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Effects of Feeding Spodoptera littoralis on Lima Bean Leaves. III. Membrane Depolarization and Involvement of Hydrogen Peroxide

机译:饲食斜纹夜蛾对利马豆叶片的影响。三膜去极化和过氧化氢的参与

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摘要

In response to herbivore (Spodoptera littoralis) attack, lima bean (Phaseolus lunatus) leaves produced hydrogen peroxide (H2O2) in concentrations that were higher when compared to mechanically damaged (MD) leaves. Cellular and subcellular localization analyses revealed that H2O2 was mainly localized in MD and herbivore-wounded (HW) zones and spread throughout the veins and tissues. Preferentially, H2O2 was found in cell walls of spongy and mesophyll cells facing intercellular spaces, even though confocal laser scanning microscopy analyses also revealed the presence of H2O2 in mitochondria/peroxisomes. Increased gene and enzyme activations of superoxide dismutase after HW were in agreement with confocal laser scanning microscopy data. After MD, additional application of H2O2 prompted a transient transmembrane potential (Vm) depolarization, with a Vm depolarization rate that was higher when compared to HW leaves. In transgenic soybean (Glycine max) suspension cells expressing the Ca2+-sensing aequorin system, increasing amounts of added H2O2 correlated with a higher cytosolic calcium ([Ca2+]cyt) concentration. In MD and HW leaves, H2O2 also triggered the increase of [Ca2+]cyt, but MD-elicited [Ca2+]cyt increase was more pronounced when compared to HW leaves after addition of exogenous H2O2. The results clearly indicate that Vm depolarization caused by HW makes the membrane potential more positive and reduces the ability of lima bean leaves to react to signaling molecules.
机译:为响应草食动物(斜纹夜蛾)的攻击,利马豆(Phaseolus lunatus)叶片产生的过氧化氢(H2O2)浓度高于机械损伤(MD)叶片。细胞和亚细胞定位分析表明,H2O2主要位于MD和草食动物伤口(HW)区,并遍布整个静脉和组织。优选地,在面对细胞间隙的海绵状和叶肉细胞的细胞壁中发现了H2O2,即使共聚焦激光扫描显微镜分析也表明线粒体/过氧化物酶体中存在H2O2。 HW后增加的超氧化物歧化酶的基因和酶活化与共聚焦激光扫描显微镜数据一致。 MD后,额外使用H2O2会引起瞬态跨膜电位(Vm)去极化,与HW叶片相比,Vm去极化速率更高。在表达Ca 2 + 感应水母发光蛋白系统的转基因大豆(Glycine max)悬浮细胞中,增加的H2O2添加量与较高的胞质钙([Ca 2 + ]相关cyt)浓度。在MD和HW叶片中,H2O 2 也触发了[Ca 2 + ] cyt 的增加,但MD引起了[Ca 与添加外源H 2 O 2 后的HW叶片相比,2 + ] cyt 的增加更为明显。结果清楚地表明,HW引起的V m 去极化使膜电位更强,并降低了利马豆叶片对信号分子的反应能力。

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