[1] Kato T, Takeda K. Associations among characters related to yield sink capacity in space-planted rice. Crop Sci, 1996, 36: 1135-1139.
[2] Kato T, Shinmura D, Taniguchi A. Activities of enzymes for sucrose-starch conversion in developing endosperm of rice and their association with grain filling in extra-heavy panicle types. Plant Prod Sci, 2007, 10: 442-450.
[3] Peng S, Cassman K G, Virmani S S, Sheehy J, Khush G S. Yield potential trends of tropical since the release of IR8 and its challenge of increasing rice yield potential. Crop Sci, 1999, 39: 1552-1559.
[4] Cheng S, Zhuang J, Fan Y, Du J, Cao L. Progress in research and development on hybrid rice: A super-domesticate in China. Ann Bot-London, 2007, 100: 959-966.
[5] Peng S, Khush G S, Virk P, Tang Q, Zou Y. Progress in ideotype breeding to increase rice yield potential. Field Crop Res, 2008, 108: 32-38.
[6] Mohapatra P K, Patel R, Sahu S K. Time of flowering affects grain quality and spikelet partitioning within the rice panicle. Aust J Plant Physiol, 1993, 20: 231-242.
[7] Yang J C, Zhang J H. Grain-filling problem in ‘super’ rice. J Exp Bot, 2010, 61(1):1.
[8] Wang Z, Zhang W, Beebout S S, Zhang H, Liu L, Yang J, Zhang J. Grain yield, water and nitrogen use efficiencies of rice as influenced by irrigation regimes and their interaction with nitrogen rates. Field Crop Res, 2016, 193: 54-69.
[9] 张自常, 李鸿伟, 曹转勤, 王志琴, 杨建昌. 施氮量和灌溉方式的交互作用对水稻产量和品质的影响. 作物学报,2013,39(1): 84-92.
Zhang Z C, Li H W, Cao Z Q, Wang Z Q, Yang J C. Effect of interaction between nitrogen rate and irrigation regime on grain yield and quality of rice. Acta Agron Sin, 2013, 39(1): 84-92.(in Chinese with English abstract)
[10] Cabangon R J, Tuong T P, Castillo E G. Effect of irrigation method and N-fertilizer management on rice yield,water productivity and nutrient-use efficiencies in typical lowland rice conditions in China. Paddy&Water Environ, 2004, 2: 195-206.
[11] 王晓燕, 韦还和, 张洪程, 孙健, 张建民, 李超, 陆惠斌, 杨筠文, 马荣荣, 许久夫, 王珏, 许跃进, 孙玉海. 水稻甬优 12 产量 13.5 t·hm–2以上超高产群体的生育特征. 作物学报, 2014, 40(12): 2149-2159.
Wang X Y, Wei H H, Zhang H C, Sun J, Zhang J M, Li C, Lu H B, Yang J W, Ma R R, Xu J F, Wang J, Xu Y J, Sun Y H. Population characteristics for super-high yielding hybrid rice Yongyou 12(>13.5 t ha–1). Acta Agron Sin, 2014, 40(12): 2149-2159. (in Chinese with English abstract)
[12] 姜元华, 张洪程, 赵可, 许俊伟, 韦还和, 龙厚元, 王文婷, 戴其根, 霍中洋, 许轲, 魏海燕, 郭保卫. 长江下游地区不同类型水稻品种产量及其构成因素特征的研究. 中国水稻科学, 2014, 28(6): 621-631.
Jiang Y H, Zhang H C, Zhao K, Xu J W, Wei H H, Long H Y, Wang W T, Dai Q G, Huo Z Y, Xu K, Wei H Y, Guo B W. Difference in yield and its components characteristics of different type rice cultivars in the lower reaches of the Yangtze River. Chin J Rice Sci, 2014, 28(6): 621-631. (in Chinese with English abstract)
[13] Chen T, Xu Y, Wang J, Wang Z, Yang J, Zhang J. Polyamines and ethylene interact in rice grains in response to soil drying during grain filling. J Exp Bot, 2013, 64(8): 2523.
[14] 张伟杨, 徐云姬, 钱希旸, 李银银, 王志琴, 杨建昌. 小麦籽粒游离多胺对土壤干旱的响应及其与籽粒灌浆的关系. 作物学报, 2016, 42(6):860-872.
