53 a | 495.53 a | 460.37 a | 439.20 b | 618.40 a | 445.48 b | 607.13 a | ||||
日照时数 Illumination hour/h | 238.43 a | 207.07 b | 249.28 a | 192.02 b | 278.70 a | 282.45 a | 261.82 a | 270.08 a | |||||
太阳辐射 Solar radiation/(MJ·m-2) | 744.86 a | 580.66 b | 772.33 a | 526.80 b | 833.22 a | 777.68 b | 790.79 a | 750.14 b | |||||
全生育期 WGP | 有效积温 Effective accumulated temperature/℃ | 1923.53 a | 1957.35 a | 1938.53 a | 1962.23 a | 2001.25 a | 2102.35 a | 1975.93 a | 2076.70 a | ||||
日照时数 Illumination hour/h | 756.87 a | 739.87 b | 774.70 a | 742.98 b | 837.10 a | 831.60 a | 811.65 a | 814.18 a | |||||
太阳辐射 Solar radiation/(MJ·m-2) | 2078.78 a | 1923.15 b | 2116.89 a | 1929.89 b | 2303.27 a | 2162.39 b | 2229.35 a | 2119.23 b |
生育期 Growth stage | 项目 Item | 品种类型 Type of variety | ||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|
杂交籼稻 IHR | 常规籼稻 ICR | 常优杂粳 CYJHR | 常规粳稻 JCR | |||||||||
安徽庐江 Lujiang, Anhui Province | 浙江富阳 Fuyang, Zhejiang Province | 安徽庐江 Lujiang, Anhui Province | 浙江富阳 Fuyang, Zhejiang Province | 安徽庐江 Lujiang, Anhui Province | 浙江富阳 Fuyang, Zhejiang Province | 安徽庐江 Lujiang, Anhui Province | 浙江富阳 Fuyang, Zhejiang Province | |||||
播种-齐穗期 S-H | 有效积温利用率 Effective accumulated temperature utilization rate/% | 56.29 a | 48.58 b | 56.66 a | 50.61 b | 61.04 a | 49.92 b | 60.09 a | 49.52 b | |||
日照时数利用率 Illumination hour utilization rate/% | 29.07 a | 30.91 a | 29.36 a | 31.88 a | 31.14 a | 31.75 a | 30.81 a | 31.52 a | ||||
太阳辐射时数利用率 Solar radiation hour utilization rate/% | 24.29 a | 25.48 a | 24.50 b | 26.61 a | 26.60 a | 26.24 a | 26.17 a | 25.96 a | ||||
齐穗-成熟期 H-M | 有效积温利用率 Effective accumulated temperature utilization rate/% | 19.10 a | 17.22 b | 19.27 a | 15.35 b | 17.35 b | 20.62 a | 17.32 b | 20.25 a | |||
日照时数利用率 Illumination hour utilization rate/% | 13.24 a | 11.87 b | 13.84 a | 11.01 b | 15.48 a | 16.19 a | 14.54 a | 15.48 a | ||||
太阳辐射时数利用率 Solar radiation hour utilization rate/% | 13.40 a | 10.89 b | 13.90 a | 9.88 b | 15.10 a | 14.58 a | 14.23 a | 14.06 a | ||||
全生育期 WGP | 有效积温利用率 Effective accumulated temperature utilization rate/% | 74.76 a | 65.27 b | 75.37 a | 65.53 b | 70.10 b | 77.81 a | 76.83 a | 69.25 b | |||
日照时数利用率 Illumination hour utilization rate/% | 42.03 a | 42.41 a | 43.02 a | 42.60 a | 46.49 a | 47.68 a | 45.07 a | 46.68 a | ||||
太阳辐射时数利用率 Solar radiation hour utilization rate/% | 37.40 a | 36.06 a | 38.09 a | 36.18 b | 41.44 a | 40.54 a | 40.11 a | 39.73 a |
Table 8 Difference in temperature and light utilization efficiency in different growth stages of double cropping late rice at two latitudes.
