Trevors J T
Department of Environmental Biology, University of Guelph, Ontario, Canada.
Antonie Van Leeuwenhoek. 1995;67(4):315-24. doi: 10.1007/BF00872929.
Recent advances in microbiology and molecular biology have a unifying influence on our understanding of genetic diversity/similarity and evolutionary relationships in microorganisms. This article attempts to unify information from diverse areas such as microbiology, molecular biology, microbial physiology, clay crystal genes, metals-microbe-clay interactions and bacterial DNA restriction-modification systems (R-M) as they may apply to molecular evolution of bacteria. The possibility is discussed that the first informational molecules may have been catalytic RNA (micro-assembler) not DNA (now the master copy) and these first micro-assemblers may have been precursors of ribosomes.
微生物学和分子生物学的最新进展对我们理解微生物的遗传多样性/相似性及进化关系具有统一的影响。本文试图整合来自微生物学、分子生物学、微生物生理学、黏土晶体基因、金属-微生物-黏土相互作用以及细菌DNA限制修饰系统(R-M)等不同领域的信息,因为这些信息可能适用于细菌的分子进化。文中讨论了一种可能性,即首个信息分子可能是催化性RNA(微型组装器)而非DNA(如今的主拷贝),并且这些首个微型组装器可能是核糖体的前身。