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Effects of polyamines on agronomic traits and photosynthetic physiology of wheat under high temperature stress

机译:多胺对高温胁迫下小麦农艺性状和光合生理学的影响

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摘要

Two spring wheat varieties were used to study alleviating effects of exogenous spermine (Spm) and spermidine (Spd) on agronomic traits and photosynthesis under high temperature treatment (HT). Our results showed that HT significantly decreased grain mass per panicle of heat-resistant variety (XC 6) by 25% and heat-sensitive variety (XC 31) by 32%. After HT, i.e., at 13 d after flowering, the decrease in net photosynthetic rate of XC 6 (38%) was lower than that of XC 31 (53%); the reason for this was related to XC 6, which could maintain correspondingly normal chlorophyll content (Chl), stomatal conductance (gs), transpiration rate (E), and intercellular CO2 concentration. Exogenous Spm and Spd could increase relative water content, Chl, gs, E, the maximal quantum yield of PSII photochemistry, effective quantum yield of PSII photochemistry, antenna conversion efficiency, and photochemical quenching coefficient of flag leaves under HT. Our results indicated that the heat resistance of XC 6 is better than that of XC 31 and exogenous Spm and Spd could alleviate the heat injury of photosynthesis of wheat flag leaves.
机译:两种春小麦品种用于在高温处理(HT)下缓解外源精牙(SPM)和亚精胺(SPD)对农艺性状和光合作用的影响。我们的研究结果表明,HT将耐热多样性(XC 6)的谷物质量显着降低25%,热敏品种(XC 31)达32%。 HT,即在开花后的13 d之后,XC 6(38%)的净光合速率降低低于XC 31(53%);其原因与XC 6有关,其可以保持相应正常的叶绿素含量(CHL),气孔导度(GS),蒸腾率(E)和细胞间CO 2浓度。外源性的Spm和SPD可能增加相对含水量,叶绿素,GS,E,PSII光化学,PSII光化学,天线转换效率的有效量子产率,并且在HT旗叶的光化学淬灭系数的最大量子产率。我们的结果表明,XC 6的耐热性优于XC 31和外源SPM,SPD可以缓解小麦旗叶的光合作用的热损伤。

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