生育期 Growth stage | 项目 Item | 品种类型 Type of variety | ||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|
杂交籼稻 IHR | 常规籼稻 ICR | 常优杂粳 CYJHR | 常规粳稻 JCR | |||||||||
安徽庐江 Lujiang, Anhui Province | 浙江富阳 Fuyang, Zhejiang Province | 安徽庐江 Lujiang, Anhui Province | 浙江富阳 Fuyang, Zhejiang Province | 安徽庐江 Lujiang, Anhui Province | 浙江富阳 Fuyang, Zhejiang Province | 安徽庐江 Lujiang, Anhui Province | 浙江富阳 Fuyang, Zhejiang Province | |||||
播种-齐穗期 S-H | 有效积温利用率 Effective accumulated temperature utilization rate/% | 56.29 a | 48.58 b | 56.66 a | 50.61 b | 61.04 a | 49.92 b | 60.09 a | 49.52 b | |||
日照时数利用率 Illumination hour utilization rate/% | 29.07 a | 30.91 a | 29.36 a | 31.88 a | 31.14 a | 31.75 a | 30.81 a | 31.52 a | ||||
太阳辐射时数利用率 Solar radiation hour utilization rate/% | 24.29 a | 25.48 a | 24.50 b | 26.61 a | 26.60 a | 26.24 a | 26.17 a | 25.96 a | ||||
齐穗-成熟期 H-M | 有效积温利用率 Effective accumulated temperature utilization rate/% | 19.10 a | 17.22 b | 19.27 a | 15.35 b | 17.35 b | 20.62 a | 17.32 b | 20.25 a | |||
日照时数利用率 Illumination hour utilization rate/% | 13.24 a | 11.87 b | 13.84 a | 11.01 b | 15.48 a | 16.19 a | 14.54 a | 15.48 a | ||||
太阳辐射时数利用率 Solar radiation hour utilization rate/% | 13.40 a | 10.89 b | 13.90 a | 9.88 b | 15.10 a | 14.58 a | 14.23 a | 14.06 a | ||||
全生育期 WGP | 有效积温利用率 Effective accumulated temperature utilization rate/% | 74.76 a | 65.27 b | 75.37 a | 65.53 b | 70.10 b | 77.81 a | 76.83 a | 69.25 b | |||
日照时数利用率 Illumination hour utilization rate/% | 42.03 a | 42.41 a | 43.02 a | 42.60 a | 46.49 a | 47.68 a | 45.07 a | 46.68 a | ||||
太阳辐射时数利用率 Solar radiation hour utilization rate/% | 37.40 a | 36.06 a | 38.09 a | 36.18 b | 41.44 a | 40.54 a | 40.11 a | 39.73 a |
生育期 Growth stage | 项目 Item | 有效穗数 Effective panicle number | 每穗粒数 Spikelet number per panicle | 总颖花量 Total number of spikelets | 结实率 Filled-grain percentage | 千粒重 1000-grain weight | 实际产量 Actual yield |
---|---|---|---|---|---|---|---|
播种-齐穗期 Sowing-full heading | 累积有效积温 Effective accumulated temperature | 0.304 | -0.223 | 0.136 | -0.536 | 0.551 | 0.440 |
累积日照时数 Accumulated illumination hours | -0.139 | 0.113 | -0.109 | -0.294 | 0.502 | 0.189 | |
累积太阳辐射 Accumulated solar radiation | 0.344 | -0.246 | 0.163 | -0.551 | 0.551 | 0.466 | |
齐穗-成熟期 Full heading- maturity | 累积有效积温 Effective accumulated temperature | -0.663 | 0.462 | -0.386 | 0.562 | 0.175 | -0.170 |
累积日照时数 Accumulated illumination hours | 0.253 | -0.211 | 0.121 | -0.087 | 0.796* | 0.675 | |
累积太阳辐射 Accumulated solar radiation | 0.518 | -0.453 | 0.231 | -0.198 | 0.734* | 0.726* | |
全生育期 Whole growth duration | 累积有效积温 Effective accumulated temperature | -0.487 | 0.340 | -0.302 | 0.197 | 0.587 | 0.144 |
累积日照时数 Accumulated illumination hours | 0.175 | -0.149 | 0.067 | -0.199 | 0.857** | 0.639 | |
累积太阳辐射 Accumulated solar radiation | 0.557 | -0.436 | 0.282 | -0.355 | 0.780* | 0.785* |
Table 9 Relationship of temperature and light resources with yield and its components.
