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首页> 外文期刊>Anthropod-plant interactions >Physiological responses of resistant and susceptible barley, Hordeum vulgare to the Russian wheat aphid, Diurpahis noxia (Mordvilko).
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Physiological responses of resistant and susceptible barley, Hordeum vulgare to the Russian wheat aphid, Diurpahis noxia (Mordvilko).

机译:抗性和易感性大麦大麦对俄罗斯小麦蚜虫 Diurpahis noxia (Mordvilko)的生理响应。

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摘要

Knowledge of the physiological responses of barley, Hordeum vulgare L., to the Russian wheat aphid, Diuraphis noxia (Mordvilko) (Hemiptera: Aphididae) is critical to understanding the defense response of barley to aphid injury and identifying resistance mechanisms. This study documented the impact of D. noxia feeding on resistant ('Sidney') and susceptible ('Otis') barley through chlorophyll fluorescence measurements, chlorophyll content, and carbon assimilation (A-Ci) curves recorded at 1, 3, 6, 10, and 13 days after aphid introduction. All chlorophyll fluorescence parameters evaluated were similar between aphid-infested and control plants for both cultivars. A-Ci curves showed that D. noxia feeding negatively impacts the photosynthetic capacity in both cultivars, but this effect was greater in the susceptible plants. From the A-Ci curves, it is apparent that compensation occurs in resistant barley by day 10, but by the conclusion of the experiment, aphid populations reached levels that overwhelmed the resistant barley seedlings. Differences observed in carbon assimilation curves between control and infested plants show that D. noxia feeding impacts the dark reaction, specifically rubisco activity and RuBP regeneration. It is likely that declines in the photochemical efficiency and chlorophyll content of the plants may be a secondary effect and not the primary trigger of declines in host plant function.
机译:了解大麦大麦对俄罗斯小麦蚜虫(Diordphis noxia)(Mordvilko)(半翅目:蚜科)的生理反应对于了解防御反应至关重要大麦对蚜虫的伤害及其抗性机理的鉴定。这项研究记录了 D的影响。通过叶绿素荧光测量,叶绿素含量和碳同化(AC i )曲线记录的1、3,蚜虫引入后第6、10和13天。在两个品种的蚜虫侵染和对照植物之间,评估的所有叶绿素荧光参数均相似。 A-C i 曲线显示 D。缺氧饲喂对两个品种的光合能力都有负面影响,但这种影响在易感植物中更大。从A-C i 曲线可以明显看出,抗性大麦在第10天就发生了补偿,但是通过实验的结论,蚜虫种群达到了使抗性大麦幼苗不堪重负的水平。在对照植物和受侵染植物之间碳同化曲线中观察到的差异表明D。缺氧进食会影响黑暗反应,特别是Rubisco活性和RuBP再生。植物的光化学效率和叶绿素含量的下降可能是次要作用,而不是宿主植物功能下降的主要诱因。

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