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在存在3-(3,4-二氯苯基)-1,1-二甲基脲(DCMU)的情况下,眼虫在光诱导叶绿体发育过程中的叶绿素形成与光合能力

Chlorophyll Formation and Photosynthetic Competence in Euglena During Light-Induced Chloroplast Development in the Presence of 3, (3,4-dichlorophenyl) 1,1-Dimethyl Urea (DCMU).

作者信息

Schiff J A, Zeldin M H, Rubman J

机构信息

Department of Biology, Brandeis University, Waltham, Massachusetts 02154.

出版信息

Plant Physiol. 1967 Dec;42(12):1716-25. doi: 10.1104/pp.42.12.1716.

Abstract

The possibility that photosynthetic competence is gratuitous for light-induced chloroplast development in Euglena gracilis var. bacillaris was examined by incubating dark-grown resting cells in the light with DCMU, an inhibitor of photosynthesis. Under these conditions photosynthetic carbon dioxide fixation was inhibited essentially completely at all times during chloroplast development, but about 70% of the chlorophyll was formed with essentially the same pattern of accumulation found for cells incubated in the absence of the inhibitor. Electron microscopy of cells incubated with DCMU in the light revealed the formation of morphologically recognizable chloroplasts having comparable overall dimensions and structural elements to those found in normally developed chloroplasts, but frequently lacking a readily detectable pyrenoid with paramylum sheaths, and often containing increased numbers of discs per lamella. Such abnormalities are considered minor since upon removal of DCMU by centrifugation, the cells usually regained almost full photosynthetic competence on a chlorophyll basis.It is concluded that photosynthetic competence is not necessary for chloroplast development in Euglena and supports the hypothesis, already suggested from other evidence, that light induction results in activation of synthetic machinery external to the developing chloroplast.

摘要

通过用光合作用抑制剂二氯苯基二甲基脲(DCMU)在光照下孵育黑暗生长的静止细胞,研究了光合能力对于纤细裸藻巴氏变种中光诱导叶绿体发育是否多余的可能性。在这些条件下,在叶绿体发育的所有阶段,光合二氧化碳固定基本上完全受到抑制,但约70%的叶绿素形成,其积累模式与在无抑制剂条件下孵育的细胞基本相同。对光照下用DCMU孵育的细胞进行电子显微镜观察发现,形成了形态上可识别的叶绿体,其总体尺寸和结构元件与正常发育的叶绿体相当,但通常缺乏易于检测到的带有副淀粉鞘的蛋白核,并且每个类囊体中的片层数量常常增加。由于通过离心去除DCMU后,细胞通常在叶绿素基础上几乎恢复了完全的光合能力,所以这些异常被认为是轻微的。得出的结论是,光合能力对于裸藻中的叶绿体发育不是必需的,这支持了已经从其他证据中提出的假说,即光诱导导致发育中的叶绿体外部的合成机制被激活。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a335/1086787/d62465614ff3/plntphys00504-0062-a.jpg

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