Animal Genomics Lab, National Dairy Research Institute, Karnal, Haryana, 132001, India.
Cell Biology and Proteomics Lab, Animal Biotechnology Centre, National Dairy Research Institute, Karnal, 132001, Haryana, India.
Sci Rep. 2022 Nov 9;12(1):19042. doi: 10.1038/s41598-022-23654-3.
β-defensins are adsorbable on the sperm surface in the male reproductive tract (MRT) and enhance sperm functional characteristics. The beta-defensin 129 (DEFB129) antimicrobial peptide is involved in sperm maturation, motility, and fertilization. However, its role in bovine fertility has not been well investigated. This study examines the relationship between the bovine BBD129 gene and Bos indicus x Bos taurus bull fertility. The complete coding sequence of BBD129 mRNA was identified by RNA Ligase Mediated-Rapid Amplification of cDNA End (RLM-RACE) and Sanger sequencing methodologies. It consisted of 582 nucleotides (nts) including 5' untranslated region (UTR) (46nts) and 3'UTR (23nts). It conserves all beta-defensin-like features. The expression level of BBD129 was checked by RT-qPCR and maximal expression was detected in the corpus-epididymis region compared to other parts of MRT. Polymorphism in BBD129 was also confirmed by Sanger sequencing of 254 clones from 5 high fertile (HF) and 6 low fertile (LF) bulls at two positions, 169 T > G and 329A > G, which change the S57A and N110S in the protein sequence respectively. These two mutations give rise to four types of BBD129 haplotypes. The non-mutated TA-BBD129 (169 T/329A) haplotype was substantially more prevalent among high-fertile bulls (P < 0.005), while the double-site mutated GG-BBD129 (169 T > G/329A > G) haplotype was significantly more prevalent among low-fertile bulls (P < 0.005). The in silico analysis confirmed that the polymorphism in BBD129 results in changes in mRNA secondary structure, protein conformations, protein stability, extracellular-surface availability, post-translational modifications (O-glycosylation and phosphorylation), and affects antibacterial and immunomodulatory capabilities. In conclusion, the mRNA expression of BBD129 in the MRT indicates its region-specific dynamics in sperm maturation. BBD129 polymorphisms were identified as the deciding elements accountable for the changed proteins with impaired functionality, contributing to cross-bred bulls' poor fertility.
β-防御素可吸附在雄性生殖道(MRT)的精子表面,并增强精子的功能特性。β-防御素 129(DEFB129)抗菌肽参与精子成熟、运动和受精。然而,其在牛繁殖力中的作用尚未得到很好的研究。本研究探讨了牛 BBD129 基因与印度野牛 x 瘤牛公牛生育力的关系。通过 RNA 连接酶介导的快速 cDNA 末端扩增(RLM-RACE)和 Sanger 测序方法鉴定了 BBD129 mRNA 的完整编码序列。它由 582 个核苷酸(nts)组成,包括 5'非翻译区(UTR)(46nts)和 3'UTR(23nts)。它保留了所有β-防御素样特征。通过 RT-qPCR 检查 BBD129 的表达水平,与 MRT 的其他部位相比,在 corpus-epididymis 区域检测到最大表达。通过对 5 头高生育力(HF)和 6 头低生育力(LF)公牛的 254 个克隆进行 Sanger 测序,也证实了 BBD129 的多态性,在两个位置 169 T>G 和 329A>G,分别改变了蛋白质序列中的 S57A 和 N110S。这两个突变导致 BBD129 出现四种单倍型。非突变 TA-BBD129(169 T/329A)单倍型在高生育力公牛中更为常见(P<0.005),而双位点突变 GG-BBD129(169 T>G/329A>G)单倍型在低生育力公牛中更为常见(P<0.005)。计算机分析证实,BBD129 中的多态性导致 mRNA 二级结构、蛋白质构象、蛋白质稳定性、细胞外表面可用性、翻译后修饰(O-糖基化和磷酸化)的变化,并影响抗菌和免疫调节能力。总之,MRT 中 BBD129 的 mRNA 表达表明其在精子成熟过程中的区域特异性动态。BBD129 多态性被确定为导致功能受损的蛋白质发生变化的决定因素,导致杂交公牛的繁殖力下降。