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Cross-species chromosome painting tracks the independent origin of multiple sex chromosomes in two cofamiliar Erythrinidae fishes

机译:跨物种的染色体绘画跟踪了两条同属的红藻科鱼类中多性染色体的独立起源

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The Erythrinidae fish family is characterized by a large variation with respect to diploid chromosome numbers and sex-determining systems among its species, including two multiple X1X2Y sex systems in Hoplias malabaricus and Erythrinus erythrinus. At first, the occurrence of a same sex chromosome system within a family suggests that the sex chromosomes are correlated and originated from ancestral XY chromosomes that were either homomorphic or at an early stage of differentiation. To identify the origin and evolution of these X1X2Y sex chromosomes, we performed reciprocal cross-species FISH experiments with two sex-chromosome-specific probes designed from microdissected X1 and Y chromosomes of H. malabaricus and E. erythrinus, respectively. Our results yield valuable information regarding the origin and evolution of these sex chromosome systems. Our data indicate that these sex chromosomes evolved independently in these two closed related Erythrinidae species. Different autosomes were first converted into a poorly differentiated XY sex pair in each species, and additional chromosomal rearrangements produced both X1X2Y sex systems that are currently present. Our data provide new insights into the origin and evolution of sex chromosomes, which increases our knowledge about fish sex chromosome evolution.
机译:红斑鱼科鱼类的特征在于其二倍体染色体数目和性别决定系统之间存在很大的差异,其中包括在美洲霍普利亚斯和红斑猩猩中的两个多个X1X2Y性系统。起初,一个家庭中相同性染色体系统的出现表明性染色体是相关的,并起源于同形或分化早期的祖先XY染色体。为了确定这些X1X2Y性染色体的起源和进化,我们用两个性染色体特异性探针进行了相互的跨物种FISH实验,这两个探针分别从马拉巴里氏菌和红球菌的X1和Y染色体的显微解剖而设计。我们的结果产生了有关这些性染色体系统起源和进化的有价值的信息。我们的数据表明,这些性染色体在这两个封闭的相关的红藻科物种中独立进化。在每个物种中,不同的常染色体首先被转化为低分化的XY性对,另外的染色体重排产生了当前存在的X1X2Y性系统。我们的数据为性染色体的起源和进化提供了新的见识,从而增加了我们对鱼类性染色体进化的了解。

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