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田间种植大麦(Hordeum vulgare L.)光系统I的光抑制:诱导、恢复和适应

Photoinhibition of Photosystem I in field-grown barley (Hordeum vulgare L.): Induction, recovery and acclimation.

作者信息

Bernhard Teicher H, Lindberg Møller B, Vibe Scheller H

机构信息

Center of Molecular Plant Physiology (PlaCe), Plant Biochemistry Laboratory, Department of Plant Biology, The Royal Veterinary and Agricultural University, Thorvaldsensvej 40, DK-1871, Frederiksberg C, Copenhagen, Denmark.

出版信息

Photosynth Res. 2000;64(1):53-61. doi: 10.1023/A:1026524302191.

Abstract

The effects of exposure of a field-grown winter cultivar of barley (Hordeum vulgare L.) to Photosystem I (PS I) photoinhibitory conditions in the form of bright day-light combined with chilling conditions were investigated. PS I photoinhibition was manifested by damage to the Fe-S centers of PS I and to the PS I-A/B polypeptides. Up to 20% of the PS I complexes were photoinactivated. Upon transfer to room temperature, the plants partially recovered from PS I photoinhibition, although damage was still detectable after one week. These results demonstrate that PS I photoinhibition is a physiologically relevant phenomenon in chilling-tolerant plants grown under field conditions. In order to study the induction of cyclic electron transport around PS I by PS I photoinhibitory conditions, antibodies raised against the NDH-I subunit of the NDH complex (a component of cyclic electron transport) were used to measure NDH levels in the exposed plants. A marked increase in the amount of NDH complex and a corresponding increase in NADPH dehydrogenase activity in the thylakoids were observed. The data indicate that the response to PS I-photoinhibitory conditions may involve regulated changes in cyclic electron transport around PS I.

摘要

研究了田间种植的大麦(Hordeum vulgare L.)冬性品种在强光与低温相结合的光系统I(PS I)光抑制条件下的影响。PS I光抑制表现为PS I的铁硫中心和PS I - A/B多肽受损。高达20%的PS I复合物被光灭活。转移到室温后,植物从PS I光抑制中部分恢复,尽管一周后仍可检测到损伤。这些结果表明,在田间条件下生长的耐寒植物中,PS I光抑制是一种生理相关现象。为了研究PS I光抑制条件对PS I周围循环电子传递的诱导作用,使用针对NDH复合物(循环电子传递的一个组分)的NDH - I亚基产生的抗体来测量受处理植物中的NDH水平。观察到类囊体中NDH复合物量显著增加以及NADPH脱氢酶活性相应增加。数据表明,对PS I光抑制条件的响应可能涉及PS I周围循环电子传递的调节变化。

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