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Landscape‐scale deforestation decreases gene flow distance of a keystone tropical palm Euterpe edulis Mart (Arecaceae)

机译:景观尺度的森林砍伐减少了关键的热带棕榈Euterpe edulis Mart(木犀科)的基因流动距离

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摘要

Habitat loss represents one of the main threats to tropical forests, which have reached extremely high rates of species extinction. Forest loss negatively impacts biodiversity, affecting ecological (e.g., seed dispersal) and genetic (e.g., genetic diversity and structure) processes. Therefore, understanding how deforestation influences genetic resources is strategic for conservation. Our aim was to empirically evaluate the effects of landscape‐scale forest reduction on the spatial genetic structure and gene flow of Euterpe edulis Mart (Arecaceae), a palm tree considered a keystone resource for many vertebrate species. This study was carried out in nine forest remnants in the Atlantic Forest, northeastern Brazil, located in landscapes within a gradient of forest cover (19–83%). We collected leaves of 246 adults and 271 seedlings and performed genotyping using microsatellite markers. Our results showed that the palm populations had low spatial genetic structure, indicating that forest reduction did not influence this genetic parameter for neither seedlings nor adults. However, forest loss decreased the gene flow distance, which may negatively affect the genetic diversity of future generations by increasing the risk of local extinction of this keystone palm. For efficient strategies of genetic variability conservation and maintenance of gene flow in E. edulis, we recommend the maintenance of landscapes with intermediary to high levels of forest cover, that is, forest cover above 40%.
机译:生境的丧失是对热带森林的主要威胁之一,热带森林已达到极高的物种灭绝速度。森林流失会对生物多样性产生负面影响,影响生态(例如种子扩散)和遗传(例如遗传多样性和结构)过程。因此,了解森林砍伐如何影响遗传资源是保护的战略。我们的目的是从经验上评估景观尺度森林砍伐对Euterpe edulis Mart(科)的空间遗传结构和基因流的影响,棕榈树被认为是许多脊椎动物的重要资源。这项研究是在巴西东北部大西洋森林中的九种森林遗迹中进行的,这些遗迹位于森林覆盖率梯度(19-83%)内的景观中。我们收集了246株成年叶片和271棵幼苗的叶子,并使用微卫星标记进行了基因分型。我们的研究结果表明,棕榈种群的空间遗传结构较低,这表明森林砍伐对苗和成虫均不影响该遗传参数。然而,森林流失减少了基因流动距离,这可能通过增加这种基石棕榈的局部灭绝风险而对后代的遗传多样性产生负面影响。为获得有效的遗传变异性策略并维持食用大肠埃希氏菌,我们建议维持中度至高森林覆盖率(即森林覆盖率高于40%)的景观。

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