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解析昆虫和热胁迫下油茶籽的代谢谱调控:功能效应与作用机制洞察

Unraveling the metabolic profile regulation of camellia oilseeds under insect and heat stress: Insights into functional effects and mechanistic basis.

作者信息

Li Qingyang, Zhu Wei, Sun Shiman, Cui Maokai, Zhang Wei, Shu Jinping, Mo Runhong, Tang Fubin, Guo Yirong, Liu Yihua

机构信息

Research Institute of Subtropical Forestry, Chinese Academy of Forestry, Fuyang 311400, PR China.

Institute of Pesticide and Environmental Toxicology, Key Laboratory of Biology of Crop Pathogens and Insects of Zhejiang Province, Ministry of Agriculture Key Laboratory of Molecular Biology of Crop Pathogens and Insects, Zhejiang University, Hangzhou, Zhejiang 310058, PR China.

出版信息

Food Chem X. 2024 Jul 3;23:101619. doi: 10.1016/j.fochx.2024.101619. eCollection 2024 Oct 30.

Abstract

There is very little information on the impacts of pre/post-harvest stresses on oilseeds. Individual and combined insect (pre-harvest) and heat stress (post-harvest) impacts on the metabolic profile of camellia oilseeds (COs) were investigated using a combination of widely-targeted metabolomics and network pharmacology. A total of 1875 metabolites were identified. In response to individual and combined stresses, 169 (insect),149 (heat), and 21 (insect + heat) metabolites were screened as differential metabolic markers (DEMs), Terpenoids, phenolic acids, and flavonoids are the most impacted metabolite species, accounting for almost 49% of total DEMs. Then network pharmacological analysis identifies 98 key active ingredients (AIs) in CO. A single stress may induce CO to impede cardiovascular system function, but the combined stress induced AI-promoting effects of CO in the urinary system. The individual and combined perturbed biological mechanisms were related to the flavonoid biosynthesis and the biosynthesis of various plant secondary metabolites pathway, respectively.

摘要

关于收获前/收获后胁迫对油籽的影响,相关信息非常少。本研究采用广泛靶向代谢组学和网络药理学相结合的方法,研究了单独及复合的昆虫(收获前)和热胁迫(收获后)对油茶籽(COs)代谢谱的影响。共鉴定出1875种代谢物。针对单独及复合胁迫,分别筛选出169种(昆虫胁迫)、149种(热胁迫)和21种(昆虫 + 热胁迫)代谢物作为差异代谢标志物(DEMs),萜类、酚酸和黄酮类是受影响最大的代谢物种类,占总DEMs的近49%。随后的网络药理学分析确定了CO中的98种关键活性成分(AIs)。单一胁迫可能会使CO阻碍心血管系统功能,但复合胁迫会诱导CO对泌尿系统产生AI促进作用。单独及复合胁迫所扰动的生物学机制分别与黄酮类生物合成和各种植物次生代谢物途径的生物合成有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d867/11295998/08310818b2e8/gr1.jpg

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