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西葫芦幼苗中单个子叶衰老进程取决于另一子叶的光照状态:细胞分裂素及细胞分裂素氧化酶/脱氢酶活性的潜在作用

Senescence progression in a single darkened cotyledon depends on the light status of the other cotyledon in Cucurbita pepo (zucchini) seedlings: potential involvement of cytokinins and cytokinin oxidase/dehydrogenase activity.

作者信息

Ananieva Kalina, Ananiev Evguéni D, Doncheva Snejana, Georgieva Katya, Tzvetkova Nikolina, Kamínek Miroslav, Motyka Václav, Dobrev Petre, Gajdosová Silvia, Malbeck Jiri

机构信息

Acad. M. Popov Institute of Plant Physiology, Bulgarian Academy of Sciences, Acad. G. Bonchev Str., Bl. 21, Sofia 1113, Bulgaria.

出版信息

Physiol Plant. 2008 Dec;134(4):609-23. doi: 10.1111/j.1399-3054.2008.01161.x. Epub 2008 Sep 19.

Abstract

Darkness mediates different senescence-related responses depending on the targeting of dark treatment (whole plants or individual leaves) and on the organs that perceive the signal (leaves or cotyledons). As no data are available on the potential role of darkness to promote senescence when applied to individual cotyledons, we have investigated how darkness affects the progression of senescence in either a single or both individually darkened cotyledons of young 10-day-old Cucurbita pepo (zucchini) seedlings. Strong acceleration of senescence was observed when both cotyledons were darkened as judged by the damage in their anatomical structure, deterioration of chloroplast ultrastructure in parallel with decreased photosynthetic rate and photochemical quantum efficiency of PSII. In addition, the endogenous levels of cytokinins (CKs) and IAA were strongly reduced. In a single individually darkened cotyledon, the structure and function of the photosynthetic apparatus as well as the contents of endogenous CKs and IAA were much less affected by darkness, thus suggesting inhibitory effect of the illuminated cotyledon on the senescence of the darkened one. Apparently, the effect of darkness to accelerate/delay senescence in a single darkened cotyledon depends on the light status of the other cotyledon from the pair. The close positive correlation between CK content and the activity of CK oxidase/dehydrogenase (CKX; EC 1.4.3.18/1.5.99.12) suggested that CKX was essentially involved in the mechanisms of downregulation of endogenous CK levels. Our results indicated that CKX-regulated CK signaling could be a possible regulatory mechanism controlling senescence in individually darkened cotyledons.

摘要

黑暗介导不同的衰老相关反应,这取决于黑暗处理的靶向对象(整株植物或单个叶片)以及感知信号的器官(叶片或子叶)。由于目前尚无关于对单个子叶进行黑暗处理促进衰老的潜在作用的数据,我们研究了黑暗如何影响10日龄西葫芦(Cucurbita pepo)幼苗单个或两个单独遮光子叶中衰老的进程。当两个子叶都遮光时,观察到衰老强烈加速,这可通过其解剖结构的损伤、叶绿体超微结构的恶化以及光合速率和PSII光化学量子效率的降低来判断。此外,细胞分裂素(CKs)和吲哚乙酸(IAA)的内源水平大幅降低。在单个单独遮光的子叶中,光合器官的结构和功能以及内源CKs和IAA的含量受黑暗影响小得多,这表明光照子叶对遮光子叶的衰老有抑制作用。显然,黑暗对单个遮光子叶加速/延缓衰老的影响取决于另一对子叶的光照状态。CK含量与CK氧化酶/脱氢酶(CKX;EC 1.4.3.18/1.5.99.12)活性之间的密切正相关表明,CKX本质上参与了内源CK水平下调的机制。我们的结果表明,CKX调节的CK信号传导可能是控制单个遮光子叶衰老的一种可能的调节机制。

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