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首页> 外文期刊>Global change biology >Plant stomatal closure improves aphid feeding under elevated CO2
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Plant stomatal closure improves aphid feeding under elevated CO2

机译:植物气孔的关闭改善了在高二氧化碳下的蚜虫摄食

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Stomata help plants regulate CO2 absorption and water vapor release in response to various environmental changes, and plants decrease their stomatal apertures and enhance their water status under elevated CO2. Although the bottom-up effect of elevated CO2 on insect performance has been extensively studied, few reports have considered how insect fitness is altered by elevated CO2-induced changes in host plant water status. We tested the hypothesis that aphids induce stomatal closure and increase host water potential, which facilitates their passive feeding, and that this induction can be enhanced by elevated CO2. Our results showed that aphid infestation triggered the abscisic acid (ABA) signaling pathway to decrease the stomatal apertures of Medicago truncatula, which consequently decreased leaf transpiration and helped maintain leaf water potential. These effects increased xylem-feeding time and decreased hemolymph osmolarity, which thereby enhanced phloem-feeding time and increased aphid abundance. Furthermore, elevated CO2 up-regulated an ABA-independent enzyme, carbonic anhydrase, which led to further decrease in stomatal aperture for aphid-infested plants. Thus, the effects of elevated CO2 and aphid infestation on stomatal closure synergistically improved the water status of the host plant. The results indicate that aphid infestation enhances aphid feeding under ambient CO2 and that this enhancement is increased under elevated CO2.
机译:气孔有助于植物响应各种环境变化来调节CO2的吸收和水蒸气的释放,并且在CO2升高的情况下,植物可以减小气孔孔径并增强水的状况。尽管已经广泛研究了升高的CO2对昆虫性能的自下而上的影响,但很少有报道考虑过升高的CO2诱导的寄主植物水分状况如何改变昆虫的适应性。我们测试了以下假设:蚜虫诱导气孔关闭并增加宿主水势,从而促进它们的被动摄食,并且CO 2升高可增强这种诱导作用。我们的研究结果表明,蚜虫侵染触发了脱落酸(ABA)信号传导途径,从而降低了紫花苜蓿的气孔孔径,从而减少了叶片的蒸腾作用并有助于维持叶片的水势。这些作用增加了木质部的进食时间并降低了血淋巴渗透压,从而增加了韧皮部的进食时间并增加了蚜虫的丰度。此外,升高的CO2上调了ABA依赖性酶碳酸酐酶的活性,这导致蚜虫侵染植物的气孔孔径进一步降低。因此,升高的CO 2和蚜虫侵染对气孔关闭的影响协同地改善了寄主植物的水分状况。结果表明,蚜虫侵染增强了在环境CO2下的蚜虫摄食,而这种增强在升高的CO2下增加。

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