Zhang Xiyang, Lin Wenzhi, Zhou Ruilian, Gui Duan, Yu Xinjian, Wu Yuping
*These authors contributed equally to the work.
J Hered. 2016 Mar;107(2):143-52. doi: 10.1093/jhered/esv138. Epub 2016 Jan 18.
It has been widely reported that the major histocompatibility complex (MHC) is under balancing selection due to its immune function across terrestrial and aquatic mammals. The comprehensive studies at MHC and other neutral loci could give us a synthetic evaluation about the major force determining genetic diversity of species. Previously, a low level of genetic diversity has been reported among the Indo-Pacific humpback dolphin (Sousa chinensis) in the Pearl River Estuary (PRE) using both mitochondrial marker and microsatellite loci. Here, the expression and sequence polymorphism of 2 MHC class II genes (DQB and DRB) in 32 S. chinensis from PRE collected between 2003 and 2011 were investigated. High ratios of non-synonymous to synonymous substitution rates, codon-based selection analysis, and trans-species polymorphism (TSP) support the hypothesis that balancing selection acted on S. chinensis MHC sequences. However, only 2 haplotypes were detected at either DQB or DRB loci. Moreover, the lack of deviation from the Hardy-Weinberg expectation at DRB locus combined with the relatively low heterozygosity at both DQB locus and microsatellite loci suggested that balancing selection might not be sufficient, which further suggested that genetic drift associated with historical bottlenecks was not mitigated by balancing selection in terms of the loss of MHC and neutral variation in S. chinensis. The combined results highlighted the importance of maintaining the genetic diversity of the endangered S. chinensis.
已有广泛报道称,主要组织相容性复合体(MHC)由于其在陆生和水生哺乳动物中的免疫功能而处于平衡选择之下。对MHC和其他中性位点的综合研究可以让我们对决定物种遗传多样性的主要力量进行综合评估。此前,利用线粒体标记和微卫星位点,已报道珠江口(PRE)的中华白海豚(Sousa chinensis)遗传多样性水平较低。在此,对2003年至2011年间采集的32头来自PRE的中华白海豚的2个MHC II类基因(DQB和DRB)的表达和序列多态性进行了研究。非同义替换率与同义替换率的高比值、基于密码子的选择分析以及跨物种多态性(TSP)支持了平衡选择作用于中华白海豚MHC序列的假设。然而,在DQB或DRB位点仅检测到2种单倍型。此外,DRB位点未偏离哈迪-温伯格预期,同时DQB位点和微卫星位点的杂合度相对较低,这表明平衡选择可能并不充分,这进一步表明,就中华白海豚MHC和中性变异的丧失而言,与历史瓶颈相关的遗传漂变并未因平衡选择而得到缓解。综合结果突出了维持濒危中华白海豚遗传多样性的重要性。