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小麦旗叶光合电子传递对暗诱导衰老的自然变化。

Natural variation in photosynthetic electron transport of wheat flag leaves in response to dark-induced senescence.

机构信息

Wheat Research Institute, Henan Academy of Agricultural Sciences, Postgraduate T&R Base of Zhengzhou University, Zhengzhou 450002, China.

State Key Laboratory of Crop Biology, College of Life Sciences, Shandong Agricultural University, Tai'an 271018, China.

出版信息

J Photochem Photobiol B. 2024 Oct;259:113018. doi: 10.1016/j.jphotobiol.2024.113018. Epub 2024 Aug 22.

Abstract

Early leaf senescence affects photosynthetic efficiency and limits growth during the late production stage of winter wheat (Triticum aestivum). Natural variation in photosystem response to senescence represents a valuable resource for improving the aging traits of flag leaves. To explore the natural variation of different phases of photosynthetic electron transport in modern wheat cultivars during senescence, we exposed the flag leaves of 32 wheat cultivars to dark conditions to induce senescence process, and simultaneously measured prompt fluorescence and modulated 820 nm reflection. The results showed that the chlorophyll content, activity of PSII donor side, PSI and electron transfer between PSII and PSI were all decreased during dark-induced senescence, but they showed different sensitivity to dark-induced senescence. Furthermore, natural variation in photosynthetic parameters among the 32 wheat cultivars were also observed and showed by variation coefficient of the different parameters. We observed that PSII and PSI activity showed less sensitivity to dark-induced senescence than electron transfer between them, while PSII and PSI activity exhibit greater natural variation than electron transport between PSII and PSI. It suggests that Cyt might degrade faster and have less variation than PSII and PSI during dark-induced senescence.

摘要

早期叶片衰老会影响冬小麦(Triticum aestivum)后期生产阶段的光合作用效率和生长。光合作用对衰老的响应在自然变异中代表了改善旗叶衰老特性的宝贵资源。为了探究现代小麦品种在衰老过程中不同阶段光合电子传递的自然变异,我们将 32 个小麦品种的旗叶置于黑暗条件下诱导衰老过程,并同时测量快速荧光和调制 820nm 反射。结果表明,在黑暗诱导的衰老过程中,叶绿素含量、PSII 供体侧活性、PSI 和 PSII 与 PSI 之间的电子传递均降低,但它们对黑暗诱导的衰老的敏感性不同。此外,还观察到 32 个小麦品种之间的光合参数存在自然变异,并通过不同参数的变异系数表现出来。我们观察到 PSII 和 PSI 活性对黑暗诱导的衰老比它们之间的电子传递更不敏感,而 PSII 和 PSI 活性的自然变异大于 PSII 和 PSI 之间的电子传递。这表明在黑暗诱导的衰老过程中,Cyt 比 PSII 和 PSI 降解更快,且变异更小。

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