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首页> 外文期刊>Botanical Journal of the Linnean Society >Ecological niche modelling and genetic diversity of Anomochloa marantoidea (Poaceae): filling the gaps for conservation in the earliest-diverging grass subfamily
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Ecological niche modelling and genetic diversity of Anomochloa marantoidea (Poaceae): filling the gaps for conservation in the earliest-diverging grass subfamily

机译:Anomochloa Marantoidea(Poaceae)的生态利基建模与遗传多样性:填补最早发散的亚家族保护的差距

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摘要

Anomochlooideae (Poaceae) represent the earliest-diverging extant lineage of grasses. One of the two genera is the monotypic Anomochloa, which is extremely rare and restricted to the Atlantic Forest of southern Bahia state in Brazil, where only two natural populations have been recorded to date. Knowledge of A. marantoidea is considered crucial to understanding evolutionary and diversification patterns in Poaceae. Despite this, knowledge of the biology and distribution of A. marantoidea remain incomplete, and thus the conservation of this poorly known species is problematic. We used niche modelling to estimate its current distribution and assess potential ranges in situ to explore new occurrences. In addition, genetic diversity and the factors that disrupt gene flow between populations of this species were estimated using molecular markers. Two new populations were documented; the modelled ecological niche indicates high climatic restriction, but also revealed suitable sites for the establishment of new populations. Genetic diversity is correlated to population size, and genetic structure analysis suggests recent fragmentation and low gene flow among the remaining populations, which exhibit high levels of inbreeding. These levels also indicate the capacity of A. marantoidea to respond favourably to selection and, thus, that a conservation plan could be designed to maintain the current genetic diversity.
机译:Anomochloideae(Poaceae)代表了最早分歧的草地的近似谱系。这两种属于单调的Anomochloa,这是极其罕见的,其极为罕见和仅限于巴西的南巴希州大西洋森林,其中只记录了两种自然人口。对A. Marantiea的了解被认为对理解Poaceae的进化和多样化模式至关重要。尽管如此,知识A.Marantoidea的生物学和分布仍然不完整,因此保护这种令人着名的物种的保护是有问题的。我们使用利基建模来估计其当前分布并评估原位的潜在范围,以探索新出现。此外,使用分子标记估计遗传多样性和破坏该物种群体之间基因流动的因素。记录了两名新人;所建模的生态利基表明气候限制很高,而且揭示了建立新人的合适部位。遗传多样性与种群规模相关,遗传结构分析表明剩余的群体中近期的碎裂和低基因流动,其表现出高水平的近亲繁殖。这些水平还表明A.Marantiea对选择的响应的能力,因此可以旨在维护当前的遗传多样性。

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