生育期 Growth stage | 项目 Item | 有效穗数 Effective panicle number | 每穗粒数 Spikelet number per panicle | 总颖花量 Total number of spikelets | 结实率 Filled-grain percentage | 千粒重 1000-grain weight | 实际产量 Actual yield |
---|---|---|---|---|---|---|---|
播种-齐穗期 Sowing-full heading | 累积有效积温 Effective accumulated temperature | 0.304 | -0.223 | 0.136 | -0.536 | 0.551 | 0.440 |
累积日照时数 Accumulated illumination hours | -0.139 | 0.113 | -0.109 | -0.294 | 0.502 | 0.189 | |
累积太阳辐射 Accumulated solar radiation | 0.344 | -0.246 | 0.163 | -0.551 | 0.551 | 0.466 | |
齐穗-成熟期 Full heading- maturity | 累积有效积温 Effective accumulated temperature | -0.663 | 0.462 | -0.386 | 0.562 | 0.175 | -0.170 |
累积日照时数 Accumulated illumination hours | 0.253 | -0.211 | 0.121 | -0.087 | 0.796* | 0.675 | |
累积太阳辐射 Accumulated solar radiation | 0.518 | -0.453 | 0.231 | -0.198 | 0.734* | 0.726* | |
全生育期 Whole growth duration | 累积有效积温 Effective accumulated temperature | -0.487 | 0.340 | -0.302 | 0.197 | 0.587 | 0.144 |
累积日照时数 Accumulated illumination hours | 0.175 | -0.149 | 0.067 | -0.199 | 0.857** | 0.639 | |
累积太阳辐射 Accumulated solar radiation | 0.557 | -0.436 | 0.282 | -0.355 | 0.780* | 0.785* |
[1] | 吴比, 胡伟, 邢永忠. 中国水稻遗传育种历程与展望[J]. 遗传, 2018, 40(10): 841-857. |
Wu B, Hu W, Xing Y Z.The history and prospect of rice genetic breeding in China[J]. Hereditas, 2018, 40(10): 841-857. (in Chinese with English abstract) | |
[2] | Wu J, Deng Q Y, Yuan D Y, Shaowu Q I.Progress of super hybrid rice research in China[J].Chinese Science Bulletin, 2016(35): 3787-3796. |
[3] | 方华舟, 项智锋. 水稻秸秆堆沤肥对优质水稻产量及质量的影响[J]. 中国土壤与肥料, 2019(1): 62-70. |
Fang H Z, Xiang Z F.Influence of rice straw wet compost on yield and quality of high quality rice[J]. China Soil and Fertilizer, 2019(1): 62-70. (in Chinese with English abstract) | |
[4] | 程鸿燕, 韩渊怀. 大米食味品质的研究及其育种进展[J]. 山西农业大学学报: 自然科学版, 2016, 36(12): 800-896. |
Cheng H Y, Han Y H.Rice eating quality research and breeding progress[J]. Journal of Shanxi Agricultural University: Natural Science Edition, 2016, 36(12): 800-896. (in Chinese with English abstract) | |
[5] | 王才林, 张亚东, 朱镇, 姚姝, 赵庆勇, 陈涛, 周丽慧, 赵凌. 优良食味粳稻新品种南粳9108的选育与利用[J]. 江苏农业科学, 2013, 41(9): 86-88 |
Wang C L, Zhang Y D, Zhu Z, Yao S, Zhao Q Y, Chen T, Zhou L H, Zhao L.Breeding and utilization of high quality rice Nanjing 9108[J]. Jiangsu Agricultural Science, 2013, 41(9): 86-88. (in Chinese). | |
[6] | 杨秉臻, 金涛, 陆建飞. 长江中下游地区近20年水稻生产与优势的变化[J]. 江苏农业科学, 2018, 46(19): 62-67. |
Yang B Z, Jin T, Lu J F.Changes of rice production and advantage in the middle and lower reaches of the Yangtze River in the past 20 years[J]. Jiangsu Agricultural Science, 2018, 46(19): 62-67. (in Chinese) | |
[7] | 张军, 张洪程, 霍中洋, 李国业, 董啸波, 花劲, 郭保卫, 周培建, 程飞虎, 黄大山, 陈忠平, 陈国梁, 戴其根, 许轲, 魏海燕, 高辉. 不同栽培方式对双季晚粳稻产量及温光利用的影响[J]. 中国农业科学, 2013, 46(10): 2130-2141. |
