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A Review of Heat Shock Proteins Research on Bemisia tabaci

A Review of Heat Shock Proteins Research on Bemisia tabaci
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摘要 Bemisia tabaci (Gennadius) (Homoptera: Aleyrodidae) is the most destructive invasive pests in agricultural production and has a high tolerance to heat. Heat shock proteins play an essential role in life activities such as growth and development, reproduction and diapause of B. tabaci. At the same time, they are also crucial in resisting adverse environments and in adaptive evolution. The expression of heat shock protein in B. tabaci is not only related to temperature, but also to the tolerance of the environment. After receiving external stimuli, the expression level can be increased or decreased to maintain the stability of cells in vivo. This paper reviews the classification, biological characteristics, biological functions, and research status of HSPs in recent years. This mini-review will provide helpful information related to the use of heat shock proteins to study the occurrence and damage of B. tabaci. This has important theoretical and practical significance for revealing Hsps in explaining the population expansion mechanism of B. tabaci invasion and predicting population dynamics. Bemisia tabaci (Gennadius) (Homoptera: Aleyrodidae) is the most destructive invasive pests in agricultural production and has a high tolerance to heat. Heat shock proteins play an essential role in life activities such as growth and development, reproduction and diapause of B. tabaci. At the same time, they are also crucial in resisting adverse environments and in adaptive evolution. The expression of heat shock protein in B. tabaci is not only related to temperature, but also to the tolerance of the environment. After receiving external stimuli, the expression level can be increased or decreased to maintain the stability of cells in vivo. This paper reviews the classification, biological characteristics, biological functions, and research status of HSPs in recent years. This mini-review will provide helpful information related to the use of heat shock proteins to study the occurrence and damage of B. tabaci. This has important theoretical and practical significance for revealing Hsps in explaining the population expansion mechanism of B. tabaci invasion and predicting population dynamics.
作者 Shunxiao Liu Kui Wang Vlasenko Volodymyr Shunxiao Liu;Kui Wang;Vlasenko Volodymyr(Department of Plant Protection, Henan Institute of Science and Technology, Xinxiang, China;Department of Plant Protection, Sumy National Agrarian University, Sumy, Ukraine)
出处 《Agricultural Sciences》 2022年第3期393-403,共11页 农业科学(英文)
关键词 Bemisia tabaci Heat Shock Proteins Molecular Chaperone Heat Shock Transcriptional Factor STRESS Bemisia tabaci Heat Shock Proteins Molecular Chaperone Heat Shock Transcriptional Factor Stress
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