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莱茵衣藻中光独立叶绿素积累需要叶绿体chlB基因。

Chloroplast chlB gene is required for light-independent chlorophyll accumulation in Chlamydomonas reinhardtii.

作者信息

Liu X Q, Xu H, Huang C

机构信息

Biochemistry Department, Dalhousie University, Halifax, Nova Scotia, Canada.

出版信息

Plant Mol Biol. 1993 Oct;23(2):297-308. doi: 10.1007/BF00029006.

Abstract

Light-independent chlorophyll synthesis occurs in some algae, lower plants, and gymnosperms, but not in angiosperms. We have identified a new chloroplast gene, chlB, that is required for the light-independent accumulation of chlorophyll in the green alga Chlamydomonas reinhardtii. The chlB gene was cloned, sequenced, and then disrupted by performing particle gun-mediated chloroplast transformation. The resulting homoplasmic mutant was unable to accumulate chlorophyll in the dark and thus exhibited a 'yellow-in-the-dark' phenotype. The chlB gene encodes a polypeptide of 688 amino acid residues, and is distinct from two previously characterized chloroplast genes (chlN and chlL) also required for light-independent chlorophyll accumulation in C. reinhardtii. Three unidentified open reading frames in chloroplast genomes of liverwort, black pine, and Chlamydomonas moewusii were also identified as chlB genes, based on their striking sequence similarities to the C. reinhardtii chlB gene. A chlB-like gene is absent in chloroplast genomes of tobacco and rice, consistent with the lack of light-independent chlorophyll synthesis in these plants. Polypeptides encoded by the chloroplast chlB genes also show significant sequence similarities with the bchB gene product of Rhodobacter capsulatus. Comparisons among the chloroplast chlB and the bacterial bchB gene products revealed five highly conserved sequence areas that are interspersed by four stretches of highly variable and probably insertional sequences.

摘要

不依赖光的叶绿素合成发生在一些藻类、低等植物和裸子植物中,但被子植物中不存在这种现象。我们鉴定出一个新的叶绿体基因chlB,它是莱茵衣藻中不依赖光积累叶绿素所必需的。chlB基因被克隆、测序,然后通过粒子枪介导的叶绿体转化将其破坏。产生的同质性突变体在黑暗中无法积累叶绿素,因此表现出“黑暗中变黄”的表型。chlB基因编码一个由688个氨基酸残基组成的多肽,与莱茵衣藻中另外两个先前已鉴定的、同样参与不依赖光的叶绿素积累的叶绿体基因(chlN和chlL)不同。基于它们与莱茵衣藻chlB基因显著的序列相似性,地钱、黑松和牟氏衣藻叶绿体基因组中的三个未鉴定的开放阅读框也被鉴定为chlB基因。烟草和水稻的叶绿体基因组中不存在chlB样基因,这与这些植物缺乏不依赖光的叶绿素合成一致。叶绿体chlB基因编码的多肽与荚膜红细菌的bchB基因产物也显示出显著的序列相似性。叶绿体chlB基因产物与细菌bchB基因产物的比较揭示了五个高度保守的序列区域,它们被四段高度可变且可能是插入性的序列隔开。

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