Zhang J, Zhang H C, Huo Z Y, Li G Y, Dong X B, Hua X B, Hua J, Guo B W, Zhou P J, Cheng F H, Huang D S, Chen Z P, Chen G L, Dai Q G, Xu K, Wei H Y, Gao H.Effects of cultivation methods on yield and utilization of temperature and light of late Japonica rice in southern double cropping rice areas[J]. Scientia Agricultura Sinica, 2013, 46(10): 2130-2141. (in Chinese with English abstract) | |
[8] | 胡香玉, 钟旭华, 彭碧琳, 黄农荣, 潘俊峰, 梁开明, 刘彦卓, 傅友强. 减氮条件下高产水稻品种的产量形成和氮素利用特征[J].核农学报, 2019, 33(12): 2460-2471. |
Hu X Y, Zhong X H, Peng B L, Huang N R, Pan J F, Liang K M, Liu Y Z, Fu Y Q.Yield formation and characteristics of nitrogen utilization in high-yielding rice varieties under reduced nitrogen input[J]. Journal of Nuclear Agricultural Sciences, 2019, 33(12): 2460-2471. (in Chinese with English abstract) | |
[9] | Wu L L, Shen Y, Huang L Y, Sun F, Zhu G L, Li G H, Fahad S, Peng S B, Wang F.Physiological mechanisms underlying the high-grain yield and high-nitrogen use efficiency of elite rice varieties under a low rate of nitrogen application in China[J]. Frontiers in Plant Science, 2016, 7: 1024. |
[10] | 李泽华, 马旭, 李秀昊, 陈林涛, 李宏伟, 袁志成. 水稻栽植机械化技术研究进展[J]. 农业机械学报, 2018, 5: 1-20. |
Li Z H, Ma X, Li X H, Chen L T, Li H W, Yuan Z C.Research progress of rice transplanting mechanization[J]. Agricultural Machinery, 2018, 5: 1-20. (in Chinese with English abstract) | |
[11] | 蔡金平, 肖丽萍, 刘木华, 叶洋洋, 李涛斌, 陈雄飞. 水稻机械化移栽技术发展现状与展望[J]. 农机化研究, 2018, 10: 6-10. |
Cai J P, Xiao L P, Liu M H, Ye Y Y, Li T B, Chen X F.Design and simulation analysis on integrated tobacco stalk pulling and shredding machine[J]. Journal of Agricultural Mechanization Research, 2018, 10: 6-10. (in Chinese with English abstract) | |
[12] | 龚金龙, 邢志鹏, 胡雅杰, 张洪程, 戴其根, 霍中洋, 许轲, 魏海燕, 高辉. 籼、粳超级稻光合物质生产与转运特征的差异[J]. 作物学报, 2014, 40(3): 497-510. |
Gong J L, Xing Z P, Hu Y J, Zhang H C, Dai Q G, Huo Z Y, Xu K, Wei H Y, Gao H.Difference of characteristics of photosynthesis, matter production and translocation between indica and japonica super rice[J]. Acta Agronomica Sinica, 2014, 40(3): 497-510. (in Chinese with English abstract) | |
[13] | 魏金连, 潘晓华, 邓强辉. 不同生育阶段夜温升高对双季稻产量的影响[J]. 应用生态学报, 2010, 21(2): 331-337. |
Wei J L, Pan X H, Deng Q H.Effects of nighttime temperature increase at different growth stages on double season rice grain yield[J]. Chinese Journal of Applied Ecology, 2010, 21(2): 331-337. (in Chinese with English abstract) | |
[14] | 邹应斌. 水稻品种生育期的研究: Ⅰ水稻品种生育期变化类型及其特点[J]. 湖南农学院报, 1983(3): 1-11. |
Zou Y B.A study on the growth stage of rice varieties-1: the types and characteristics of stage variation[J].Journal of Hunan Agricultural College, 1983(3): 1-11. (in Chinese with English abstract) | |
[15] | 李秀芬, 贾燕, 黄元才, 臧鑫. 播栽期对水稻产量和产量构成因素及生育期的影响[J]. 生态学杂志, 2004, 23(5): 98-100. |
