首页> 美国卫生研究院文献>Annals of Botany >Allozyme Variation in the Three Extant Populations of the Narrowly Endemic Cycad Dioon angustifolium Miq. (Zamiaceae) from North-eastern Mexico
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Allozyme Variation in the Three Extant Populations of the Narrowly Endemic Cycad Dioon angustifolium Miq. (Zamiaceae) from North-eastern Mexico

机译:狭窄地方性苏铁科植物Dioon angustifolium Miq的三个现存种群中的同工酶变异。 (Zamiaceae)来自墨西哥东北部

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摘要

• Background and Aims Dioon angustifolium was considered within D. edule. Recent morphometric and allozyme studies on D. edule have shown that D. angustifolium has originated from geographic isolation and is therefore considered to be a separate species. This cycad is endemic to north-eastern Mexico and is known only from three populations in the Sierra Madre Oriental mountain chain. Its populations are small when compared with its southern relative D. edule. In this study, genetic variation was determined within and between populations of D. angustifolium and the genetic consequences of habitat fragmentation and isolation of populations of this species were assessed.• Methods Allozyme electrophoresis of 14 presumptive loci was used. The data were analysed with statistical approximations for estimating genetic diversity, structure, gene flow and recent genetic bottlenecks.• Key Results Means and standard deviations of genetic diversity estimators were: number of alleles per locus (A = 1·67 ± 0·23), percentage of polymorphic loci (P = 52·4 ± 23 %) and expected heterozygosity (HE = 0·218 ± 0·093). The genetic variation attributable to differences among populations was 16·7 %. Mean gene flow between paired populations was Nm = 1·55 ± 0·67, which is similar to that reported for endemic plant species of narrow geographical distribution and species with gravity-dispersed seed. A recent bottleneck is detected in the populations studied.• Conclusions Dioon angustifolium presents high levels of genetic diversity compared with other cycad species, in spite of small population sizes. The recent bottleneck effect did not effectively reduce the genetic variation to the extent of eliminating these populations. The distribution of D. angustifolium appears to be the result of historical biogeographical effects related to the Pleistocene glaciations. It is recommended that this species be catalogued in the IUCN Red List of Threatened Species and conservation efforts be made to preserve it.
机译:•背景和目的Diust angustifolium被认为是在D. edule中。最近对小枝石楠的形态计量学和同工酶研究表明,小枝石楠起源于地理隔离,因此被认为是一个单独的物种。这种苏铁科植物是墨西哥东北部特有的,仅在Sierra Madre Oriental山脉的三个种群中才知道。与南部相对的D. edule相比,它的种群很小。在这项研究中,确定了杜鹃花种群内部和种群之间的遗传变异,并评估了该物种种群的生境破碎和分离的遗传后果。•方法使用14个推测基因座的同工酶电泳。对数据进行了统计近似分析,以估计遗传多样性,结构,基因流和近期的遗传瓶颈。•关键结果遗传多样性估计量的均值和标准差为:每个基因座的等位基因数量(A = 1·67±0·23) ,多态位点的百分比(P = 52·4±23%)和预期的杂合性(HE = 0·218±0·093)。归因于群体间差异的遗传变异为16·7%。成对种群之间的平均基因流为Nm = 1·55±0·67,与报道的地理分布狭窄的地方性植物物种和种子具有重力分散性的物种相似。在研究的种群中发现了最近的瓶颈。•结论尽管种群规模较小,但与其他苏铁属物种相比,杜鹃花具有较高的遗传多样性。最近的瓶颈效应并未有效地将遗传变异减少到消除这些种群的程度。 D. angustifolium的分布似乎是与更新世冰川相关的历史生物地理效应的结果。建议将该物种列入《世界自然保护联盟濒危物种红色名录》,并进行保护。

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