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蜜蜂耐寒机制的比较转录组分析()

Comparative Transcriptome Analysis of Cold Tolerance Mechanism in Honeybees ().

作者信息

Shan Jinqiong, Cheng Ruiyi, Magaoya Tuohudasheng, Duan Yujie, Chen Chao

机构信息

State Key Laboratory of Resource Insects, Institute of Apicultural Research, Chinese Academy of Agricultural Sciences, Beijing 100093, China.

Apiculture Technical Guidance Station, Urumqi 831400, China.

出版信息

Insects. 2024 Oct 11;15(10):790. doi: 10.3390/insects15100790.

Abstract

Honeybees are important pollinators worldwide that are closely related to agricultural production and ecological balance. The biological activities and geographical distribution of honeybees are strongly influenced by temperature. However, there is not much research on the cold tolerance of honeybees. The , a kind of western honeybee, exhibits strong cold hardiness. Here, we determined that short-term temperature treatment could regulate the honeybee's cold tolerance ability by measuring the supercooling point of treated with different temperatures. Transcriptome data were analyzed between the treated and untreated honeybees. A total of 189 differentially expressed genes were identified. Among them, , , , , and were differentially expressed in all comparisons. GO and KEGG analysis showed that the DEGs were enriched in molecular functions related to disease, signal transduction, metabolism, and the endocrine system's function. The main components involved were ribosomes, nucleosomes, proteases, and phosphokinases, among others. This study explored the formation and regulation mechanism of cold tolerance in honeybees, not only providing a theoretical basis for cultivating honeybees with excellent traits but also promoting research and practice on insect stress tolerance.

摘要

蜜蜂是全球重要的传粉者,与农业生产和生态平衡密切相关。蜜蜂的生物活动和地理分布受到温度的强烈影响。然而,关于蜜蜂耐寒性的研究并不多。西方蜜蜂的一种表现出很强的耐寒性。在这里,我们通过测量不同温度处理的蜜蜂的过冷却点,确定短期温度处理可以调节蜜蜂的耐寒能力。对处理过的和未处理的蜜蜂之间的转录组数据进行了分析。共鉴定出189个差异表达基因。其中,在所有比较中均有差异表达。GO和KEGG分析表明,差异表达基因在与疾病、信号转导、代谢和内分泌系统功能相关的分子功能中富集。主要涉及的成分包括核糖体、核小体、蛋白酶和磷酸激酶等。本研究探索了蜜蜂耐寒性的形成和调控机制,不仅为培育优良性状的蜜蜂提供了理论依据,也促进了昆虫抗逆性的研究与实践。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e68/11508713/f2bbed5caaf2/insects-15-00790-g001.jpg

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