Li X F, Jia Y, Huang Y C, Zang X.Effects of seeding time on grain yield, yield components and growth duration in different rice varieties[J]. Chinese Journal of Ecology, 2004, 23(5): 98-100. (in Chinese with English abstract) | |
[16] | 何瑞银, 罗汉亚, 李玉同, 汪小函, 张璐. 水稻不同种植方式的比较试验与评价[J]. 农业工程学报, 2008, 24(1): 167-171. |
He R Y, Luo H Y, Li Y T, Wang X H, Zhang L.Comparison and analysis of different rice planting methods in China[J]. Transactions of the CSAE, 2008, 24(1): 167-171. (in Chinese with English abstract) | |
[17] | 张祖建, 张洪熙, 杨建昌, 宋云生, 赵步洪, 季红娟, 朱庆森. 江苏近50年粳稻安全齐穗期的变化[J]. 作物学报, 2011, 37(1): 146-151. |
Zhang Z J, Zhang H X, Yang J C, Song Y S, Zhao B H, Ji H J, Zhu Q S.Changes of safe dates for full heading in japonica rice over past 50 years in Jiangsu Province[J]. Acta Agronomica Sinica, 2011, 37(1): 146-151. (in Chinese with English abstract) | |
[18] | 夏科. 粳稻不同类型品种产量烟花特点及高产特性特征研究[D]. 扬州: 扬州大学, 2007. |
Xia K.Rules of yield evolution and the characteristics of high yield in different types of japonica rice[D]. Yangzhou: Yangzhou University, 2007. (in Chinese with English abstract) | |
[19] | 陈书涛, 王让会, 许遐祯, 项瑛, 陈海山. 气温及降水变化对江苏省典型农业区小麦、水稻生育期的影响[J].中国农业气象, 2011, 32(2): 235-239. |
Chen S T, Wang R H, Xu X Z, Xiang Y, Chen H S.Impacts of variations in air temperature and precipitation on the growth stages of winter and rice in typical agricultural zones of Jiangsu Province[J]. Chinese Journal of Agrometeorology, 2011, 32(2): 235-239. (in Chinese with English abstract) | |
[20] | 郎有忠,窦永秀,王美娥,张祖建,朱庆森. 水稻生育期对籽粒产量及品质的影响[J]. 作物学报, 2012, 38(3): 528-534. |
Lang Y Z, Dou Y X, Wang M E, Zhang Z J, Zhu Q S.Effects of growth duration on grain yield and quality in rice (Oryza sativa L.)[J]. Acta Agronomica Sinica, 2012, 38(3): 528-534. (in Chinese with English abstract) | |
[21] | Barlow E W B, Boersma L, Young J L. Photosynthesis, transpiration, and leaf elongation in corn seedling at suboptimal soil temperature[J]. Agronomy Journal, 1977, 69(1): 95-100. |
[22] | Baker D G, Sharratt B S, Chiang H C, Zandlo H A, Ruschy D L.Base temperature selection for the prediction of European corn borer instars by the growing degree day method[J]. Agricultural&Forest Meteorology, 1984, 32(1): 55-58. |
[23] | Islam M S, Morison J I L. Influence of solar radiation and temperature on irrigated rice grain yield in Bangladesh[J]. Field Crops Research, 1992, 30(1-2): 13-28. |
[24] | Peng S, Huang J, Sheehy J E, Laza R C, Visperas R M, Zhong X, Centeno G S, K Hush G S, Cassman K G. Rice yield decline with higher night temperature from global warming[J]. Proceedings of the National Academy of Science of USA, 2004, 101: 9971-9997. |
[25] | 王夫玉, 张洪程, 赵新华, 段详茂, 丁艳锋, 黄丕生, 鲁光荣, 王根球. 温光对水稻籽粒充实度的影响[J]. 中国农业科学, 2001, 34(4): 396-402. |
