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首页> 外文期刊>The Journal of Heredity >MHC class II β genes in the endangered Hainan Eld's Deer (Cervus eldi hainanus)
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MHC class II β genes in the endangered Hainan Eld's Deer (Cervus eldi hainanus)

机译:濒临灭绝的海南Eld's Deer(Cervus eldi hainanus)中的MHC II类β基因

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Contrary to neutral markers, the major histocompatibility complex (MHC) can reflect the fitness and adaptive potential of a given species due to its association with the immune system. For this reason, the use of MHC in endangered wildlife management has increased greatly in recent years. Here, we isolated complementary DNA (cDNA) and genomic DNA (gDNA) sequences to characterize the MHC class II β genes in Hainan Eld's deer (Cervus eldi hainanus), a highly endangered cervid, which recovered from a severe population bottleneck consisting of 26 animals. Analysis of 7 individuals revealed the presence of 3 DRB and 3 DQB putatively functional gDNA sequences. The Ceel-DRB and DQB sequences displayed high variability in exon 2, and most nonsynonymous substitutions were detected in this region. Phylogenetic analysis indicated that trans-species evolution of MHC class II β might occur in the Cervinae subfamily. Comparison of the number of sequences between gDNA and cDNA revealed that all sequences isolated from the genome were detectable in the cDNA libraries derived from different tissues (including the liver, kidney, and spleen), suggesting none of these sequences were derived from silent genes or pseudogenes. Characterization of the MHC class II β genes may lay the foundation for future studies on genetic structure, mate choice, and viability analysis in Hainan Eld's deer.
机译:与中性标志物相反,主要组织相容性复合物(MHC)由于其与免疫系统的关系,可以反映给定物种的适应性和适应性潜力。因此,近年来在濒危野生动植物管理中使用MHC的情况大大增加。在这里,我们分离了互补的DNA(cDNA)和基因组DNA(gDNA)序列,以表征高度濒临灭绝的海南鹿鹿(Cervus eldi hainanus)的MHC II类β基因,该鹿从一个严重的种群瓶颈中恢复,该种群包括26只动物。对7个人的分析显示存在3个DRB和3个DQB推定功能的gDNA序列。 Ceel-DRB和DQB序列在第2外显子中显示出高变异性,并且在该区域中检测到大多数非同义取代。系统发育分析表明,MHC II类β的跨物种进化可能发生在切尔维纳亚科中。比较gDNA和cDNA之间的序列数量,发现从基因组分离的所有序列在不同组织(包括肝脏,肾脏和脾脏)衍生的cDNA文库中都可检测到,表明这些序列均非沉默基因或假基因。 MHC II类β基因的表征可为海南麋鹿的遗传结构,配偶选择和生存力分析的未来研究奠定基础。

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