Punzi Elisabetta, Milani Liliana, Ghiselli Fabrizio, Passamonti Marco
Department of Biological, Geological, and Environmental Sciences, University of Bologna, Bologna, Italy.
J Exp Zool B Mol Dev Evol. 2018 Jan;330(1):41-51. doi: 10.1002/jez.b.22788. Epub 2018 Feb 2.
The strictly maternal inheritance (SMI) is a pattern of mitochondrial inheritance observed across the whole animal kingdom. However, some interesting exceptions are known for the class Bivalvia, in which several species show an unusual pattern called doubly uniparental inheritance (DUI) whose outcome is a heteroplasmic pool of mtDNA in males. Even if DUI has been studied for long, its molecular basis has not been established yet. The aim of this work is to select classes of proteins known to be involved in the maintenance of SMI and to compare their features in two clam species differing for their mitochondrial inheritance mechanism, that is, the SMI species Ruditapes decussatus and the DUI species Ruditapes philippinarum. Data have been obtained from the transcriptomes of male and female ripe gonads of both species. Our analysis focused on nucleases and polymerases, ubiquitination and ubiquitin-like modifier pathways, and proteins involved in autophagy and mitophagy. For each protein group of interest, transcription bias (male or female), annotation, and mitochondrial targeting (when appropriate) were assessed. We did not find evidence supporting a role of nucleases/polymerases or autophagic machinery in the enforcement of SMI in R. decussatus. On the other hand, ubiquitinating enzymes with the expected features have been retrieved, providing us with two alternative testable models for mitochondrial inheritance mechanisms at the molecular level.
严格的母系遗传(SMI)是在整个动物界都能观察到的一种线粒体遗传模式。然而,双壳纲存在一些有趣的例外情况,其中几个物种表现出一种不寻常的模式,称为双亲单亲遗传(DUI),其结果是雄性个体中存在异质性的线粒体DNA库。尽管对DUI已经研究了很长时间,但其分子基础尚未确立。这项工作的目的是挑选出已知参与维持SMI的蛋白质类别,并比较它们在两种线粒体遗传机制不同的蛤类物种中的特征,即具有SMI的波纹巴非蛤和具有DUI的菲律宾蛤仔。数据来自这两个物种成熟雌雄性腺的转录组。我们的分析集中在核酸酶和聚合酶、泛素化和类泛素修饰途径以及参与自噬和线粒体自噬的蛋白质上。对于每个感兴趣的蛋白质组,评估了转录偏向(雄性或雌性)、注释以及线粒体靶向性(如适用)。我们没有找到证据支持核酸酶/聚合酶或自噬机制在波纹巴非蛤维持SMI中发挥作用。另一方面,已经检索到具有预期特征的泛素化酶,为我们提供了两个在分子水平上关于线粒体遗传机制的可测试替代模型。