Karyotype evolution in Rhinolophus bats (Rhinolophidae, Chiroptera) illuminated by cross-species chromosome painting and G-banding comparison.

Xiuguang Mao, Wenhui Nie, Jinhuan Wang, Weiting Su, Lei Ao, Qing Feng, Yingxiang Wang, Marianne Volleth, Fengtang Yang
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引用次数: 42

Abstract

Rhinolophus (Rhinolophidae) is the second most speciose genus in Chiroptera and has extensively diversified diploid chromosome numbers (from 2n = 28 to 62). In spite of many attempts to explore the karyotypic evolution of this genus, most studies have been based on conventional Giemsa staining rather than G-banding. Here we have made a whole set of chromosome-specific painting probes from flow-sorted chromosomes of Aselliscus stoliczkanus (Hipposideridae). These probes have been utilized to establish the first genome-wide homology maps among six Rhinolophus species with four different diploid chromosome numbers (2n = 36, 44, 58, and 62) and three species from other families: Rousettus leschenaulti (2n = 36, Pteropodidae), Hipposideros larvatus (2n = 32, Hipposideridae), and Myotis altarium (2n = 44, Vespertilionidae) by fluorescence in situ hybridization. To facilitate integration with published maps, human paints were also hybridized to A. stoliczkanus chromosomes. Our painting results substantiate the wide occurrence of whole-chromosome arm conservation in Rhinolophus bats and suggest that Robertsonian translocations of different combinations account for their karyotype differences. Parsimony analysis using chromosomal characters has provided some new insights into the Rhinolophus ancestral karyotype and phylogenetic relationships among these Rhinolophus species so far studied. In addition to Robertsonian translocations, our results suggest that whole-arm (reciprocal) translocations involving multiple non-homologous chromosomes as well could have been involved in the karyotypic evolution within Rhinolophus, in particular those bats with low and medium diploid numbers.

跨种染色体绘制和g带比较揭示了鼻蝠(鼻蝠科,翼目)的核型进化。
鼻蝽属(Rhinolophus, Rhinolophidae)是翼翅目中种类第二多的属,具有广泛多样的二倍体染色体数目(从2n = 28到62)。尽管许多人试图探索该属的核型进化,但大多数研究都是基于常规的吉姆萨染色而不是g带。本研究利用流分选的Aselliscus stoliczkanus (Hipposideridae)染色体制作了一整套染色体特异性染色探针。利用这些探针,利用荧光原位杂交技术,首次建立了具有4种不同二倍体染色体数目(2n = 36、44、58和62)的6种鼻ophus和其他科3种鼻ophus: Rousettus leschenaulti (2n = 36,翼足科)、Hipposideros larvatus (2n = 32, Hipposideridae)和Myotis altarium (2n = 44, Vespertilionidae)的全基因组同源图谱。为了便于与已发表的地图进行整合,人类颜料也与A. stoliczkanus染色体杂交。我们的研究结果证实了整个染色体臂在鼻蝠中广泛存在,并表明不同组合的罗伯逊易位解释了它们的核型差异。利用染色体特征进行简约性分析,为研究鼻犀牛祖先核型和目前已研究的鼻犀牛物种间的系统发育关系提供了一些新的见解。除了Robertsonian易位外,我们的研究结果表明,涉及多个非同源染色体的整臂(互惠)易位也可能参与了鼻ophus的核型进化,特别是那些具有低二倍体数和中等二倍体数的蝙蝠。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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