研究报告

高产氮高效型粳稻品种的叶片光合及衰老特性研究

展开
  • 1贵州省水稻研究所, 贵州 贵阳 550006;2扬州大学 农业部长江流域稻作技术创新中心, 江苏 扬州 225009;

收稿日期: 2012-04-19

  修回日期: 2012-07-27

  网络出版日期: 2013-03-10

基金资助

国家自然科学基金资助项目(30971732,31101102);国家粮食丰产科技工程项目(2011BAD16B03);贵州省水稻育种、栽培与产业化创新能力建设项目(黔科合20114003);贵州山区水稻科研基础条件建设项目(黔科条中补地20114005); 贵州省科技计划资助项目(黔科合NY字\[2012\]3043); 贵州科技重大专项计划资助项目(黔科合重大专项字\[2011\]60122); 贵州省科技成果重点推广计划资助项目(黔科合成字\[2012\]5019)。

Leaf Photosynthesis and Senescence Characteristics of japonica Rice Cultivars with High Yield and High Nefficiency

Expand
  • 1 Rice Research Institute of Guizhou Province, Guiyang 550006, China; 2 Innovation Center of Rice Technology in Yangtze Rice Valley, Ministry of Agriculture, Yangzhou University, Yangzhou 225009, China;

Received date: 2012-04-19

  Revised date: 2012-07-27

  Online published: 2013-03-10

摘要

选用6个具代表性的低产氮低效型、高产氮中效型和高产氮高效型粳稻品种,在各自最适氮素水平下,研究了叶片光合、衰老特性的差异及其与氮效率的关系。结果表明,高产类型群体叶面积指数(LAI)、高效叶面积率及有效叶面积率、剑叶叶绿素含量(SPAD值)和净光合速率以及剑叶超氧化物歧化酶(SOD)活性均显著高于低产类型品种,丙二醛(MDA)含量显著低于低产类型。高产品种间比较,随着氮效率提升,生育前中期(够苗、拔节、齐穗期)群体叶面积指数下降,成熟期上升;灌浆前期(齐穗后0 d~10 d)剑叶净光合速率并未明显变化,灌浆中后期(齐穗后20 d~40 d)显著增高,主要原因如下:叶绿素分解少,保证了叶片对CO2的高同化能力;SOD活性高,保证了植株更强的抗氧化能力,MDA含量少,膜脂破坏程度低。说明抽穗前合理控制无效及低效叶面积生长以适当减小群体叶面积规模,抽穗后有效延缓植株衰老,以保证叶片持续较高的叶绿素含量和净光合速率,是促进水稻高产品种进一步提升氮效率的重要途径。

本文引用格式

李敏1,2,张洪程2,*,杨雄2,葛梦婕2,魏海燕2,戴其根2,霍中洋2,许轲2 . 高产氮高效型粳稻品种的叶片光合及衰老特性研究[J]. 中国水稻科学, 2013 , 27(2) : 168 -176 . DOI: 10.3969/j.issn.10017216.2013.02.009

Abstract

The difference in leaf photosynthesis and senescence characteristics of lowyielding and low Nefficiency, highyielding and medium Nefficiency, highyielding and high Nefficiency rice cultivars was investigated using six representative japonica varieties under their optimum N levels, respectively. The results were as follow: compared with lowyielding varieties, the highyielding ones showed higher  population leaf area index (LAI), higher leaf area rates of productive tillers and top 3 leaves, higher flag leaf chlorophyll content (SPAD value)and net photosynthetic rate, and slower senescence of leaves. Among highyielding varieties, as the nitrogen efficiency increased, the population leaf area index (LAI) reduced at the early and middle growth stages (Nn, jointing, and full heading), and increased at maturing. Though with no significant changes during early grain filling stage (0-10 days after full heading), the net photo synthetic rate remarkably increased in middle and late grain filling stages (20-40 days after full heading), which could mainly be attributed to the less breakingdown of chlorophyll, ensuring the higher CO2 assimilation capacity of leaves, the higher SOD activity providing strong antioxidant capacity of the plant, and the lower MDA content implying the less damage degree of membrane lipid. It could be one promising method for further improvement in nitrogen efficiency of highyielding rice varieties to reasonably control the growth of nonproductive and inefficient leaf area before heading, thus properly reducing population leaf area scale before heading and effectively delaying leaves senescence after heading to ensure sustained higher chlorophyll content and net photosynthetic rate of leaves.

