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首页> 外文期刊>Biochemical Systematics and Ecology >Fine-scale spatial genetic structure in two Mexican cycad species Dioon caputoi and Dioon merolae (Zamiaceae, Cycadales): Implications for conservation
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Fine-scale spatial genetic structure in two Mexican cycad species Dioon caputoi and Dioon merolae (Zamiaceae, Cycadales): Implications for conservation

机译:两种墨西哥苏铁科植物Dioon caputoi和Dioon merolae(Zamiaceae,Cycadales)的精细尺度空间遗传结构:对保护的意义

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摘要

An understanding of how genetic variation is distributed locally is not only vital to the diagnosis of the conservational status of a species, but also to prioritize actions of sustainable management. We compared the fine-scale spatial genetic structure (SGS) of two Mexican cycads, Dioon caputoi and Dioon merolae, which differ in aspects such as distribution range, density and population size, and habitat requirements, with the premise that this interspecific comparison will help to contrast the effects of these aspects on local genetic organization and thereby infer the possible causes of differences in distribution. We estimated the autocorrelation index rii, for the delineation of genetic neighborhoods. We used 14 alloenzymatic loci in D. caputoi and ten in D. merolae, and found that populations of D. caputoi have higher autocorrelation coefficients (r(ij) = 0.113 and 0.082) than that of D. lnerolae (r(ij) = 0.034). Contrary to expectations, we found that the inferred dispersal distance is not lower in D. caputoi, of narrow distribution compared to D. merolae. Contrasting population densities and habitat types may explain these differences, even when both species have the same type of seed and pollen dispersal vectors. We conclude that wide distribution and greater population density of D. merolae (compared to D. caputoi) is probably not due to greater dispersal ability, but to a higher capacity for colonization. (C) 2011 Elsevier Ltd. All rights reserved.
机译:了解遗传变异在当地的分布方式不仅对物种的保护状况的诊断至关重要,而且对确定可持续管理措施的优先级也至关重要。我们比较了两个墨西哥苏铁(Dioon caputoi和Dioon merolae)的细尺度空间遗传结构(SGS),它们在分布范围,密度和种群数量以及栖息地需求等方面有所不同,前提是这种种间比较将有所帮助对比这些方面对当地遗传组织的影响,从而推断出分布差异的可能原因。我们估计了自相关指数rii,以描绘遗传邻域。我们在D. caputoi中使用了14个同化酶基因座,在D. merolae中使用了10个同化酶基因座,发现Cap。D. caputoi的种群的自相关系数(r(ij)= 0.113和0.082)比L. lnerolae(r(ij)= 0.034)。与预期相反,我们发现推断的散布距离在D. caputoi中并不低,与D. merolae相比分布较窄。即使两种物种具有相同类型的种子和花粉传播载体,相反的种群密度和栖息地类型也可以解释这些差异。我们得出的结论是,D。merolae的广泛分布和更高的种群密度(与caputoi相比)可能不是由于更大的分散能力,而是由于更高的定殖能力。 (C)2011 Elsevier Ltd.保留所有权利。

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