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高光胁迫下小麦杂种增强了叶黄素循环和抗氧化防御系统。

The xanthophyll cycle and antioxidative defense system are enhanced in the wheat hybrid subjected to high light stress.

机构信息

Photosynthesis Research Center, Key Laboratory of Photobiology, Institute of Botany, Chinese Academy of Sciences, Beijing 100093, China.

出版信息

J Plant Physiol. 2011 Oct 15;168(15):1828-36. doi: 10.1016/j.jplph.2011.05.019. Epub 2011 Jul 6.

Abstract

Although the wheat hybrids have often shown higher grain yields, the physiological basis of the higher yields remains unknown. Previous studies suggest that tolerance to photoinhibition in the hybrid may be one of the physiological bases (Yang et al., 2006, Plant Sci 171:389-97). The objective of this study was to further investigate the possible mechanism responsible for tolerance to photoinhibition in the hybrid. Photosystem II (PSII) photochemistry, the xanthophyll cycle, and antioxidative defense system were compared between the hybrid and its parents subjected to high light stress (1500μmolm(-2)s(-1)). The analyses of oxygen-evolving activity, chlorophyll fluorescence, and protein blotting demonstrated that the higher tolerance in the hybrid than in its parents was associated with its higher tolerance of PSII to photoinhibition. High light induced an increase in non-photochemical quenching, and this increase was greater in the hybrid than in its parents. There were no differences in the pool size of the xanthophyll cycle between the hybrid and its parents. The content of violaxanthin decreased significantly, whereas the content of zeaxanthin+antherxanthin increased considerably during high light treatments. However, the decrease in violaxanthin content and the increase in zeaxanthin+antherxanthin content were greater in the hybrid than in its parents. High light resulted in a significant accumulation of H(2)O(2), O(2)(-) and catalytic Fe, and this accumulation was less in the hybrid than in its parents. High light induced a significant increase in the activities of superoxide dismutase, catalase, ascorbate peroxidase, glutathione reductase, dehydroascorbate reductase, and monodehydroascorbate reductase, and these increases were greater in the hybrid than its parents. These results suggest that the higher tolerance to photoinhibition in the hybrid may be associated with its higher capacity for antioxidative defense metabolism and the xanthophyll cycle.

摘要

尽管小麦杂交种通常表现出更高的籽粒产量,但高产量的生理基础仍不清楚。先前的研究表明,杂种对光抑制的耐受性可能是生理基础之一(Yang 等人,2006,植物科学 171:389-97)。本研究的目的是进一步探讨杂种对光抑制耐受性的可能机制。在高光胁迫(1500μmolm(-2)s(-1))下,比较了杂交种与其亲本之间的光系统 II(PSII)光化学、叶黄素循环和抗氧化防御系统。氧气释放活性、叶绿素荧光和蛋白质印迹分析表明,杂种比其亲本具有更高的 PSII 对光抑制的耐受性,从而具有更高的耐受性。高光诱导非光化学猝灭增加,杂种的增加大于其亲本。杂交种与其亲本之间叶黄素循环的池大小没有差异。在高光处理期间,紫黄质的含量显著下降,而玉米黄质+花药黄质的含量则大大增加。然而,在高光下,杂种中紫黄质含量的降低和玉米黄质+花药黄质含量的增加比其亲本更大。高光导致 H(2)O(2)、O(2)(-)和催化 Fe 的大量积累,杂种中的积累量小于其亲本。高光诱导超氧化物歧化酶、过氧化氢酶、抗坏血酸过氧化物酶、谷胱甘肽还原酶、脱氢抗坏血酸还原酶和单脱氢抗坏血酸还原酶的活性显著增加,杂种中的增加大于其亲本。这些结果表明,杂种对光抑制的更高耐受性可能与其更高的抗氧化防御代谢和叶黄素循环能力有关。

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