Wang F Y, Zhang H C, Zhao X H, Duan X M, Ding Y F, Huang P S, Lu G R, Wang G Q.Study on the effects of temperature and illumination on grade of filled grain in rice[J]. Scientia Agricultura Sinica, 2001, 34(4): 396-402. (in Chinese with English abstract) | |
[26] | 童平, 杨世民, 马均, 吴合洲, 傅泰露, 李敏, 王明田. 不同水稻品种在不同光照条件下的光合特性及干物质积累[J]. 应用生态学报, 2008, 19(3): 505-511. |
Tong P, Yang S M, Ma J, Wu H Z, Fu T L, Li M, Wang M T.Photosynthetic characteristics and dry matter accumulation of hybrid rice varieties under different light conditions[J]. Chinese Journal of Applied Ecology, 2008, 19(3): 505-511. (in Chinese with English abstract) | |
[27] | 张洪程, 许轲, 张军, 李国业, 董啸波, 花劲, 周培健, 程飞虎, 黄大山, 陈忠平, 陈国梁, 方明珍, 戴其根, 霍中洋, 魏海燕, 高辉. 双季晚粳稻生产力及相关生态生理特征[J]. 作物学报, 2014, 40(2): 283-300. |
Zhang H C, Xu K, Zhang J, Li G Y, Dong X B, Hua J, Zhou P J, Chen F H, Huang D S, Chen Z P, Cheng G L, Fang M Z, Dai Q G, Huo Z Y, Wei H Y, Gao H.Productivity and eco-physiological characteristics of late japonica rice in double-cropping system[J]. Acta Agronomica Sinica, 2014, 40(2): 283-300. (in Chinese with English abstract) | |
[28] | 曾勇军, 石庆华, 潘晓华, 韩涛. 长江中下游双季稻高产株型特征初步研究[J]. 作物学报, 2009, 35(3): 546-551. |
Zeng Y J, Shi Q H, Pan X H, Han T.Preliminary study on the plant type characteristics of double cropping rice in middle and lower reaches of Changjiang River[J]. Acta Agronomica Sinica, 2009, 35(3): 546-551.(in Chinese with English abstract) | |
[29] | Deng F, Wang L, Ren W J, Mei X F, Li S X.Optimized nitrogen managements and polyaspartic acid urea improved dry matter production and yield of indica hybrid rice[J]. Soil Tillage Research, 2015, 145: 1-9. |
[30] | 吴文革, 周永进, 张健美, 陈刚, 许有尊, 李胜群, 左庆, 叶为发, 余友玲, 杨成林, 孙雪原. 杂交中籼稻钵苗机插群体特征及产量形成优势分析[J]. 核农学报, 2016, 30(7): 1427-1434. |
Wu W G, Zhou Y J, Zhang J M, Chen G, Xu Y Z, Li S Q, Zuo Q, Ye W F, Yu Y L, Yang C L, Sun X Y.Analysis on population characteristics and yield formation advantages of pot-seedling mechanical transplanting middle-season indica hybrid rice[J]. Journal of Nuclear Agricultural Sciences, 2016, 30(7): 1427-1434. (in Chinese with English abstract) | |
[31] | 刘桃菊, 殷新佑, 戚昌瀚, 唐建军, 陈美球. 气候变化与水稻生长发育及产量形成关系的模拟研究[J]. 应用生态学报, 2005, 16(3): 486-490. |
Liu T J, Yin X Y, Qi C H, Tang J J, Chen M Q.Relationships between climate change and rice development and its yield formation: A simulation study[J]. Chinese Journal of Applied Ecology, 2005, 16(3): 486-490. (in Chinese with English abstract) | |
[32] | 岳伟, 陈金华, 阮新民, 陈曦, 陈砚涛, 王珍. 安徽省沿江地区双季稻光热资源利用效率变化特征及对气象产量的影响[J]. 中国生态农业学报, 2019, 27(6): 929-940. |
Yue W, Chen J H, Ruan X M, Chen X, Chen Y T, Wang Z.Variation in characteristics of light and heat resource utilization efficiency of double-season rice and its impact on meteorological yield along the Yangtze River in Anhui Province[J]. Chinese Journal of Eco-Agriculture, 2019, 27(6): 929-940. (in Chinese with English abstract) | |
