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小麦非结构性碳水化合物分配对水分胁迫的生理响应

苏李维,李胜*,马绍英,王雅梅,曹宝臣   

  1. (甘肃农业大学生命科学技术学院/甘肃省干旱生境作物学重点实验室, 兰州 730070)
  • 出版日期:2015-06-18 发布日期:2015-06-18

Physiological response of the distribution of non-structural carbohydrates to water stress in wheat.

SU Li-wei, LI Sheng, MA Shao-ying, WANG Ya-mei, CAO Bao-chen   

  1. (Gansu Provincial Key Laborotry of Aridland Crop, College of Life Science and Technology, Gansu Agricultural University, Lanzhou 730070, China)
  • Online:2015-06-18 Published:2015-06-18

摘要: 以‘西旱2号’小麦为试材,采用水分胁迫和复水处理方法,研究了小麦发育过程中不同水分胁迫下非结构性碳水化合物(NSC)在小麦旗叶、茎、叶鞘等器官中的动态变化,以及籽粒中碳代谢相关酶(可溶性淀粉合成酶SSS和淀粉粒结合态合成酶GBSS)活性的变化.结果表明: 不同程度水分胁迫对小麦旗叶、茎、叶鞘等器官中蔗糖含量无显著影响.随水分胁迫的深入,花后12~18 d旗叶中淀粉含量显著增加;水分胁迫缩短了花后茎和叶鞘中淀粉的积累时间,抑制了茎中淀粉的转化和分配;而叶鞘中淀粉的积累逐渐增大,在中度水分胁迫下积累提前终止.在水分胁迫初期,各营养器官中的NSC含量为旗叶>茎>叶鞘;随着水分胁迫的深入,各营养器官中的NSC含量为茎>旗叶>叶鞘.小麦主要营养器官中NSC的分配速率及主要代谢酶的变化可能是小麦对水分胁迫的一种生理调节反应.

Abstract: In this paper, the spring wheat (cv. Xihan No. 2) was taken as research material to investigate the dynamic changes of the nonstructural carbohydrates (NSC) in flag leaves, stems and leaf sheaths and activities of carbonmetabolizing enzymes (SSS, GBSS) in grains during wheat development process under various water stresses by water stress and rewatering treatment methods. The results indicated that various water stresses had no significant effects on the sucrose contents in flag leaves, stems, leaf sheaths and other organs of wheat. With the increase of water stress, the content of starch in flag leaves was significantly increased within 12-18 d after flowering. Water stress shortened the starch accumulation period in stems and sheaths after flowering and inhibited the transformation and distribution of starch in wheat stems. The accumulation of starch in sheath also gradually increased, which was early terminated under moderate water stress. At the beginning of the water stress, the contents of NSC in vegetative organs were listed as: flag leaves > stems > leaf sheaths. With the increase of water stresses, the NSC contents in vegetative organs were listed as: stems > flag leaves > leaf sheaths. We could conclude that the changes in main NSC (sugar, starch) distribution and carbon-metabolism enzyme activities was a kind of physiological regulation response of wheat to water stresses.