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主要进行自花授粉的植物中的精细空间遗传结构:种子和花粉扩散的作用。

Fine-scale spatial genetic structure in a predominantly selfing plant: role of seed and pollen dispersal.

机构信息

Life Sciences Department, Ben-Gurion University of the Negev, Beer Sheva, Israel.

出版信息

Heredity (Edinb). 2010 Oct;105(4):384-93. doi: 10.1038/hdy.2009.168. Epub 2009 Dec 2.

Abstract

We present a study of fine-scale spatial genetic structure (SGS) and assess the impact of seed and pollen dispersal on the pattern of genetic diversity in the predominantly selfing Hordeum spontaneum. The study included (1) direct measurement of dispersal in a controlled environment, and (2) analyses of SGS and estimation of the ratio of pollen to seed flow in three natural populations sampled in linear transects at fixed increasing inter-plant distances. Analysis of SGS with 10 nuclear SSRs showed in all three populations a significant autocorrelation for the distance classes of 1 or 2 m and a negative linear relationship between kinship coefficients, calculated for pairs of individuals, and logarithm of geographical distance between members of the pairs. Major seed dispersal (95%) was found to be within 1.2 m from the mother plant. Pollen flow, estimated from the comparison of nuclear and chloroplast variation, was spatially limited as much as was seed dispersal, and tended to be overestimated when measured at spatial scales exceeding that of SGS. We conclude that combined effects of selfing, occasional outcrossing, localized seed dispersal and high plant density create an equilibrium between drift and gene flow in this species resulting in SGS at a very fine spatial scale.

摘要

我们研究了精细的空间遗传结构 (SGS),并评估了种子和花粉扩散对主要自交的野生大麦遗传多样性模式的影响。该研究包括 (1) 在受控环境中直接测量扩散,以及 (2) 在三个自然种群中进行 SGS 分析和估计花粉与种子流的比例,这些种群在固定的增加植物间距离的线性样带上进行采样。使用 10 个核 SSR 对 SGS 的分析表明,在所有三个种群中,1 或 2 m 的距离类别的自相关显著,并且个体对之间的亲缘系数与成员对数的地理距离之间呈负线性关系。发现主要的种子扩散(95%)发生在距母株 1.2 m 以内。从核和叶绿体变异的比较中估计的花粉流与种子扩散一样受到空间限制,并且当在超过 SGS 的空间尺度上进行测量时,往往会被高估。我们得出的结论是,自交、偶尔的异交、本地化的种子扩散和高密度植物的综合作用在这个物种中产生了漂移和基因流之间的平衡,导致 SGS 出现在非常精细的空间尺度上。

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