[33] | 陈波, 周年兵, 郭保卫, 舒鹏, 张洪程, 霍中洋, 程飞虎, 花劲, 黄大山, 陈忠平, 陈恒, 刘云发, 廖世亮. 江西双季晚稻不同纬度产量、生育期及温光资源利用的差异[J]. 中国农业科学, 2017, 50(8): 1403-1415. |
Chen B, Zhou N B, Guo B W, Shu P, Zhang H C, Huo Z Y, Cheng F H, Hua J, Huang D S, Chen Z P, Chen H, Liu Y F, Liao S L.Differences of double-crossing late rice in yield, growth stage and utilization of temperature and illumination in different latitudes of Jiangxi Province[J]. Scientia Agricultura Sinica, 2017, 50(8): 1403-1415. (in Chinese with English abstract) | |
[34] | 李杰, 张洪程, 董洋阳, 倪晓诚, 杨波, 龚金龙, 常勇, 戴其根, 霍中洋, 许轲, 魏海燕. 不同生态区栽培方式对水稻产量、生育期及温光利用的影响[J]. 中国农业科学, 2011, 44(13): 2661-2672. |
Li J, Zhang H C, Dong Y Y, Ni X C,Yang B, Gong J L, Chang Y, Dai Q G, Huo Z Y, Xu K, Wei H Y.Effects of cultivation methods on yield, growth stage and utilization of temperature and illumination of rice in different ecological regions[J]. Scientia Agricultura Sinica, 2011, 44(13): 2661-2672. (in Chinese with English abstract) | |
[35] | Nagarajan S, Jagadish S V K, Hari Prasad A S, Thomar A K, Anand A, Pal M, Agarwal P K. Local climate affects growth, yield and grain quality of aromatic and non-aromatic rice in northwestern India[J]. Agriculture, Ecosystems and Environment, 2010, 138: 274-281. |
[1] | GUO Zhan, ZHANG Yunbo. Research Progress in Physiological,Biochemical Responses of Rice to Drought Stress and Its Molecular Regulation [J]. Chinese Journal OF Rice Science, 2024, 38(4): 335-349. |
[2] | WEI Huanhe, MA Weiyi, ZUO Boyuan, WANG Lulu, ZHU Wang, GENG Xiaoyu, ZHANG Xiang, MENG Tianyao, CHEN Yinglong, GAO Pinglei, XU Ke, HUO Zhongyang, DAI Qigen. Research Progress in the Effect of Salinity, Drought, and Their Combined Stresses on Rice Yield and Quality Formation [J]. Chinese Journal OF Rice Science, 2024, 38(4): 350-363. |
[3] | LÜ Zhou, YI Binghuai, CHEN Pingping, ZHOU Wenxin, TANG Wenbang, YI Zhenxie. Effects of Nitrogen Application Rate and Transplanting Density on Yield Formation of Small Seed Hybrid Rice [J]. Chinese Journal OF Rice Science, 2024, 38(4): 422-436. |
[4] | ZHAO Yiting, XIE Keran, GAO Ti, CUI Kehui. Effects of Drought Priming During Tillering Stage on Panicle Development and Yield Formation Under High Temperature During Panicle Initiation Stage in Rice [J]. Chinese Journal OF Rice Science, 2024, 38(3): 277-289. |
[5] | ZHOU Tian, WU Shaohua, KANG Jianhong, WU Hongliang, YANG Shenglong, WANG Xingqiang, LI Yu, HUANG Yufeng. Effects of Planting Patterns on Starch Content and Activities of Key Starch Enzymes in Rice Grains [J]. Chinese Journal OF Rice Science, 2024, 38(3): 303-315. |
