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Inverse Leaf Aging Sequence (ILAS) and Its Significance of Wheat
作者姓名:Zhang  Song-wu Wang  Chang-fa Yao  You-hua
作者单位:Reseach Laboratory of Low-Temperature Plants, College of Sciences, Northwest A&F University, Yangling 712100, P.R.China
基金项目:supported by the National Natural Science Foundation of China (30270766 30470333)
摘    要:

关 键 词:LAS系统  小麦叶片  叶片衰老  序列  可溶性蛋白含量  叶片净光合速率  冠层温度  传统结构

Inverse Leaf Aging Sequence (ILAS) and Its Significance of Wheat
Zhang,Song-wu Wang,Chang-fa Yao,You-hua.Inverse Leaf Aging Sequence (ILAS) and Its Significance of Wheat[J].Agricultural Sciences in China,2011,10(2):207-219.
Authors:ZHANG Song-wu  WANG Chang-fa  YAO You-hua
Abstract:The implication of the revelation of the inverse leaf aging sequence (ILAS) of wheat needs to be probed in theory and practice. Since 2005, the comparison experiment of the ILAS and the conventional leaf aging sequence (CLAS) has been carried out to measure the canopy temperature and some important biological parameters of wheat. In nature, there existed the phenomenon that the wheat leaves aged in an sequence opposite to the conventional sequence and some of the leaves of ILAS wheat aged sequentially differed from those of CLAS wheat, i.e., the penultimate leaves rather than the flag leaves aged last among the leaves at different leaf positions; in correspondence with the inverse leaf aging sequence,there appeared an unconventional leaf color structure at the late fruiting stage, which had yellow upper leaves and green lower leaves, opposite to the conventional leaf color structure that had green upper leaves and yellow lower leaves; the chlorophyll concentrations, soluble protein concentrations, transpiration rates, and net photosynthetic rates of the penultimate leaves of ILAS wheat unconventionally surpassed those of their flag leaves as their growth moved forward from one stage to another stage, and the ILAS wheat characteristically presented cold canopy temperature, i.e., a cold tail canopy temperature at the late fruiting stage, or a cold canopy temperature at the whole fruiting stage; because ILAS wheat was unique in physiological process, its kernel weights were obviously higher than those of CLAS wheat, which closely related to the "relay" kernel-filling mode, which was different from the kernel-filling mode of CLAS wheat under which the flag leaves act as the main nutrient supply source at the whole fruiting stage. This study provided a new idea and approach for the theoretical exploration on wheat fruiting and aging, wheat yield further improvement, and cold type wheat and cold tail wheat breeding.
Keywords:wheat  inverse leaf aging sequence  canopy temperature  biological parameters
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