1H‐NMR revealed pyruvate as a differentially abundant metabolite in the venom glands of Apis cerana and Apis mellifera

Author:

Zheng Xing1ORCID,Liu Yanjun1ORCID,Wang Rongshen2,Geng Mingyang3,Liu Jinliang4,Liu Zhenxing15ORCID,Zhao Yazhou1ORCID

Affiliation:

1. State Key Laboratory of Resource Insects, Institute of Apicultural Research Chinese Academy of Agricultural Sciences Beijing China

2. Shijiazhuang Animal Disease Prevention and Control Center Hebei China

3. Ili Kazakh Autonomous Prefecture General Animal Husbandry Station Xinjiang Uighur Autonomous Region China

4. Beijing Shennong's Country Apiculture Specialized Cooperative Beijing China

5. School of Medicine Chongqing University Chongqing China

Abstract

AbstractAs a common defense mechanism in Hymenoptera, bee venom has complex components. Systematic and comprehensive analysis of bee venom components can aid in early evaluation, accurate diagnosis, and protection of organ function in humans in cases of bee stings. To determine the differences in bee venom composition and metabolic pathways between Apis cerana and Apis mellifera, proton nuclear magnetic resonance (1H‐NMR) technology was used to detect the metabolites in venom samples. A total of 74 metabolites were identified and structurally analyzed in the venom of A. cerana and A. mellifera. Differences in the composition and abundance of major components of bee venom from A. cerana and A. mellifera were mapped to four main metabolic pathways: valine, leucine and isoleucine biosynthesis; glycine, serine and threonine metabolism; alanine, aspartate and glutamate metabolism; and the tricarboxylic acid cycle. These findings indicated that the synthesis and metabolic activities of proteins or polypeptides in bee venom glands were different between A. cerana and A. mellifera. Pyruvate was highly activated in 3 selected metabolic pathways in A. mellifera, being much more dominant in A. mellifera venom than in A. cerana venom. These findings indicated that pyruvate in bee venom glands is involved in various life activities, such as biosynthesis and energy metabolism, by acting as a precursor substance or intermediate product.

Publisher

Wiley

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