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首页> 外文期刊>Botanical Journal of the Linnean Society >Strong genetic structure in Dyckia excelsa (Bromeliaceae), an endangered species found on ironstone outcrops in Pantanal, Brazil
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Strong genetic structure in Dyckia excelsa (Bromeliaceae), an endangered species found on ironstone outcrops in Pantanal, Brazil

机译:达克斯·锡克萨(Bromeliaceae)的强遗传结构,巴西帕蒂纳尔铁通露头发现的濒临灭绝的物种

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The plant communities associated with iron-rich outcrops are still little known about to their genetic structure and diversity. Outcrops are often considered to be 'terrestrial islands', and gene FLow among populations on different outcrops is presumed to be hampered by the isolation effect provided by the surrounding matrix. Here, we studied the genetic diversity and structure of populations of Dyckia excelsa to test the hypothesis that the disjunction of the ironstone outcrops where this species occurs promotes its highly structured genetic variability. Seven nuclear microsatellite markers and two plastid DNA intergenic spacers (rps16-trnK and rpl32-trnL) were used to characterize individuals from seven locations in the region of Urucum Residual Plateau, Mato Grosso do Sul State, Brazil. These markers low haplotype and allelic diversity and high levels of genetic divergence among outcrops, indicating prolonged genetic isolation, with diversification of haplotypes dating from the Pleistocene (1.0 Mya). Pollen movement may occur between neighbouring populations, resulting in a pattern of isolation-by-distance. For conservation purposes, it is recommended that D. excelsa be preserved in situ in each specific location given the low levels of gene FLow and the high degree of genetic uniqueness in each group of populations investigated.
机译:与铁富含剥离相关的植物社区仍然对其遗传结构和多样性毫无疑问。露头通常被认为是“陆地群岛”,并且在周围基质提供的隔离效果被妨碍不同露头的群体的基因流动。在这里,我们研究了迪克斯遗传群的遗传多样性和结构,以测试该物种发生的铁通露头的假设促进其高结构化的遗传变异性。七颗核微卫星标记和两个质体DNA间隔区(rps16-trnK和RPL32-trnL)被用来从Urucum残留高原地区七个地点个人特点,南马托格罗索州,巴西。这些标志物低单倍型和等位基因多样性和露头的高水平遗传分歧,表明延长的遗传分离,具有从更新尔(1.0 mya)的单倍型多样化的单倍型多样化。在邻近群体之间可能发生花粉运动,导致逐距离的图案。为了保护目的,建议在每个特定位置在每个特定位置处于原位保存D. Excelsa在研究中的每组种群中的基因流量和高度的遗传唯一性。

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