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Inhibition of root respiration induces leaf senescence in Alhagi sparsifolia

机译:抑制根系呼吸诱导桫椤叶叶片衰老

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摘要

Leaf senescence can be induced by numerous factors. In order to explore the relationship between root respiration and leaf senescence, we utilized different types of phloem girdling to control the root respiration of Alhagi sparsifolia and its physiological response. Our results showed that both girdling and inhibition of root respiration led to a decline of stomatal conductance, photosynthesis, transpiration rate, chlorophyll (Chl) a, Chl b, carotenoid (Car) content, Chl a/b, Chl/Car, water potential, and Chl a fluorescence, as well as to an increase of abscisic acid (ABA), proline, and malondialdehyde content in leaves and to upregulation of senescence-associated gene expression. Our present work implied that both inhibition of root respiration and girdling can induce leaf senescence. In comparison with phloem girdling, the leaf senescence caused by inhibition of root respiration was less significant. The reason for girdling-induced senescence was ABA and carbohydrate accumulation. Senescence induced by inhibition of root respiration occurred due to leaf water stress resulting from inhibition of water absorption.
机译:叶片衰老可由多种因素诱发。为探究根系呼吸与叶片衰老的关系,本研究采用不同类型的韧皮部围带来调控桫椤根系呼吸及其生理响应。结果表明,束带和抑制根系呼吸均导致叶片气孔导度、光合作用、蒸腾速率、叶绿素(Chl)a、Chl b、类胡萝卜素(Car)含量、Chl a/b、Chl/Car、水势和Chl a荧光的下降,以及叶片脱落酸(ABA)、脯氨酸和丙二醛含量的增加以及衰老相关基因表达的上调。我们目前的工作表明,抑制根系呼吸和束带都可以诱导叶片衰老。与韧皮部束带相比,抑制根系呼吸引起的叶片衰老不那么显著。束带引起的衰老原因是ABA和碳水化合物的积累。抑制根系呼吸诱导衰老是由于抑制吸水导致叶片水分胁迫引起的。

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