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首页> 外文期刊>American Journal of Botany >Genetic diversity and breeding system in a group of neotropical epiphytic ferns (Pleopeltis; Polypodiaceae)
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Genetic diversity and breeding system in a group of neotropical epiphytic ferns (Pleopeltis; Polypodiaceae)

机译:一组新热带附生蕨类(Pleopeltis; Polypodiaceae)的遗传多样性和育种系统

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Epiphytes are ecologically important components of tropical forests worldwide and yet they have been underrepresented in studies of reproductive biology. Given the presumed ephemeral nature of their substrates, and the importance of dispersal and colonization, epiphytes might be expected to undergo substantial inbreeding to ensure reproductive success, as in weedy terrestrial plants. While there is some evidence for inbreeding in epiphytic angiosperms, the only previous studies of fern epiphytes indicate that they are predominantly outcrossing. The present study reports on the genetic diversity and breeding system of six members of the Neotropical epiphytic fern genus Pleopeltis (Polypodiaceae). A survey of isozyme variability using starch gel electrophoresis revealed high population levels of polymorphism (P = 0.62), allelic diversity (A = 2.3), and individual heterozygosity (Ho = 0.181), but little differentiation among conspecific populations (I ³ 0.98; Gst = 0.048), and high interpopulational gene flow rates (Nm > 1). In addition, there was no indication of homozygote excess within populations that might indicate a history of selfing in these ferns: populations generally conformed to Hardy-Weinberg expected genotype frequencies, and both Wright's inbreeding coefficient (Fis) and Holsinger's intragametophytic selfing rates approached zero. Possible mechanisms limiting inbreeding in these ferns include antheridiogen activity and high levels of genetic load that would lead to inbreeding depression upon selfing.
机译:附生植物是全世界热带森林的重要生态组成部分,但在 生殖生物学研究中却没有得到很好的体现。考虑到其 底物的短暂特性,以及散布和定植的重要性,附生植物 有望进行近亲繁殖以确保繁殖 成功,例如在杂草陆生植物中。尽管有证据表明在附生被子植物中有 近亲繁殖,但先前对蕨类植物 附生植物的仅有研究表明它们主要是异交的。 的最新研究报告是新热带附生蕨类属(Pleopeltisae)(Polypodiaceae)的6个成员的遗传多样性和育种系统。使用淀粉凝胶电泳对同工酶变异性进行的 调查显示, 群体多态性较高(P = 0.62),等位基因多样性(A = 2.3),和个体杂合性(Ho = 0.181),但同种群体之间的 差异很小(I³0.98; Gst = 0.048),高种群间基因流速(Nm> 1) 。在 中,没有迹象表明种群 中纯合子过量可能表明这些蕨类动物有自交史:种群 通常符合Hardy-温伯格预期的基因型频率,莱特的近交系数(Fis)和霍尔辛格的 配子体内自交率都接近零。 限制这些蕨类植物近交的可能机制包括花药原活性和高 遗传负荷水平,这会导致自交后的近交沮丧。

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