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局部漂移负荷与相互连接种群的杂种优势。

Local drift load and the heterosis of interconnected populations.

作者信息

Whitlock M C, Ingvarsson P K, Hatfield T

机构信息

Department of Zoology, University of British Columbia, Vancouver, BC, Canada V6T 1Z4.

出版信息

Heredity (Edinb). 2000 Apr;84 ( Pt 4):452-7. doi: 10.1046/j.1365-2540.2000.00693.x.

Abstract

We use Wright's distribution of equilibrium allele frequency to demonstrate that hybrids between populations interconnected by low to moderate levels of migration can have large positive heterosis, especially if the populations are small in size. Beneficial alleles neither fix in all populations nor equilibrate at the same frequency. Instead, populations reach a mutation-selection-drift-migration balance with sufficient among-population variance that some partially recessive, deleterious mutations can be masked upon crossbreeding. This heterosis is greatest with intermediate mutation rates, intermediate selection coefficients, low migration rates and recessive alleles. Hybrid vigour should not be taken as evidence for the complete isolation of populations. Moreover, we show that heterosis in crosses between populations has a different genetic basis than inbreeding depression within populations and is much more likely to result from alleles of intermediate effect.

摘要

我们使用赖特平衡等位基因频率分布来证明,通过低到中等水平的迁移相互连接的种群之间的杂种可能具有较大的正向杂种优势,特别是当种群规模较小时。有益等位基因既不会在所有种群中固定,也不会以相同频率达到平衡。相反,种群达到突变 - 选择 - 漂变 - 迁移平衡,具有足够的种群间方差,以至于一些部分隐性的有害突变在杂交时可以被掩盖。这种杂种优势在中等突变率、中等选择系数、低迁移率和隐性等位基因的情况下最为明显。杂种优势不应被视为种群完全隔离的证据。此外,我们表明种群间杂交中的杂种优势与种群内近亲繁殖衰退具有不同的遗传基础,并且更有可能由中等效应的等位基因导致。

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