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The zebrafish maternal-effect gene cellular atoll encodes the centriolar component sas-6 and defects in its paternal function promote whole genome duplication

机译:斑马鱼母体效应基因细胞环礁编码中心粒组件sas-6,其父本功能缺陷促进了全基因组复制

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A female-sterile zebrafish maternal-effect mutation in cellular atoll (cea) results in defects in the initiation of cell division starting at the second cell division cycle. This phenomenon is caused by defects in centrosome duplication, which in turn affect the formation of a bipolar spindle. We show that cea encodes the centriolar coiled-coil protein Sas-6, and that zebrafish Cea/Sas-6 protein localizes to centrosomes. cea also has a genetic paternal contribution, which when mutated results in an arrested first cell division followed by normal cleavage. Our data supports the idea that, in zebrafish, paternally inherited centrosomes are required for the first cell division while maternally derived factors are required for centrosomal duplication and cell divisions in subsequent cell cycles. DNA synthesis ensues in the absence of centrosome duplication, and the one-cycle delay in the first cell division caused by cea mutant sperm leads to whole genome duplication. We discuss the potential implications of these findings with regards to the origin of polyploidization in animal species. In addition, the uncoupling of developmental time and cell division count caused by the cea mutation suggests the presence of a time window, normally corresponding to the first two cell cycles, which is permissive for germ plasm recruitment. (C) 2007 Elsevier Inc. All rights reserved.
机译:细胞环礁(cea)中的雌性不育斑马鱼母体效应突变导致从第二个细胞分裂周期开始的细胞分裂起始缺陷。这种现象是由中心体复制中的缺陷引起的,而这些缺陷又影响了双极纺锤体的形成。我们显示cea编码着中心线圈盘绕蛋白质Sas-6,而斑马鱼Cea / Sas-6蛋白质则定位于中心体。 cea也具有遗传父系贡献,当发生突变时会导致第一个细胞分裂停滞,随后正常分裂。我们的数据支持这样的想法:在斑马鱼中,第一次细胞分裂需要父本遗传的中心体,而随后的细胞周期中的中心体复制和细胞分裂则需要母本衍生的因子。在不存在中心体重复的情况下进行DNA合成,并且由cea突变型精子引起的第一次细胞分裂中的一个周期延迟导致整个基因组重复。我们讨论这些发现对动物物种多倍化起源的潜在影响。此外,由cea突变引起的发育时间与细胞分裂计数的脱钩表明存在一个时间窗,通常对应于前两个细胞周期,这对于种质募集是允许的。 (C)2007 Elsevier Inc.保留所有权利。

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