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Photosynthetic and physiological responses of foxtail millet (Setaria italica L.) to low-light stress during grain-filling stage

机译:谷子(Setaria italica L.)在籽粒灌浆期对弱光胁迫的光合和生理响应

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摘要

Two foxtail millet (Setaria italica L.) varieties were subjected to different shading intensity treatments during a grain-filling stage in a field experiment in order to clarify physiological mechanisms of low-light effects on the yield. Our results showed that the grain fresh mass per panicle, yield, photosynthetic pigment contents, net photosynthetic rate, stomatal conductance, effective quantum yield of PSII photochemistry, and electron transport rate decreased with the increase of shading intensity, whereas the intercellular CO2 concentration increased in both varieties. In addition, shading changed a double-peak diurnal variation of photosynthesis to a one-peak curve. In conclusion, the lower yield of foxtail millet was caused mainly by a reduction of grain mass assimilated, a decline in chlorophyll content, and the low photosynthetic rate due to low light during the grain-filling stage. Reduced light energy absorption and conversion, restricted electron transfer, and reduced stomatal conductance might cause the decrease in photosynthesis.
机译:以2个谷子(Setaria italica L.)品种为研究对象,在田间试验的籽粒灌浆阶段,对谷子进行不同遮荫强度的处理,以阐明弱光对产量影响的生理机制。结果表明,随着遮荫强度的增加,籽粒鲜重、产量、光合色素含量、净光合速率、气孔导度、PSII光化学有效量子产率和电子传递速率均随遮荫强度的增加而降低,而胞间CO2浓度均随遮荫强度的增加而增加。此外,阴影将光合作用的双峰昼夜变化转变为单峰曲线。综上所述,谷子产量下降的主要原因是籽粒同化质量减少、叶绿素含量下降以及籽粒灌浆期光照不足导致光合速率低。光能吸收和转换减少、电子转移受限和气孔导度降低可能导致光合作用减少。

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