马达加斯加地壁虎 Paroedura bastardi 和 Paroedura picta 种群的细胞遗传学比较

M. Mezzasalma, G. Odierna, R. Macirella, Elvira Brunelli
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Abstract We present a comparative chromosome study of several taxa of the Malagasy ground geckos of the Paroedura bastardi and P. picta species groups. We employed a preliminary molecular analysis using a trait of the mitochondrial 16S rRNA gene (of about 570 bp) to assess the taxonomic status of the samples studied and a cytogenetic analysis with standard karyotyping (5% Giemsa solution), silver staining (Ag–NOR staining) and sequential C-banding (C-banding + Giemsa and + fluorochromes). Our results show that all the taxa studied of the P. bastardi group (P. ibityensis, P. rennerae and P. cf. guibeae) have a similar karyotype composed of 2n = 34 chromosomes, with two metacentric pairs (1 and 3) and all other pairs being acrocentric. Chromosome diversification in the P. bastardi group was mainly linked to the diversification of heteromorphic sex chromosome systems (ZZ/ZW) in P. ibityensis and P. rennerae, while no heteromorphic sex chromosome pair was found in P. cf. guibeae. 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摘要

简单摘要 染色体变化是进化过程中的重要事件。它们可能引发物种的分化过程,也可能是系统发育多样化的结果。在这两种情况下,它们都可能代表具有分类学意义的离散进化标记。在本文中,我们对马达加斯加地壁虎属 Paroedura 的几个代表物种进行了细胞遗传学比较分析。我们的研究结果表明,该属的染色体变异涉及染色体数目、形态以及性染色体系统在不同进化系中的独立分化。我们还强调,Paroedura 的分类、遗传和染色体多样性仍被低估。摘要 我们对马达加斯加地壁虎 Paroedura bastardi 和 P. picta 物种群的几个类群进行了染色体比较研究。我们利用线粒体 16S rRNA 基因(约 570 bp)的性状进行了初步分子分析,以评估所研究样本的分类地位,并利用标准核型(5% Giemsa 溶液)、银染色(Ag-NOR 染色)和连续 C 带(C 带 + Giemsa 和 + 荧光)进行了细胞遗传学分析。我们的研究结果表明,所研究的 P. bastardi 群的所有类群(P. ibityensis、P. rennerae 和 P. cf. guibeae)都具有相似的核型,由 2n = 34 条染色体组成,其中有两对元中心染色体(1 号和 3 号),其他所有对都是渐中心染色体。P. bastardi 组的染色体多样化主要与 P. ibityensis 和 P. rennerae 中异形性染色体系统(ZZ/ZW)的多样化有关,而在 P. cf. guibeae 中没有发现异形性染色体对。picta 和 P. cf. picta)的染色体数目相同,均为 2n = 36,多数为尖心型元素,但偏心型元素的数目不同,这可能是第 2 对染色体倒位的结果。我们强调,Paroedura 属的特点是在不同进化系中异源性染色体的独立多样化,而且与其他系统发育相关的壁虎属类似,通过不同对的串联融合和倒位,逐步形成了双臂元素。
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Comparative Cytogenetics of the Malagasy Ground Geckos of the Paroedura bastardi and Paroedura picta Species Groups
Simple Summary Chromosome changes represent important events in evolution. They may trigger processes of speciation or be the result of phylogenetic diversification. In both cases they can represent discrete evolutionary markers of taxonomic significance. In this contribution, we performed a comparative cytogenetic analysis on several representatives of the Malagasy ground geckos of the genus Paroedura. Our results show that chromosome variability in this genus involves chromosome number, morphology, and the independent differentiation of sex chromosome systems in distinct evolutionary lineages. We also highlight that the taxonomic, genetic and chromosome diversity in Paroedura is still underestimated. Abstract We present a comparative chromosome study of several taxa of the Malagasy ground geckos of the Paroedura bastardi and P. picta species groups. We employed a preliminary molecular analysis using a trait of the mitochondrial 16S rRNA gene (of about 570 bp) to assess the taxonomic status of the samples studied and a cytogenetic analysis with standard karyotyping (5% Giemsa solution), silver staining (Ag–NOR staining) and sequential C-banding (C-banding + Giemsa and + fluorochromes). Our results show that all the taxa studied of the P. bastardi group (P. ibityensis, P. rennerae and P. cf. guibeae) have a similar karyotype composed of 2n = 34 chromosomes, with two metacentric pairs (1 and 3) and all other pairs being acrocentric. Chromosome diversification in the P. bastardi group was mainly linked to the diversification of heteromorphic sex chromosome systems (ZZ/ZW) in P. ibityensis and P. rennerae, while no heteromorphic sex chromosome pair was found in P. cf. guibeae. The two taxa investigated of the P. picta species group (here named P. picta and P. cf. picta based on molecular data) showed the same chromosome number of 2n = 36, mostly acrocentric elements, but differed in the number of metacentric elements, probably as a result of an inversion at chromosome pair 2. We highlight that the genus Paroedura is characterized by the independent diversification of heterogametic sex chromosomes in different evolutionary lineages and, similarly to other phylogenetically related gecko genera, by a progressive formation of a biarmed element by means of tandem fusions and inversions of distinct pairs.
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