在热适应的驱动下,三叶蓟马种群的繁殖与耐热性增强之间可能存在权衡。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Yu-Cheng Wang , Ya-Wen Chang , Fei Yang , Wei-Rong Gong , Jie Hu , Yu-Zhou Du
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引用次数: 0

摘要

入侵害虫 Liriomyza trifolii 对观赏植物和蔬菜植物构成严重威胁。它传播迅速,会引起大规模爆发,具有明显的耐高温性。在这项研究中,我们培育出了适应高温的三叶蓟马菌株(菌株编号为 35 和 40);这些菌株是由易感菌株(编号为 S)通过分别在 35 ℃ 和 40 ℃ 下进行长期热适应而产生的。我们比较了这三种菌株的年龄阶段、双性别生命表、热偏好、临界温度极限、敲除行为、羽化率和存活率以及编码热休克蛋白(Hsps)基因的表达。我们的研究结果表明,L. trifolii的耐热性在长期热适应后得到增强,这表明其对热应激具有适应性可塑性响应。在热胁迫下,繁殖和耐热性之间出现了权衡,这可能会提高种群的存活率并促进适应性变化。在35 °C下驯化可提高三裂叶蛙的繁殖性能和种群密度,特别是通过提高雌性成虫的繁殖力和加快发育速度。虽然40品系表现出最高的发育速度和更强的耐热性,但其繁殖成本也更高。这项研究为监测和控制潜叶蝇以及了解它们对环境变化的进化适应提供了一个理论框架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A potential trade-off between reproduction and enhancement of thermotolerance in Liriomyza trifolii populations driven by thermal acclimation
The invasive pest, Liriomyza trifolii, poses a significant threat to ornamental and vegetable plants. It spreads rapidly and causes large-scale outbreaks with pronounced thermotolerance. In this study, we developed L. trifolii strains adapted to high temperatures (strains designated 35 and 40); these were generated from a susceptible strain (designated S) by long-term thermal acclimation to 35 °C and 40 °C, respectively. Age-stage, two-sex life tables, thermal preferences, critical thermal limits, knockdown behaviors, eclosion and survival rates as well as expression of genes encoding heat shock proteins (Hsps) were compared for the three strains. Our findings indicated that the thermotolerance of L. trifolii was enhanced after long-term thermal acclimation, which suggested an adaptive plastic response to thermal stress. A trade-off between reproduction and thermotolerance was observed under thermal stress, potentially improving survival of the population and fostering adaptionary changes. Acclimation at 35 °C improved reproductive performance and population density of L. trifolii, particularly by enhancing the fecundity of female adults and accelerating the speed of development. Although the 40 strain exhibited the highest developmental speed and greater thermotolerance, it incurred a larger reproductive cost. This study provides a theoretical framework for monitoring and controlling leafminers and understanding their evolutionary adaptation to environmental changes.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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