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The existence of fertile hybrids of closely related model earthworm species, Eisenia andrei and E. fetida

机译:密切相关模型蚯蚓物种肥沃杂种的存在性,艾西尼亚和艾瑞达

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摘要

Lumbricid earthworms Eisenia andrei (Ea) and E. fetida (Ef) are simultaneous hermaphrodites with reciprocal insemination capable of self-fertilization while the existence of hybridization of these two species was still debatable. During the present investigation fertile hybrids of Ea and Ef were detected. Virgin specimens of Ea and Ef were laboratory crossed (Ea+Ef) and their progeny was doubly identified. 1 -identified by species-specific maternally derived haploid mitochondrial DNA sequences of the COI gene being either 'a' for worms hatched from Ea ova or 'f' for worms hatched from Ef ova. 2 -identified by the diploid maternal/paternal nuclear DNA sequences of 28s rRNA gene being either 'AA' for Ea, 'FF' for Ef, or AF/FA for their hybrids derived either from the 'aA' or 'fF' ova, respectively. Among offspring of Ea+Ef pairs in F1 generation there were mainly aAA and fFF earthworms resulted from the facilitated self-fertilization and some aAF hybrids from aA ova but none fFA hybrids from fF ova. In F2 generation resulting from aAF hybrids mated with aAA a new generations of aAA and aAF hybrids were noticed, while aAF hybrids mated with fFF gave fFF and both aAF and fFA hybrids. Hybrids intercrossed together produced plenty of cocoons but no hatchlings independently whether aAF+aAF or aAF+fFA were mated. These results indicated that Ea and Ef species, easy to maintain in laboratory and commonly used as convenient models in biomedicine and ecotoxicology, may also serve in studies on molecular basis of interspecific barriers and mechanisms of introgression and speciation. Hypothetically, their asymmetrical hybridization can be modified by some external factors.
机译:Lumbricidid蚯蚓Eisenia Andrei(EA)和E.Fetida(EF)是同时性雌雄同体,其具有往复授精,能够自我施肥,而这两个物种的杂交存在仍然是难题的。在目前的调查期间,检测到EA和EF的肥沃杂交物。 EA和EF的原始标本是越过的实验室(EA + EF),其后代被逐渐识别。 1由物种特异性母体衍生的单倍体线粒体DNA DNA序列DNA序列,其为从EF OVA阴影的EA OVA或'F'孵出的蠕虫的“A”。 2由二倍体母体/父核DNA序列的28s rRNA基因为EF的“AA”,或为EF的“FF”,或其杂种的AF / FA源自“AA”或“FF”OVA,分别。在F1生成中EA + EF对的后代,主要是AAA和FFF蚯蚓,由促进的自施和来自AA OVA的一些AAF杂交物,但没有来自FF OVA的FFA杂种。在与AAA交配的AAF杂交物中产生的F2产生,注意到新一代AAA和AAF杂交物,而AAF杂交物与FFF配合给出FFF和AAF和FFA杂种。杂交种在一起制作了大量的茧,但无论AAF + AAF或AAF + FFA都被交配,没有独立地单独的幼龟。这些结果表明,EA和EF物种,易于维持在实验室和常用于生物医学和生态毒理学的方便模型,也可以在研究中的分子基础和血气和形态机制的研究中。假设,它们的不对称杂交可以通过一些外部因素来修改。

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