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DNA含量的调控:直接原因与最终结果

The modulation of DNA content: proximate causes and ultimate consequences.

作者信息

Gregory T R, Hebert P D

机构信息

Department of Zoology, University of Guelph, Guelph, Ontario N1G 2W1,

出版信息

Genome Res. 1999 Apr;9(4):317-24.

Abstract

The forces responsible for modulating the large-scale features of the genome remain one of the most difficult issues confronting evolutionary biology. Although diversity in chromosomal architecture, nucleotide composition, and genome size has been well documented, there is little understanding of either the evolutionary origins or impact of much of this variation. The 80,000-fold divergence in genome sizes among eukaryotes represents perhaps the greatest challenge for genomic holists. Although some researchers continue to characterize much variation in genome size as a mere by-product of an intragenomic selfish DNA "free-for-all" there is increasing evidence for the primacy of selection in molding genome sizes via impacts on cell size and division rates. Moreover, processes inducing quantum or doubling series variation in gametic or somatic genome sizes are common. These abrupt shifts have broad effects on phenotypic attributes at both cellular and organismal levels and may play an important role in explaining episodes of rapid-or even saltational-character state evolution.

摘要

调控基因组大规模特征的力量仍然是进化生物学面临的最棘手问题之一。尽管染色体结构、核苷酸组成和基因组大小的多样性已有充分记录,但对于这种变异的大部分进化起源或影响却知之甚少。真核生物基因组大小80000倍的差异可能是基因组整体论者面临的最大挑战。尽管一些研究人员继续将基因组大小的许多变异仅仅描述为基因组内自私DNA“混战”的副产品,但越来越多的证据表明,选择通过影响细胞大小和分裂速率在塑造基因组大小方面起着首要作用。此外,诱导配子或体细胞基因组大小发生量子或加倍系列变异的过程很常见。这些突然的变化在细胞和生物体水平上对表型属性都有广泛影响,可能在解释快速甚至跳跃式性状状态进化事件中发挥重要作用。

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