Department of Biology and Museum of Southwestern Biology, University of New Mexico, MSC 03-2020, 1 University of New Mexico, Albuquerque, NM 87131-0001, USA.
Fish Shellfish Immunol. 2011 Jun;30(6):1275-82. doi: 10.1016/j.fsi.2011.03.019. Epub 2011 Apr 2.
The major histocompatibility complex (MHC) is a critical component of the adaptive immune response in vertebrates. Due to the role that MHC plays in immunity, absence of variation within these genes may cause species to be vulnerable to emerging diseases. The freshwater fish family Cyprinidae comprises the most diverse and species-rich group of freshwater fish in the world, but some are imperiled. Despite considerable species richness and the long evolutionary history of the family, there are very few reports of MHC sequences (apart from a few model species), and no sequences are reported from endemic North American cyprinids (subfamily Leuciscinae). Here we isolate and characterize the MH Class II beta genes from complementary DNA and genomic DNA of the non-model, endangered Rio Grande silvery minnow (Hybognathus amarus), a North American cyprinid. Phylogenetic reconstruction revealed two groups of divergent MH alleles that are paralogous to previously described loci found in deeply divergent cyprinid taxa including common carp, zebrafish, African large barb and bream. Both groups of alleles were under the influence of diversifying selection yet not all individuals had alleles belonging to both allelic groups. We concluded that the general organization and pattern of variation of MH class II genes in Rio Grande silvery minnow is similar to that identified in other cyprinid fishes studied to date, despite distant evolutionary relationships and evidence of a severe genetic bottleneck.
主要组织相容性复合体 (MHC) 是脊椎动物适应性免疫反应的关键组成部分。由于 MHC 在免疫中的作用,这些基因中缺乏变异可能使物种容易受到新出现疾病的影响。鲤鱼科是世界上最多样化和物种最丰富的淡水鱼类家族,但有些鱼类处于濒危状态。尽管物种丰富度相当高,而且该家族的进化历史悠久,但 MHC 序列的报道非常少(除了一些模式物种外),也没有报道来自北美的特有鲤鱼科鱼类(Leuciscinae 亚科)的 MHC 序列。在这里,我们从非模式、濒危的格兰德河银色小鱼(Hybognathus amarus)的 cDNA 和基因组 DNA 中分离并鉴定了 MH 类 II β 基因。系统发育重建揭示了两组分化的 MH 等位基因,与在包括鲤鱼、斑马鱼、非洲大棘鲈和 bream 在内的深分歧鲤鱼类群中发现的先前描述的基因座是平行的。这两组等位基因都受到多样化选择的影响,但并非所有个体都具有属于这两组等位基因的等位基因。我们得出结论,尽管进化关系遥远,并且存在严重的遗传瓶颈证据,但格兰德河银色小鱼 MH 类 II 基因的一般组织和变异模式与迄今为止研究的其他鲤鱼鱼类相似。