基因组大小的进化:我们能从动物的发展中学到什么?

A. Chipman, O. Khaner, A. Haas, E. Tchernov
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引用次数: 30

摘要

脊椎动物核DNA含量的差异已被证明与细胞大小、细胞分裂率和胚胎发育率有关。我们比较了七种无尾两栖动物,它们的基因组大小是它们的三倍。检查的参数包括许多胚胎结构中细胞的数量和密度,以及发育过程中中枢神经系统中细胞数量的变化。我们发现基因组大小在胚胎发育的不同阶段与细胞增殖率和发育率相关,但基因组大小与细胞大小之间的相关性仅在后期才明显。我们讨论了两栖动物基因组大小的进化。我们的讨论考虑了据称支持两种相互冲突的假设的数据:“骨骼DNA”假说,该假说声称基因组大小的差异具有选择性作用,以及“垃圾DNA”假说,该假说声称基因组大小的差异是非编码DNA序列积累的随机结果。我们表明,这些相互矛盾的假设可以整合到一个更复杂、更包容的基因组大小进化模型中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The evolution of genome size: what can be learned from anuran development?
Differences in nuclear DNA content in vertebrates have been shown to be correlated with cell size, cell division rate, and embryonic developmental rate. We compare seven species of anuran amphibians with a three-fold range of genome sizes. Parameters examined include the number and density of cells in a number of embryonic structures, and the change in cell number in the CNS during development. We show that genome size is correlated with cell proliferation rate and with developmental rate at different stages of embryonic development, but that the correlation between genome size and cell size is only evident at later stages. We discuss the evolution of genome size in amphibians. Our discussion takes into account data that reportedly support two conflicting hypotheses: the "skeletal DNA" hypothesis, which claims a selective role for differences in genome size, and the "junk DNA" hypothesis, which claims that differences in genome size are a random result of the accumulation of noncoding DNA sequences. We show that these supposedly conflicting hypotheses can be integrated into a more complex and inclusive model for the evolution of genome size.
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