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核基因组大小在物种间的差异支持了对C值悖论的“垃圾DNA”解释。

Variation across species in the size of the nuclear genome supports the junk-DNA explanation for the C-value paradox.

作者信息

Pagel M, Johnstone R A

机构信息

Harvard University, Cambridge, Massachusetts 02138.

出版信息

Proc Biol Sci. 1992 Aug 22;249(1325):119-24. doi: 10.1098/rspb.1992.0093.

DOI:10.1098/rspb.1992.0093
PMID:1360673
Abstract

The amount of DNA in the nuclear genome (the DNA C-value) of eukaryotes varies at least 80,000-fold across species, and yet bears little or no relation to organismic complexity or to the number of protein-coding genes. This phenomenon is known as the C-value paradox. One explanation for the C-value paradox attributes the size of the nuclear genome to 'junk' (typically non-coding) genetic elements that accumulate until the costs to the organism of replicating excess DNA select against it. Across species, organisms that develop at a slower rate should tolerate more junk DNA. Alternatively, junk DNA may function as a nucleo-skeleton to maintain the volume of the nucleus at a size proportional to the volume of the cytoplasm in the cell. Across species, the DNA C-value is predicted to vary with the nuclear and cytoplasmic volumes of cells. Previous studies have not been able to distinguish between the skeletal-DNA and junk-DNA explanations for the C-value paradox. We report a study of DNA content in 24 salamander species which does. The size of the nuclear genome is correlated with developmental rate even after the effects of nuclear and cytoplasmic volume have been removed. However, genome size is not correlated with cytoplasmic volume after controlling for developmental rate. These results support the view that junk DNA accumulates in the nuclear genome until the costs of replicating it become too great, rather than that it functions as a nucleo-skeleton.

摘要

真核生物核基因组中的DNA含量(DNA C值)在不同物种间至少相差8万倍,然而它与生物体的复杂性或蛋白质编码基因的数量几乎没有关系。这种现象被称为C值悖论。对C值悖论的一种解释是,将核基因组的大小归因于“垃圾”(通常是非编码的)遗传元件,这些元件不断积累,直到生物体复制多余DNA的成本对其产生不利选择。在不同物种中,发育速度较慢的生物体应该能容忍更多的垃圾DNA。或者,垃圾DNA可能起到核骨架的作用,使细胞核的体积维持在与细胞内细胞质体积成比例的大小。在不同物种中,预计DNA C值会随细胞的核体积和细胞质体积而变化。以往的研究无法区分对C值悖论的骨架DNA和垃圾DNA解释。我们报告了一项对24种蝾螈DNA含量的研究,该研究做到了这一点。即使去除了核体积和细胞质体积的影响,核基因组的大小仍与发育速度相关。然而,在控制了发育速度后,基因组大小与细胞质体积并无关联。这些结果支持了这样一种观点,即垃圾DNA在核基因组中不断积累,直到复制它的成本变得过高,而不是它起到核骨架的作用。

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