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美洲吸食花蜜长鼻蝠属 Leptonycteris spp. 的线粒体基因组比较及其在叶口蝠科系统发育中的研究。

Comparative mitochondrial genomics of American nectar-feeding long-nosed bats Leptonycteris spp. with insights into the phylogeny of the family Phyllostomidae.

机构信息

Laboratorio de Bioconservación y Manejo, Posgrado en Ciencias Quimicobiológicas, Departamento de Zoología, Escuela Nacional de Ciencias Biológicas, Instituto Politécnico Nacional, 11340 Mexico City, Mexico.

Museum of Vertebrate Zoology, Department of Integrative Biology, University of California Berkeley, Berkeley, CA, USA.

出版信息

Gene. 2023 Aug 30;879:147588. doi: 10.1016/j.gene.2023.147588. Epub 2023 Jun 25.

Abstract

Among leaf-nosed bats (family Phyllostomidae), the genus Leptonycteris (subfamily Glossophaginae), contains three migratory and obligate nectar-dwelling species of great ecological and economic importance; the greater long-nosed bat L. nivalis, the lesser long-nosed bat L. yerbabuenae, and the southern long-nosed bat L. curasoae. According to the IUCN, the three species are categorized as 'vulnerable', 'endangered', and 'near threatened', respectively. In this study, we assembled and characterized in detail the mitochondrial genome of Leptonycteris spp. and examined the phylogenetic position of this genus in the family Phyllostomidae based on protein coding genes (PCGs). The mitogenomes of L. nivalis, L. curasoae, and L. yerbabuenae are 16,708, 16,758, and 16,729 bp in length and each encode 13 PCGs, 22 transfer RNA genes, 2 rRNA genes, and a putative control region (CR). Mitochondrial gene order is identical to that reported before for the family Phyllostomidae. All tRNAs exhibit a 'cloverleaf' secondary structure, except tRNA-Serine-1 that is missing the DHU arm in the three species. All PCGs are exposed to purifying selection with atp8 experiencing the most relaxed purifying selection as the ω ratio was higher for this gene compared to the other PCGs in each species. The CR of each species contains three functional domains: extended termination associated sequence (ETAS), Central, and conserved sequence block domain (CSB). A phylomitogenomic analysis revealed that Leptonycteris is monophyletic and most closely related to the genus Glossophaga. The analysis also supported the monophyly of the family Glossophaginae in the speciose family Phyllostomidae. The mitochondria characterization of these species provides relevant information to develop molecular markers for conservation purposes.

摘要

在叶鼻蝠科(Phyllostomidae)中,Leptonycteris 属(Glossophaginae 亚科)包含三种具有重要生态和经济意义的迁徙性和专性食蜜蝙蝠;大长鼻蝠(L. nivalis)、小长鼻蝠(L. yerbabuenae)和南长鼻蝠(L. curasoae)。根据 IUCN 的标准,这三个物种分别被归类为“易危”、“濒危”和“近危”。在这项研究中,我们详细组装并鉴定了 Leptonycteris spp. 的线粒体基因组,并根据蛋白质编码基因(PCGs)检查了该属在叶鼻蝠科中的系统发育地位。L. nivalis、L. curasoae 和 L. yerbabuenae 的线粒体基因组分别长 16,708、16,758 和 16,729bp,编码 13 个 PCGs、22 个转移 RNA 基因、2 个 rRNA 基因和一个假定的控制区(CR)。线粒体基因顺序与以前报道的叶鼻蝠科相同。除了三个物种中的 tRNA-Serine-1 缺失 DHU 臂外,所有 tRNA 都表现出“三叶形”二级结构。所有 PCGs 都受到纯化选择的影响,atp8 经历了最松弛的纯化选择,因为与每个物种中的其他 PCGs 相比,该基因的 ω 比值更高。每个物种的 CR 都包含三个功能区域:扩展终止相关序列(ETAS)、中央和保守序列块区域(CSB)。 phylomitogenomic 分析表明,Leptonycteris 是单系的,与 Glossophaga 属最密切相关。该分析还支持在种类繁多的叶鼻蝠科中 Glossophaginae 科的单系性。这些物种的线粒体特征为保护目的提供了开发分子标记的相关信息。

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