生物
生物信息学
蜗牛
基因组
计算生物学
基因
抗菌肽
转录组
基因组学
遗传学
细菌
基因表达
生态学
作者
Ruihan Li,Yu Huang,Chao Peng,Zijian Gao,Jie Liu,Xiaoting Yin,Bingmiao Gao,Tatiana V. Ovchinnikova,Limei Qiu,Chao Bian,Qiong Shi
标识
DOI:10.3389/fmars.2022.1092731
摘要
Individual cone snail ( Conus sp.) contains thousands of bioactive peptides, but there are limited studies on its antimicrobial peptides (AMPs). Here, we investigated AMPs along with AMP-derived genes in the representative Chinese tubular cone snail ( C. betulinus ) by integration of our previously published multi-omics (genomics, transcriptomics, and peptidomics) data. We identified a total of 466 putative AMP-derived genes from the genome, and most of them were annotated as histones . While at the mRNA level, only 77 AMP-derived genes were confirmed with transcriptomic evidence, among them Ubiquicidin, cgUbiquitin, Ap, and VK10 were the most abundant transcripts in the venom gland. In addition, 30 AMPs were further validated by peptidomics data. After in silico analysis including 3D modeling, 11 putative AMPs were chemically synthesized for an in vitro assessment, and eight peptides were proved with good antifungal activity. In summary, this work systematically characterized the AMP repertoire in C. betulinus . This valuable genetic resource provides a solid foundation for in-depth therapeutic applications and drug development.
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