首页> 外文期刊>Antonie van Leeuwenhoek: Journal of Microbiology and serology >Symbiotic yeasts from the mycangium, larval gut and woody substrate of an African stag beetle Xiphodontus antilope (Coleoptera: Lucanidae)
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Symbiotic yeasts from the mycangium, larval gut and woody substrate of an African stag beetle Xiphodontus antilope (Coleoptera: Lucanidae)

机译:来自霉菌的共生酵母,非洲雄鹿甲虫甲虫脱硫(植物植物:Lucanidae)的幼虫肠道和木本底物

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Female stag beetles (Lucanidae) possess internal mycangia to maintain microbial cultures. Yeasts from these mycangia may help with larval nutrition in nutrient poor woody substrates, but only a few Lucanidae taxa have been studied and all reports originate from Europe and Asia. We identify the first mycangial yeasts of a South African endemic Lucanidae beetle, Xiphodontus antilope, using nuclear ribosomal RNA and ITS DNA sequence data. In addition we identified yeasts from the larval gut, fecal matter, frass and woody substrate surrounding larvae and pupae. The mycangium of X. antilope was confined to females and is structurally similar to all other Lucanidae. Unlike most Lucanidae that seemingly associate with single species of yeast, or whose mycangia contain yeast monocultures, three yeast species were commonly isolated from X. antilope. Scheffersomyces coipomoensis was the most numerically dominant species on most substrates and in most individuals, but a second, undescribed, Scheffersomyces species was present in high numbers. A third species, also undescribed and unrelated to Scheffersomyces, was recovered from all mycangia but could not be detected in the larval gut, fecal matter, frass or woody substrates. We confirm a close association of Scheffersomyces yeasts with Lucanidae globally, but other taxa may also be involved. We show that the predominant mycangial yeasts also form the predominant yeasts within the larval gut and the woody substrates around the larvae and pupae. This combined external and internal colonization by the same yeasts may provide enhanced opportunities for nutrient acquisition, but this needs validation in future studies.
机译:女性雄鹿甲虫(Lucanidae)拥有内部肌癌以维持微生物培养。来自这些髓质的酵母可能有助于营养不良的木质基质幼虫营养,但只研究了少数卢卡尼达植物,并且所有报告都来自欧洲和亚洲。我们使用核核糖体RNA及其DNA序列数据识别南非特有露天肠甲虫甲虫的第一个Mycangial酵母,Xiphodontus抗植物。此外,我们鉴定了幼虫和蛹的幼虫肠道,粪便物质,Frass和木质基底的酵母。 X. antilope的mycangium被限制在女性身上,并且在结构上与所有其他卢卡尼亚人相似。与大多数Lucanidae不同,似乎与单一物种酵母相关联,或者肌菌含有酵母单一栽培,三种酵母种类通常来自X.抗疏藻。 Scheffersomyces Coipomoensis是大多数基材上最多数量的主导物种,但在大多数人中,但是,什菲统计学的什yemsomyces物种具有高数量。来自所有髓质的第三种,也是什叶径族酵母的不相关和无关,但不能在幼虫,粪便,粪便,Frass或木质基材中检测到。我们确认蚕豆酵母与全球Lucanidae的紧密协会,但也可能涉及其他分类群。我们表明,主要的神经酵母酵母也在幼虫和蛹周围形成幼虫肠道和木质底物中的主要酵母。相同酵母组合的外部和内部殖民化可能会为营养收购提供增强的机会,但这种需要在未来的研究中验证。

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