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Molecular Cytogenetics in Trough Shells (Mactridae Bivalvia): Divergent GC-Rich Heterochromatin Content

机译:槽壳中的分子细胞遗传学(Mactridae双壳纲):富含GC的异染色质含量

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摘要

The family Mactridae is composed of a diverse group of marine organisms, commonly known as trough shells or surf clams, which illustrate a global distribution. Although this family includes some of the most fished and cultured bivalve species, their chromosomes are poorly studied. In this work, we analyzed the chromosomes of Spisula solida, Spisula subtruncata and Mactra stultorum by means of fluorochrome staining, C-banding and fluorescent in situ hybridization using 28S ribosomal DNA (rDNA), 5S rDNA, H3 histone gene and telomeric probes. All three trough shells presented 2n = 38 chromosomes but different karyotype compositions. As happens in most bivalves, GC-rich regions were limited to the nucleolus organizing regions in Spisula solida. In contrast, many GC-rich heterochromatic bands were detected in both Spisula subtruncata and Mactra stultorum. Although the three trough shells presented single 5S rDNA and H3 histone gene clusters, their chromosomal locations differed. Regarding major rDNA clusters, while Spisula subtruncata presented a single cluster, both Spisula solida and Mactra stultorum showed two. No evidence of intercalary telomeric signals was detected in these species. The molecular cytogenetic characterization of these taxa will contribute to understanding the role played by chromosome changes in the evolution of trough shells.
机译:Mactridae家族由各种各样的海洋生物组成,通常被称为海槽贝壳或海蛤,它们说明了全球分布。尽管该家族包括一些捕捞和养殖最多的双壳类物种,但它们的染色体研究却很少。在这项工作中,我们使用28S核糖体DNA(rDNA),5S rDNA,H3组蛋白基因和端粒探针,通过荧光染料染色,C带和荧光原位杂交的方法,分析了固态螺旋藻,短螺旋藻和Mactra肉瘤的染色体。所有三个槽壳均显示2n = 38条染色体,但核型组成不同。在大多数双壳类动物中,富含GC的区域仅限于螺旋藻中的核仁组织区域。相反,在螺旋藻和麦兜(Mactra stultorum)中均检测到许多富含GC的异色带。尽管三个槽壳呈现单个5S rDNA和H3组蛋白基因簇,但它们的染色体位置不同。关于主要的rDNA簇,sub.truncata螺旋藻呈现单个簇,而固形螺旋藻和Mactra stultorum均显示两个簇。在这些物种中未检测到cal间端粒信号的证据。这些分类单元的分子细胞遗传学特征将有助于理解染色体变化在槽壳进化中所起的作用。

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