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S等位基因多样性表明,在一种自交不亲和植物的小种群中不存在配偶限制。

S-allele diversity suggests no mate limitation in small populations of a self-incompatible plant.

作者信息

Holderegger Rolf, Häner Raphael, Csencsics Daniela, Angelone Sonia, Hoebee Susan E

机构信息

WSL Swiss Federal Research Institute, CH-8903 Birmensdorf, Switzerland.

出版信息

Evolution. 2008 Nov;62(11):2922-8. doi: 10.1111/j.1558-5646.2008.00498.x. Epub 2008 Aug 26.

Abstract

Small populations of self-incompatible plants are assumed to be threatened by a limitation of compatible mating partners due to low genetic diversity at the self-incompatibility (S) locus. In contrast, we show by using a PCR-RFLP approach for S-genotype identification that 15 small populations (N = 8-88) of the rare wild pear (Pyrus pyraster) displayed no mate limitation. S-allele diversity within populations was high (N = 9-21) as was mate availability (92.9-100%). Although population size and S-allele diversity were strongly related, no relationship was found between population size and mate availability, gene diversity (He), or fixation index (F(IS)), based on five neutral microsatellite loci. As we determined the principal mate availability within populations based on the S-genotypes observed, the realized mate availability under natural conditions may differ from our estimates, for example, due to spatially limited pollen dispersal. We therefore urge studies on self-incompatible plants to proceed from the simple assessment of principal mate availability to the determination of realized mate availability in natural populations.

摘要

由于自交不亲和(S)位点的遗传多样性较低,自交不亲和植物的小种群被认为受到可育交配伙伴数量限制的威胁。相比之下,我们通过使用PCR-RFLP方法鉴定S基因型表明,15个稀有野生梨(Pyrus pyraster)的小种群(N = 8 - 88)没有交配限制。种群内的S等位基因多样性较高(N = 9 - 21),交配可利用性也较高(92.9 - 100%)。尽管种群大小与S等位基因多样性密切相关,但基于五个中性微卫星位点,未发现种群大小与交配可利用性、基因多样性(He)或固定指数(F(IS))之间存在关系。由于我们根据观察到的S基因型确定了种群内的主要交配可利用性,自然条件下的实际交配可利用性可能与我们的估计不同,例如,由于花粉传播的空间限制。因此,我们敦促对自交不亲和植物的研究从简单评估主要交配可利用性转向确定自然种群中的实际交配可利用性。

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