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首页> 外文期刊>Journal of Agronomy and Crop Science/Zeitschrift fur acker-und pflanzenbau >Independent and combined effects of high temperature and drought stress during grain filling on plant yield and chloroplast EF-Tu expression in spring wheat.
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Independent and combined effects of high temperature and drought stress during grain filling on plant yield and chloroplast EF-Tu expression in spring wheat.

机译:灌浆过程中高温和干旱胁迫对春小麦植株产量和叶绿体EF-Tu表达的独立和综合影响。

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摘要

High temperature and drought stress are among the two most important environmental factors influencing crop growth, development and yield processes. These two stresses commonly occur in combination. Objectives of this research were to investigate the independent and combined effects of high temperature and drought stress during grain filling on physiological, vegetative and yield traits and expression of a chloroplast protein synthesis elongation factor (EF-Tu) of wheat (Triticum aestivum L.). Two spring wheat cultivars (Pavon-76 and Seri-82) were grown at control temperatures (CT; dayight, 24/14 degrees C; 16/8 h photo/dark period) from sowing to heading. Thereafter, one half of the plants were exposed to high temperature stress (HT; 31/18 degrees C in Exp. 1 and 34/22 degrees C in Exp. 2), drought stress (withholding water), or a combination of both HT and drought stress. There were significant influences of HT and/or drought stress on physiological, growth and yield traits. There was no cultivar or cultivar by temperature or cultivar by drought interaction effects on most traits. The decreases in leaf photosynthesis were greater at HT compared with drought alone throughout the stress period, and the combination of HT and drought had the lowest leaf photosynthetic rates. Overall, HT or drought had similar effects (about 48-56% decrease) on spikelet fertility, grain numbers and grain yield. High temperature decreased grain numbers (by 56% averaged across both experiments) and individual grain weight (by 25%), while, respective decreases due to drought were 48% and 35%. This suggests that the grain numbers were more sensitive to HT and grain weights to drought for the range of temperatures tested in this research. The interaction between HT and drought stress was significant for total dry weights, harvest index and spikelet fertility, particularly when HT stress was severe (34/22 degrees C). The combined effects of HT and drought were greater than additive effects of HT or drought alone for leaf chlorophyll content, grain numbers and harvest index. High temperature stress and the combination of HT and drought stress but not drought stress alone resulted in the overexpression of EF-Tu in both spring wheat cultivars.
机译:高温和干旱胁迫是影响作物生长,发育和产量过程的两个最重要的环境因素。这两个压力通常共同出现。本研究的目的是研究籽粒灌浆过程中高温和干旱胁迫对小麦(Triticum aestivum)生理,营养和产量性状以及叶绿体蛋白合成延伸因子(EF-Tu)表达的独立和综合影响。 L.)。从播种到抽穗,两个春小麦品种(Pavon-76和Seri-82)在控制温度(CT;昼/夜,24/14摄氏度; 16/8小时光照/黑暗期)下生长。此后,一半的植物暴露于高温胁迫下(高温;实验1中为31/18摄氏度,实验2中为34/22摄氏度),干旱胁迫(不含水)或二者兼而有之和干旱压力。高温和/或干旱胁迫对生理,生长和产量性状有重大影响。没有对大多数性状有影响的品种或受温度影响的品种或受干旱影响的品种。在整个胁迫期间,与单独干旱相比,HT叶片光合作用的下降更大,并且HT和干旱的组合具有最低的叶片光合速率。总体而言,高温或干旱对小穗肥力,籽粒数量和籽粒产量具有相似的影响(降低约48-56%)。高温使籽粒数量减少(两个实验平均降低56%),单粒重降低(降低25%),而干旱导致的分别下降48%和35%。这表明在这项研究中测试的温度范围内,谷物数量对高温和谷物重量对干旱更敏感。 HT和干旱胁迫之间的相互作用对于总干重,收获指数和小穗繁殖力具有显着影响,尤其是在HT胁迫严重(34/22摄氏度)时。高温和干旱对叶片叶绿素含量,籽粒数量和收获指数的影响均大于单独高温或干旱的累加效应。高温胁迫以及HT和干旱胁迫的结合而不是单独的干旱胁迫导致两种春小麦品种中的EF-Tu过表达。

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