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原核生物与真核生物的界面

The prokaryote-eukaryote interface.

作者信息

Hunt L T, George D G, Barker W C

出版信息

Biosystems. 1985;18(3-4):223-40. doi: 10.1016/0303-2647(85)90023-1.

Abstract

Over the past 30 years the study of the sequences of proteins and nucleic acids has produced almost incredible amounts of information, new concepts, and new avenues of research. The beginning was slow: the first peptide hormones sequenced in the early 1950's, the first cytochrome c (horse) in 1961, the first bacterial ferredoxin in 1964, and the first transfer RNA (yeast alanine tRNA) in 1965. In the past 6 years, the rate of data accumulation has accelerated tremendously, primarily due to technological advances in nucleic acid sequencing techniques. For investigators of biological evolution, the sequence data and the new information on genetic mechanisms would prove to be the best evidence for elucidating relationships among the genomes of living organisms and for deducing phylogenetic history. In particular, they needed evidence to decide between the two hypotheses for the origin of eukaryotic cells. Now, less than 20 years since Margulis renewed the investigation of this problem, comparisons of protein and nucleic acid sequences, especially of the small subunit ribosomal RNAs, have answered this question in favor of the endosymbiotic origin of eukaryotic cells. After briefly discussing some of the concepts that helped resolve this controversy and the problems involved in using sequence data for evolutionary studies, we describe a few examples of useful evolutionary trees.

摘要

在过去的30年里,对蛋白质和核酸序列的研究产生了几乎令人难以置信的大量信息、新的概念以及新的研究途径。一开始进展缓慢:20世纪50年代初首次测定了肽激素序列,1961年测定了首个细胞色素c(马的),1964年测定了首个细菌铁氧化还原蛋白,1965年测定了首个转运RNA(酵母丙氨酸tRNA)。在过去的6年里,数据积累的速度大幅加快,这主要归功于核酸测序技术的技术进步。对于生物进化的研究者来说,序列数据以及关于遗传机制的新信息将被证明是阐明生物体基因组之间关系以及推断系统发育历史的最佳证据。特别是,他们需要证据来在关于真核细胞起源的两种假说之间做出抉择。如今,自马古利斯重新研究这个问题以来还不到20年,蛋白质和核酸序列的比较,尤其是小亚基核糖体RNA的比较,已经对这个问题给出了答案,支持真核细胞的内共生起源。在简要讨论了一些有助于解决这一争议的概念以及在进化研究中使用序列数据所涉及的问题之后,我们描述了一些有用的进化树实例。

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