Zhang W Y, Xu Y J, Qian X Y, Li Y Y, Wang Z Q, Yanng J C. Free Polyamines in Grains in Response to Soil Drought and Their Relationship with Grain Filling of Wheat. Acta Agron Sin, 2016, 42(6):860-872.(in Chinese with English abstract)
[15] Yang J C, Zhang J H, Huang Z, Wang Z Q, Zhu Q S, Liu L J. Correlation of cytokinin levels in the endosperms and roots with cell number and cell division activity during endosperm development in rice. Ann Bot-London,2002,90: 369-377.
[16] Kato T. Change of sucrose synthase activity in developing endosperm of rice cultivars. Crop Sci, 1995, 35: 827-831.
[17] Yoshida S, Forno D, Cock J, Gomez K. Determination of sugar and starch in plant tissue//Yoshida S. Laboratory Manual for Physiological Studies of Rice. Philippines: The International Rice Research Institute, 1976: 46-49.
[18] 王成瑷, 王伯伦, 张文香, 赵磊, 赵秀哲, 高连文. 土壤水分胁迫对水稻产量和品质的影响. 作物学报, 2006, 32(1): 131-137.
Wang C Y, Wang B L, Zhang W X, Zhao L, Zhao X S, Gao L W. Effects of Water Stress of Soil on Rice Yield and Quality. Acta Agron Sin, 2006, 32(1): 131-137. (in Chinese with English abstract)
[19] Tuong T P, Bouman B A M, Mortimer M. More rice, less water-integrated approaches for increasing water productivity in irrigated rice-based systems in Asia. Plant Prod Sci, 2005, 8: 231-241.
[20] Yang J C, Liu K, Wang Z Q, Du Y, Zhang J H. Water-saving and high-yielding irrigation for lowland rice by controlling limiting values of soil water potential. J Integr Plant Biol, 2007, 49: 1445-1454.
[21] 蔡一霞,王维,朱智伟,张祖建,郎有忠,朱庆森. 结实期水分胁迫对不同氮肥水平下水稻产量及其品质的影响.应用生态学报, 2006, 17(7): 1201-1206.
Cai Y X, Wang W, Zhu Z W, Zhang Z J, Lang Y Z, Zhu Q S. Effects of water stress during grain-filling period on rice grain yield and its quality under different nitrogen levels. Chin J Appl Ecol, 2006, 17(7): 1201-1206. (in Chinese with English abstract)
[22] 魏海燕, 张洪程, 戴其根, 霍中洋, 许柯, 杭杰, 马群, 张胜飞, 张庆, 刘艳阳. 不同水稻氮利用效率基因型的物质生产与积累特性. 作物学报,2007(11): 1802-1809.
Wei H Y, Zhang H C, Dai Q G, Huo Z Y, Xu K, Hang J, Ma Q, Zhang S F, Zhang Q, Liu Y Y. Characteristics of Matter Production and Accumulation in Rice Genotypes with Different N Use Efficiency. Acta Agron Sin, 2007(11): 1802 -1809. (in Chinese with English abstract)
[23] Jiao Z H, Hou A, Shi Y, Huang G H, Wang Y H, Chen X . Water management influencing methane and nitrous oxide emissions from rice field in relation to soil redox and microbial community. Commun Sci Plant, 2006, 37(13-14): 1889-1903.
[24] Xue Y, Duan H, Liu L, Wang Z, Yang J, Zhang J. An improved crop management increases grain yield and nitrogen and water use efficiency in rice. Crop Sci, 2013, 53: 271-284.
[25] 薛亚光, 陈婷婷, 杨成, 王志琴, 刘立军, 杨建昌. 中粳稻不同栽培模式对产量及其生理特性的影响. 作物学报, 2010, 36(3): 466-476.
Xue Y G, Chen T T, Yang C, Wang Z Q, Liu L J, Yang J C. Effects of Different Cultivation Patterns on the Yield and Physiological Characteristics in Mid-Season Japonica Rice. Acta Agron Sin, 2010, 36(3): 466-476. (in Chinese with English abstract)
[26] 王绍华, 曹卫星, 丁艳锋, 田永超, 姜东. 水氮互作对水稻氮吸收与利用的影响. 中国农业科学, 2004, 37(4): 497-501.
