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代谢异常与衣藻二次质体的多彩历史。

Metabolic quirks and the colourful history of the Euglena gracilis secondary plastid.

机构信息

Faculty of Science, Charles University, BIOCEV, Vestec, 252 50, Czechia.

School of Life Sciences, University of Dundee, Dundee, DD1 5EH, UK.

出版信息

New Phytol. 2020 Feb;225(4):1578-1592. doi: 10.1111/nph.16237. Epub 2019 Nov 4.

DOI:10.1111/nph.16237
PMID:31580486
Abstract

Euglena spp. are phototrophic flagellates with considerable ecological presence and impact. Euglena gracilis harbours secondary green plastids, but an incompletely characterised proteome precludes accurate understanding of both plastid function and evolutionary history. Using subcellular fractionation, an improved sequence database and MS we determined the composition, evolutionary relationships and hence predicted functions of the E. gracilis plastid proteome. We confidently identified 1345 distinct plastid protein groups and found that at least 100 proteins represent horizontal acquisitions from organisms other than green algae or prokaryotes. Metabolic reconstruction confirmed previously studied/predicted enzymes/pathways and provided evidence for multiple unusual features, including uncoupling of carotenoid and phytol metabolism, a limited role in amino acid metabolism, and dual sets of the SUF pathway for FeS cluster assembly, one of which was acquired by lateral gene transfer from Chlamydiae. Plastid paralogues of trafficking-associated proteins potentially mediating fusion of transport vesicles with the outermost plastid membrane were identified, together with derlin-related proteins, potential translocases across the middle membrane, and an extremely simplified TIC complex. The Euglena plastid, as the product of many genomes, combines novel and conserved features of metabolism and transport.

摘要

眼虫是具有相当生态存在和影响的光合鞭毛藻。眼虫属含有次生绿色质体,但由于其蛋白质组不完全特征化,无法准确理解质体的功能和进化历史。通过亚细胞分级分离、改进的序列数据库和 MS,我们确定了 E. gracilis 质体蛋白质组的组成、进化关系,从而预测了其功能。我们自信地鉴定了 1345 个不同的质体蛋白群,发现至少有 100 种蛋白质是从除绿藻或原核生物以外的生物中水平获得的。代谢重建证实了先前研究/预测的酶/途径,并提供了多个不寻常特征的证据,包括类胡萝卜素和植醇代谢的解偶联、在氨基酸代谢中的有限作用,以及 SUF 途径的两套 FeS 簇组装,其中一套是从衣原体中横向基因转移获得的。鉴定了与运输小泡与最外层质体膜融合相关的运输相关蛋白的质体同源物,以及与内质网相关蛋白、潜在的跨中膜转运蛋白和极其简化的 TIC 复合物。眼虫质体作为多个基因组的产物,结合了代谢和运输的新颖和保守特征。

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