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在黑暗中培养两个月的雪黄藻叶绿体系统的调制:显微分光荧光响应与形态学方面的比较

Modulations of the thylakoid system in snow xanthophycean alga cultured in the dark for two months: comparison between microspectrofluorimetric responses and morphological aspects.

作者信息

Baldisserotto C, Ferroni L, Moro I, Fasulo M P, Pancaldi S

机构信息

Laboratory of Cytophysiology, Department of Natural and Cultural Resources, University of Ferrara, Corso Ercole I d'Este 32, 44100 Ferrara, Italy.

出版信息

Protoplasma. 2005 Dec;226(3-4):125-35. doi: 10.1007/s00709-005-0127-1. Epub 2005 Dec 12.

Abstract

The response of the plastid was studied, with a special emphasis on thylakoid structure and function, in a snow filamentous xanthophycean alga (Xanthonema sp.) incubated in darkness for two months. Microspectrofluorimetric analyses were performed on single living cells to study the variations in the assembly of the chlorophyll-protein complexes of photosystem II, in comparison with cells grown in light. In parallel, changes in micro- and submicroscopic plastid morphology and in photosynthetic pigment content were monitored. Throughout the experiment, the lamellar architecture of thylakoids in the alga was relatively well preserved, whereas photosystem II underwent disassembly and degradation triggered by prolonged darkness. Conversely, the light-harvesting complex of photosystem II proved to be relatively stable for long periods in darkness. Moreover, a role of the peripheral antennae in determining thylakoid arrangement in xanthophycean algae is implied. Although the responses observed in Xanthonema sp. can be considered in terms of acclimation to darkness, the progressive destabilisation of the light-harvesting complex of photosystem II testifies to incipient ageing of the cells after 35 days.

摘要

对一种在黑暗中培养两个月的雪生丝状黄藻(Xanthonema sp.)的质体反应进行了研究,特别关注类囊体的结构和功能。对单个活细胞进行了显微分光荧光分析,以研究与在光照下生长的细胞相比,光系统II叶绿素 - 蛋白质复合物组装的变化。同时,监测了微观和亚微观质体形态以及光合色素含量的变化。在整个实验过程中,藻类类囊体的片层结构相对保存完好,而光系统II则因长时间黑暗而发生解体和降解。相反,光系统II的捕光复合物在黑暗中长时间相对稳定。此外,暗示了外周天线在决定黄藻中类囊体排列方面的作用。尽管在Xanthonema sp.中观察到的反应可以被认为是对黑暗的适应,但光系统II捕光复合物的逐渐不稳定证明了细胞在35天后开始老化。

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