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Tokorhabditis n. gen.(Rhabditida, Rhabditidae),一种用于极端生境生活的比较线虫模型。

Tokorhabditis n. gen. (Rhabditida, Rhabditidae), a comparative nematode model for extremophilic living.

机构信息

Kansai Research Center, Forestry and Forest Products Research Institute (FFPRI), Kyoto, Kyoto, 612-0855, Japan.

School of Agriculture, Meiji University, Kawasaki, Kanagawa, 214-8571, Japan.

出版信息

Sci Rep. 2021 Aug 13;11(1):16470. doi: 10.1038/s41598-021-95863-1.

Abstract

Life in extreme environments is typically studied as a physiological problem, although the existence of extremophilic animals suggests that developmental and behavioral traits might also be adaptive in such environments. Here, we describe a new species of nematode, Tokorhabditis tufae, n. gen., n. sp., which was discovered from the alkaline, hypersaline, and arsenic-rich locale of Mono Lake, California. The new species, which offers a tractable model for studying animal-specific adaptations to extremophilic life, shows a combination of unusual reproductive and developmental traits. Like the recently described sister group Auanema, the species has a trioecious mating system comprising males, females, and self-fertilizing hermaphrodites. Our description of the new genus thus reveals that the origin of this uncommon reproductive mode is even more ancient than previously assumed, and it presents a new comparator for the study of mating-system transitions. However, unlike Auanema and almost all other known rhabditid nematodes, the new species is obligately live-bearing, with embryos that grow in utero, suggesting maternal provisioning during development. Finally, our isolation of two additional, molecularly distinct strains of the new genus-specifically from non-extreme locales-establishes a comparative system for the study of extremophilic traits in this model.

摘要

生命在极端环境中通常被研究为一个生理问题,尽管极端嗜极动物的存在表明发育和行为特征在这种环境中也可能是适应性的。在这里,我们描述了一种新的线虫,Tokorhabditis tufae,n. gen.,n. sp.,它是从加利福尼亚州莫诺湖的碱性、高盐和富含砷的地方发现的。新物种提供了一个研究动物对极端环境生活的特定适应的可行模型,表现出一系列不寻常的生殖和发育特征的组合。与最近描述的姐妹群 Auanema 一样,该物种具有由雄性、雌性和自受精的雌雄同体组成的三雌雄交配系统。因此,我们对新属的描述揭示了这种不常见的生殖模式的起源比以前假设的更为古老,它为交配系统转变的研究提供了一个新的比较器。然而,与 Auanema 和几乎所有其他已知的小杆线虫不同,新物种是强制性的胎生,胚胎在子宫内生长,这表明在发育过程中有母体供应。最后,我们从非极端环境中分离出两种新的属特异性的、分子上不同的菌株,为这个模型的极端适应特征的研究建立了一个比较系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/49ec/8363662/b8c7430e8203/41598_2021_95863_Fig1_HTML.jpg

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