参考文献

\[1\]彭少兵,  黄见良,  钟旭华, 等. 提高中国稻田氮肥利用率的研究策略. 中国农业科学, 2002, 35(9):10951103.

\[2\]李华, 徐长青, 李世峰, 等. 不同氮肥管理对机插水稻产量及氮肥利用的影响. 贵州农业科学, 2008, 36(5): 3941.

\[3\]Peng S B, Buresh R J, Huang J L, et al. Strategies for overcoming low agronomic nitrogen use efficiency in irrigated rice systems in China. Field Crops Res,  2006, 96: 3747.

\[4\]王彦荣, 华泽田, 陈温福, 等. 粳稻根系与叶片早衰的关系及其对籽粒灌浆的影响. 作物学报, 2003,29(6): 892898.

\[5\]焦德茂, 李霞, 黄雪清, 等. 不同高产水稻品种生育后期叶片光抑制、光氧化和早衰的关系. 中国农业科学, 2002, 35(5): 487492.

\[6\]刘建丰, 袁隆平, 邓启云, 等. 超高产杂交稻的光合特性研究. 中国农业科学, 2005, 28(2): 258264.

\[7\]Zhang Y B, Tang Q Y, Zou Y B, et al. Yield potential and radiation use efficiency of “super” hybrid rice grown under subtropical conditions. Field Crops Res,  2009, 114: 9198.

\[8\]杨建昌, 杜永, 吴长付, 等. 超高产粳型水稻生长发育特性的研究. 中国农业科学, 2006, 39(7): 13361345.

\[9\]杨建昌. 水稻弱势粒灌浆机理与调控途径.作物学报, 2010, 36(12): 20112019.

\[10\]魏海燕, 张洪程, 马群, 等. 不同氮肥吸收利用效率水稻基因型叶片衰老特性. 作物学报, 2010, 36(4): 645654.

\[11\] 曾建敏, 崔克辉, 黄见良, 等.水稻生理生化特性对氮肥的反应及与氮利用效率的关系. 作物学报, 2007, 33(7): 11681176.

\[12\] Sing H U, Ladha J K, Castillo E G, et al. Genotypic variation in nitrogen use efficiency in medium and longduration rice. Field Crop Res,  1998, 58: 3553.

\[13\] Inthapanya P. Genotype differences in nutrient uptake and utilization for grain yield production of rainfed lowland rice under fertilized and nonfertilized conditions.Field Crop Res,  2000, 65: 5768.

\[14\]Ladha J K, Kirk G J D, Bennett J, et al.Opportunities for increased nitrogenuse efficiency from lowland rice germplasm. Field Crop Res,  1998, 56: 4171.

\[15\]Graham R D. Breeding for nutritional characteristics in cereals//Tinker P B, Launch A. Advance in Plant Nutrition.  New York: Praeger, 1984: 57102.

\[16\]Saric M R. Progress since the first international symposium: Genetic aspects of plant nutrition, Beograd, 1982, and perspective of future research.Plant & Soil,  1987, 99(1): 197216.

\[17\]马群, 杨雄, 李敏, 等. 不同氮肥群体最高生产力水稻品种的物质生产积累. 中国农业科学, 2011, 44(20): 41594169.

\[18\] 李敏, 张洪程, 马群,等. 不同氮肥群体最高生产力类型粳稻品种的氮素吸收利用特性. 中国水稻科学,2012, 26(2): 197204.

\[19\]李合生. 植物生理生化实验原理和技术. 北京: 高等教育出版社, 2000.

\[20\]凌启鸿.作物群体质量. 上海: 上海科学技术出版社, 2000, 8591.

\[21\]翟虎渠, 曹树青, 万建民, 等. 超高产杂交稻灌浆期光合功能与产量的关系. 中国科学: C 辑, 2002, 32(3): 211217.

\[22\]程式华, 曹立勇, 陈深广, 等. 后期功能型超级杂交稻的概念及生物学意义. 中国水稻科学, 2005, 19(3): 280284.

\[23\]魏海燕, 张洪程, 马群, 等. 不同水稻氮利用效率基因型剑叶光合特性. 作物学报, 2009, 35(12): 22432251.

\[24\]Mae T, Inaba A, Kaneta Y, et al.A largegrain rice cultivar, Akita 63, exhibits high yields with high physiological Nuse efficiency. Field Crops Res, 2006, 97: 227237.

\[25\]李敏, 张洪程, 杨雄, 等. 水稻高产氮高效品种的根系形态生理特性.作物学报, 2012, 38(4): 648656.

\[26\]Yang J, Peng S, Zhang Z, et al. Grain and dry matter grain yields and partitioning of assimilates in japonica/indica hybrid rice. Crop Sci, 2002, 42: 766772.

\[27\]Ashraf M, Hussian F. Dry matter and nitrogen distribution at maturity of three rice (Oryza sativa L.) cultivar exposed to ammonia at two growth stages. J Agron & Crop Sci, 2004, 191:125129.

\[28\]张洪程, 马群, 杨雄, 等. 水稻品种氮肥群体最高生产力及其增长规律, 作物学报, 2012, 38(1): 8698.

\[29\]Mae T, Ohira K. The remobilization of nitrogen related to leaf growth and senescence in rice plants. Plant Cell Physiol, 1981, 22: 10671074.

\[30\]Mei H S, Thimann K V. The relation between nitrogen deficiency and leaf senescence. Physiol Plant, 1984, 62: 157161.

\[31\]魏海燕, 张洪程, 张胜飞, 等. 不同氮利用效率水稻基因型的根系形态与生理指标的研究. 作物学报, 2008, 34(3): 429436.
文章导航

/

浙ICP备05004719号-5
公安备案号:33010302003356
地址:浙江省杭州市富阳区水稻所路28号 邮编:311400 电话:0571-63370278 E-mail:cjrs@263.net
本系统由北京玛格泰克科技发展有限公司设计开发
总访问量: 今日访问: 在线人数: