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次生代谢、创新进化与生化多样性——综述

Secondary metabolism, inventive evolution and biochemical diversity--a review.

作者信息

Vining L C

机构信息

Biology Department, Dalhousie University, Halifax, N.S., Canada.

出版信息

Gene. 1992 Jun 15;115(1-2):135-40. doi: 10.1016/0378-1119(92)90551-y.

Abstract

Evidence now being obtained through nucleotide (nt) sequence analysis supports the concept that secondary metabolism has arisen by modification of existing primary metabolic reactions. Although amino acid sequence identity deduced from nt sequences of genes encoding proteins from related primary and secondary metabolic pathways is sufficient to indicate a common ancestry, the match is often better when genes in different rather than in the same species are compared. The information so far available suggests that gene transfer between organisms has been an important factor in the evolution of secondary metabolism. Many secondary pathways may be of relatively ancient origin and they may have arisen only infrequently. Much subsequent elaboration of the pathways has probably taken place after their acquisition by other species and so has been influenced by a variety of selective conditions. The characteristic diversity of secondary metabolites and their functions can be accounted for by the random manner in which the pathways initially evolved and have subsequently been exploited.

摘要

目前通过核苷酸(nt)序列分析获得的证据支持这样一种观点,即次生代谢是通过对现有初级代谢反应的修饰而产生的。尽管从相关初级和次级代谢途径中编码蛋白质的基因的nt序列推导出来的氨基酸序列同一性足以表明共同的祖先,但当比较不同物种而非同一物种中的基因时,匹配度往往更高。目前可得的信息表明,生物体之间的基因转移是次生代谢进化中的一个重要因素。许多次生途径可能起源相对古老,而且可能很少出现。这些途径随后的许多精细演化可能是在被其他物种获得之后发生的,因此受到了各种选择条件的影响。次生代谢产物的特征多样性及其功能可以通过这些途径最初进化以及随后被利用的随机方式来解释。

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