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黑暗中的藻类:应对缺氧/低氧条件的机制

Algae after dark: mechanisms to cope with anoxic/hypoxic conditions.

作者信息

Yang Wenqiang, Catalanotti Claudia, Wittkopp Tyler M, Posewitz Matthew C, Grossman Arthur R

机构信息

Department of Plant Biology, Carnegie Institution for Science, Stanford, CA, 94305, USA.

Department of Biology, Stanford University, Stanford, CA, 94305, USA.

出版信息

Plant J. 2015 May;82(3):481-503. doi: 10.1111/tpj.12823.

Abstract

Chlamydomonas reinhardtii is a unicellular, soil-dwelling (and aquatic) green alga that has significant metabolic flexibility for balancing redox equivalents and generating ATP when it experiences hypoxic/anoxic conditions. The diversity of pathways available to ferment sugars is often revealed in mutants in which the activities of specific branches of fermentative metabolism have been eliminated; compensatory pathways that have little activity in parental strains under standard laboratory fermentative conditions are often activated. The ways in which these pathways are regulated and integrated have not been extensively explored. In this review, we primarily discuss the intricacies of dark anoxic metabolism in Chlamydomonas, but also discuss aspects of dark oxic metabolism, the utilization of acetate, and the relatively uncharacterized but critical interactions that link chloroplastic and mitochondrial metabolic networks.

摘要

莱茵衣藻是一种单细胞、生活在土壤(及水生环境)中的绿藻,当处于缺氧/无氧条件时,它具有显著的代谢灵活性,可平衡氧化还原当量并产生ATP。利用糖进行发酵的途径多样性,常常在特定发酵代谢分支活性被消除的突变体中得以体现;在标准实验室发酵条件下,亲本菌株中几乎没有活性的补偿途径常常会被激活。这些途径的调控和整合方式尚未得到广泛探究。在本综述中,我们主要讨论莱茵衣藻黑暗无氧代谢的复杂性,但也会讨论黑暗有氧代谢、乙酸盐利用方面的问题,以及连接叶绿体和线粒体代谢网络的相对未被充分了解但至关重要的相互作用。

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