Wang S H, Cao W X, Ding Y F, Tian Y C, Jiang D. Interactions of Water Management and Nitrogen Fertilizer on Nitrogen Absorption and Utilization in Rice. Sci Agric Sin, 2004, 37(4): 497-501. (in Chinese with English abstract)
[27] 陈新红, 刘凯, 王志琴, 杨建昌. 水稻水氮互作效应与产量模型研究. 西北农林科技大学学报: 自然科学版, 2006, 34(9): 141-148.
Chen X H, Liu K, Wang Z Q, Yang J C. Studies on interactions between soil moisture and nitrogen and yield models in rice. J Northwest A&F Univ, 2006, 34(9): 141-148. (in Chinese with English abstract)
[28] 陈婷婷, 许更文, 钱希旸, 王志琴, 张耗, 杨建昌. 花后轻干-湿交替灌溉提高水稻籽粒淀粉合成相关基因的表达. 中国农业科学, 2015, 48(7): 1288-1299.
Chen T T, Xu G W, Qian X Y, Wang Z Q, Zhang H, Yang J C. Post-anthesis alternate wetting and moderate soil drying irrigation enhance gene expressions of enzymes involved in starch synthesis in rice grains. Sci Agric Sin, 2015, 48(7): 1288-1299. (in Chinese with English abstract)
[29] 徐云姬, 张伟杨, 钱希旸, 李银银, 张耗, 杨建昌.施氮量对小麦籽粒灌浆的影响及其生理机制. 麦类作物学报, 2015, 35(8): 1119-1126.
Xu Y G, Zhang W Y, Qian X Y, Li Y Y, Zhang H, Yang J C. Effect of nitrogen on grain filling of wheat and its physiological mechanism. J Trit Crops, 2015, 35(8): 1119-1126. (in Chinese with English abstract)
[30] Kato T, Sakurai N, Kuraishi S. The changes of endogenous abscisic acid in developing,grains of two rice cultivars with different grain size. Jpn J Crop Sci,1993, 62: 456-461.
[31] 刘立军, 吴长付, 张耗, 杨建昌, 赵步洪. 实地氮肥管理对稻米品质的影响. 中国水稻科学, 2007, 21(6): 625-630.
Liu L J, Wu C F, Zhang H, Yang J C, Zhao B H. Effect of site-specific nitrogen management on rice quality. Chin J Rice Sci, 2007, 21(6): 625-630. (in Chinese with English abstract)
[32] Yang J C, Zhang J H, Wang Z Q, Liu K, Wang P. Post-anthesis development of inferior and superior spikelets in rice in relation to abscisic acid and ethylene. J Exp Bot, 2006, 57: 149-160.
[33] Yang J, Zhang J, Liu K, Wang Z, Liu L. Abscisic acid and ethyleneinteract in wheat grains in response to soil drying duringgrain filling. New Phytol, 2006, 271: 293-303.
[34] Javid M G, Sorooshzadeh A, Sanavy. Effects of the exogenous application of auxin and cytokinin on carbohydrate accumulation in grains of rice under salt stress. Plant Growth Regul, 2011, 65(2): 305-313.
[35] Saini H S, Westgate M E. Reproductive development in grain crops during drought. Adv Agron, 2000, 68: 59-96.
[36] Inthapan P, Fukai S. Growth and yield of rice cultivars under sprinkler irrigation in south-eastern Queensland: 2. Comparison with maize and grain sorghum under wet and dry conditions. Austr J Exp Agric, 1988, 28:243-248.
[37] Tao H, Brueck H, Ditten K, Kreye C, Lin S, Sattelmacher, B. Growth and yield formation of rice (Oryza sativa L.) in the water-saving ground cover rice production system (GCRPS). Field Crop Res, 2006, 95(1): 1-12.
[38] 韦还和, 孟天瑶, 李超, 张洪程, 史天宇, 马荣荣, 王晓燕, 杨筠文, 戴其根, 霍中洋, 许轲, 魏海燕, 郭保卫. 籼粳交超级稻甬优538的穗部特征及籽粒灌浆特性. 作物学报, 2015, 41(12): 1858-1869.
Wei H H, Meng T Y, Li C, Zhang H C, Shi T Y, Ma R R, Wang X Y, Yang J W, Dai Q G, Huo Z Y, Xu K, Wei H Y, Guo B W. Panicle Traits and Grain-filling Characteristics of Japonica/Indica Hybrid Super Rice Yongyou 538. Acta Agron Sin, 2015, 41(12): 1858-1869. (in Chinese with English abstract) |