Venomics Study of Protobothrops flavoviridis Snake: How Venom Proteins Have Evolved and Diversified?

T. Ogawa, H. Shibata
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引用次数: 1

Abstract

Venomics projects have been conducted to disclose the divergent profiles and evolution of various venomous animals. Here, we describe the venomics project including genome and transcriptome of habu snake, leading to drug discovery. Venomics project including the decoding of their whole genomes revealed partly a producing mechanism of various venom proteins including accelerated evolution and alternative splicing and how the toxic organisms have evolved from the nontoxic ones. In addition, the venomics analysis of transcriptomes and proteomes beyond species reveals the relationship between the geographical distribution and evolution of toxic organisms. The abundance of different gene products within a gene family caused by accelerated evolution and alternative splicing may contribute to expand the repertoire of effective weapons to prey capture accompanied with neofunctionalization.
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黄病毒原人蛇毒组学研究:毒液蛋白如何进化和多样化?
已经开展了毒液学项目,以揭示各种有毒动物的不同特征和进化。在这里,我们描述了毒液组学项目,包括哈布蛇的基因组和转录组,从而发现了药物。毒液组学项目,包括对其整个基因组的解码,部分揭示了各种毒液蛋白的产生机制,包括加速进化和选择性剪接,以及有毒生物是如何从无毒生物进化而来的。此外,对物种外转录组和蛋白质组的毒液组学分析揭示了有毒生物的地理分布和进化之间的关系。由加速进化和选择性剪接引起的基因家族中不同基因产物的丰富性可能有助于扩大伴随新功能化的猎物捕获的有效武器库。
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Antidotes Network The Clinical Importance of Herb-Drug Interactions and Toxicological Risks of Plants and Herbal Products Forensic Chemistry and Toxicology Detoxification of Drug and Substance Abuse Venomics Study of Protobothrops flavoviridis Snake: How Venom Proteins Have Evolved and Diversified?
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