The Key Laboratory of Conservation Biology for Endangered Wildlife of the Ministry of Education, and State Conservation Centre for Gene Resources of Endangered Wildlife, College of Life Sciences, Zhejiang University, Hangzhou, 310058, P. R. China.
China Research and Conservation Center for the Giant Panda, Wolong, 623000, P. R. China.
Sci Rep. 2018 Aug 17;8(1):12308. doi: 10.1038/s41598-018-29898-2.
β-Defensins are small antimicrobial proteins expressed in various organisms and have great potential for improving animal health and selective breeding programs. Giant pandas have a distinctive lineage in Carnivora, and it is unclear whether β-defensin genes have experienced different selective pressures during giant panda evolution. We therefore characterized the giant panda (Ailuropoda melanoleuca) β-defensin gene family through gap filling, TBLASTN, and HMM searches. Among 36 β-defensins identified, gastrointestinal disease may induce the expression of the DEFB1 and DEFB139 genes in the digestive system. Moreover, for DEFB139, a significant positive selection different from that of its homologs was revealed through branch model comparisons. A Pro-to-Arg mutation in the giant panda DEFB139 mature peptide may have enhanced the peptide's antimicrobial potency by increasing its stability, isoelectric point, surface charge and surface hydrophobicity, and by stabilizing its second β-sheet. Broth microdilution tests showed that the increase in net charge caused by the Pro-to-Arg mutation has enhanced the peptide's potency against Staphylococcus aureus, although the increase was minor. We expect that additional gene function and expression studies of the giant panda DEFB139 gene could improve the existing conservation strategies for the giant panda.
β-防御素是在各种生物体中表达的小抗菌蛋白,具有改善动物健康和选择性繁殖计划的巨大潜力。大熊猫在 Carnivora 中有一个独特的谱系,目前尚不清楚β-防御素基因在大熊猫进化过程中是否经历了不同的选择压力。因此,我们通过填补缺口、TBLASTN 和 HMM 搜索对大熊猫(Ailuropoda melanoleuca)的β-防御素基因家族进行了表征。在鉴定的 36 种β-防御素中,胃肠道疾病可能会诱导消化系统中 DEFB1 和 DEFB139 基因的表达。此外,对于 DEFB139,通过分支模型比较揭示了与同源物不同的显著正选择。大熊猫 DEFB139 成熟肽中的 Pro-to-Arg 突变可能通过增加其稳定性、等电点、表面电荷和表面疏水性以及稳定其第二β-折叠来增强肽的抗菌效力。肉汤微量稀释试验表明,Pro-to-Arg 突变引起的净电荷增加增强了肽对金黄色葡萄球菌的效力,尽管增加幅度较小。我们期望对大熊猫 DEFB139 基因的额外基因功能和表达研究能够改进现有的大熊猫保护策略。