[6] | LIU Huimin, ZHOU Jieqiang, HU Yuanyi, TIAN Yan, LEI Bin, LI Jianwu, WEI Zhongwei, TANG Wenbang. Super-high Yield Characteristics of Two-line Hybrid Rice Zhuoliangyou 1126 [J]. Chinese Journal OF Rice Science, 2024, 38(2): 160-171. |
[7] | PENG Xianlong, DONG Qiang, ZHANG Chen, LI Pengfei, LI Bolin, LIU Zhilei, YU Cailian. Effects of Straw Return Rate on Soil Reducing Substances and Rice Growth Under Different Soil Conditions [J]. Chinese Journal OF Rice Science, 2024, 38(2): 198-210. |
[8] | ZHU Wang, ZHANG Xiang, GENG Xiaoyu, ZHANG Zhe, CHEN Yinglong, WEI Huanhe, DAI Qigen, XU Ke, ZHU Guanglong, ZHOU Guisheng, MENG Tianyao. Morphological and Physiological Characteristics of Rice Roots Under Combined Salinity-Drought Stress and Their Relationships with Yield Formation [J]. Chinese Journal OF Rice Science, 2023, 37(6): 617-627. |
[9] | ZOU Yuao, WU Qixia, ZHOU Qianshun, ZHU Jianqiang, YAN Jun. Response of Middle-season Hybrid Rice to Flooding Stress at the Booting Stage [J]. Chinese Journal OF Rice Science, 2023, 37(6): 642-656. |
[10] | YUAN Pei, ZHOU Xuan, YANG Wei, YIN Lingjie, JIN Tuo, PENG Jianwei, RONG Xiangmin, TIAN Chang. Effects of Combined Application of Chemical Fertilizers and Nitrogen Reduction on the Yield of Double-cropping Rice and the Risk of Nitrogen and Phosphorus Loss in Field Water in Dongting Lake Area [J]. Chinese Journal OF Rice Science, 2023, 37(5): 518-528. |
[11] | XIAO Dakang, HU Ren, HAN Tianfu, ZHANG Weifeng, HOU Jun, REN Keyu. Effects of Nitrogen Fertilizer Consumption and Operation on Rice Yield and Its Components in China:A Meta-analysis [J]. Chinese Journal OF Rice Science, 2023, 37(5): 529-542. |
[12] | HUANG Yaru, XU Peng, WANG Lele, HE Yizhe, WANG Hui, KE Jian, HE Haibing, WU Liquan, YOU Cuicui. Effects of Exogenous Trehalose on Grain Filling Characteristics and Yield Formation of japonica Rice Cultivar W1844 [J]. Chinese Journal OF Rice Science, 2023, 37(4): 379-391. |
[13] | DONG Liqiang, YANG Tiexin, LI Rui, SHANG Wenqi, MA Liang, LI Yuedong, SUI Guomin. Effect of Plant-row Spacing on Rice Yield and Root Morphological and Physiological Characteristics in Super High Yield Field [J]. Chinese Journal OF Rice Science, 2023, 37(4): 392-404. |
[14] | WANG Wenting, MA Jiaying, LI Guangyan, FU Weimeng, LI Hubo, LIN Jie, CHEN Tingting, FENG Baohua, TAO Longxing, FU Guanfu, QIN Yebo. Effect of Different Fertilizer Application Rates on Rice Yield and Quality Formation and Its Relationship with Energy Metabolism at High Temperature [J]. Chinese Journal OF Rice Science, 2023, 37(3): 253-264. |
[15] | YANG Xiaolong, WANG Biao, WANG Benfu, ZHANG Zhisheng, ZHANG Zuolin, YANG Lantian, CHENG Jianping, LI Yang. Effects of Different Water Management on Yield and Rice Quality of Dry-seeded Rice [J]. Chinese Journal OF Rice Science, 2023, 37(3): 285-294. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||