首页> 美国卫生研究院文献>Cells >Reproductive Strategy Inferred from Major Histocompatibility Complex-Based Inter-Individual Sperm-Egg and Mother-Fetus Recognitions in Giant Pandas (Ailuropoda melanoleuca)
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Reproductive Strategy Inferred from Major Histocompatibility Complex-Based Inter-Individual Sperm-Egg and Mother-Fetus Recognitions in Giant Pandas (Ailuropoda melanoleuca)

机译:从主要组织相容性基于个体的个体间精卵和母胎的识别中推断出的繁殖策略(大熊猫(Ailuropoda melanoleuca))

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摘要

Few major histocompatibility complex (MHC)-based mate choice studies include all MHC genes at the inter-individual, sperm-egg, and mother-fetus recognition levels. We tested three hypotheses of female mate choice in a 17-year study of the giant panda (Ailuropoda melanoleuca) while using ten functional MHC loci (four MHC class I loci: Aime-C, Aime-F, Aime-I, and Aime-L; six MHC class II loci: Aime-DRA, Aime-DRB3, Aime-DQA1, Aime-DQA2, Aime-DQB1, and Aime-DQB2); five super haplotypes (SuHa, SuHaI, SuHaII, DQ, and DR); and, seven microsatellites. We found female choice for heterozygosity at Aime-C, Aime-I, and DQ and for disassortative mate choice at Aime-C, DQ, and DR at the inter-individual recognition level. High mating success occurred in MHC-dissimilar mating pairs. No significant results were found based on any microsatellite parameters, suggesting that MHCs were the mate choice target and there were no signs of inbreeding avoidance. Our results indicate Aime-DQA1- and Aime-DQA2-associated disassortative selection at the sperm-egg recognition level and a possible Aime-C- and Aime-I-associated assortative maternal immune tolerance mechanism. The MHC genes were of differential importance at the different recognition levels, so all of the functional MHC genes should be included when studying MHC-dependent reproductive mechanisms.
机译:很少有基于主要组织相容性复合体(MHC)的伴侣选择研究包含个体间,精卵和母胎识别水平的所有MHC基因。在一项针对大熊猫(Ailuropoda melanoleuca)的17年研究中,我们使用10个功能性MHC基因座(四个MHC I类基因座:Aime-C,Aime-F,Aime-I和Aime- L;六个MHC II类基因座:Aime-DRA,Aime-DRB3,Aime-DQA1,Aime-DQA2,Aime-DQB1和Aime-DQB2);五种超级单倍型(SuHa,SuHaI,SuHaII,DQ和DR);还有七个微卫星。我们在个体间识别水平上发现了女性在Aime-C,Aime-I和DQ的杂合性选择以及在Aime-C,DQ和DR的杂合配偶选择。在MHC不同的配对中,配对成功率很高。没有发现任何基于微卫星参数的明显结果,表明MHC是选择配偶的目标,并且没有避免近交的迹象。我们的结果表明,在精子卵识别水平上与Aime-DQA1和Aime-DQA2相关的分类选择以及与 Aime -C-和 Aime -I相关的可能分类产妇的免疫耐受机制。 MHC基因在不同的识别水平上具有不同的重要性,因此在研究依赖MHC的生殖机制时应包括所有功能性MHC基因。

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