首页> 外文期刊>Journal of Economic Entomology >Electrical Penetration Graph Recording of Russian Wheat Aphid (Hemiptera: Aphididae) Feeding on Aphid-Resistant Wheat and Barley
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Electrical Penetration Graph Recording of Russian Wheat Aphid (Hemiptera: Aphididae) Feeding on Aphid-Resistant Wheat and Barley

机译:以抗蚜虫的小麦和大麦为食的俄罗斯小麦蚜虫(半翅目:蚜科)的电渗透图记录

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Biotypes of Russian wheat aphid, Diuraphis noxia (Kurdjumov), have nullified D. noxiaresistant wheat. In this study, feeding of North American D. noxia was measured in aphids fed resistant and susceptible wheat and barley using electrical penetration graph (EPG) recordings. Interactions between barley genotypes and D. noxia biotypes were significant. EPG recordings of biotype 1 aphids fed on D. noxia-resistant IBRWAGP4-7 barley plants displayed significantly more non-phloem (pathway) phase movements and significantly less sieve element phase (SEP) feeding than on susceptible plants. EPG recordings of D. noxia biotype 2 feeding are the first ever recorded, but no differences between biotype 2-susceptible and -resistant barley plants were found for any EPG parameter in biotype 2 aphids fed barley. No wheat genotype-D. noxia biotype interactions were detected, but when responses were averaged across resistant and susceptible wheat genotypes, biotype 1 displayed a significantly longer pathway phase and significantly more SEP feeding than biotype 2, and biotype 2 engaged in significantly more xylem drinking than biotype 1. IBRWAGP4-7 barley resistance to biotype 1 appears to be controlled by both intercellular factors encountered during the pathway phase and intracellular factors ingested during SEP feeding. The lack of differences in EPG parameters displayed by biotype 2 feeding on barley suggests that biotype 2 resistance in IBRWAGP4-7 barley is based on tolerance to D. noxia feeding instead of altered feeding patterns. Resistance in 'KS94H871' wheat appears to be a function of phloem, non-phloem, and xylem factors that extend the duration of pathway feeding and limit SEP feeding.
机译:俄罗斯小麦蚜虫Diuraphis noxia(Kurdjumov)的生物型已使耐D. noxia的小麦无效。在这项研究中,使用电渗透图(EPG)记录在饲喂抗性和易感小麦和大麦的蚜虫中测量了北美D. noxia的摄食。大麦基因型和D. noxia生物型之间的相互作用是显着的。与易感植物相比,耐D. Ixia耐IBRWAGP4-7大麦植物饲喂的生物型1蚜虫的EPG记录显示非韧皮部(途径)相运动明显多,而筛分元素相(SEP)饲喂则明显较少。 D. noxia生物型2型大麦饲喂的EPG记录是有史以来第一次记录,但在生物型2型蚜虫大麦饲喂的任何EPG参数中,生物型2型易感大麦和抗性大麦植物之间没有发现差异。没有小麦基因型-D。检测到了缺氧生物型相互作用,但是当在抗性和易感小麦基因型上平均反应时,生物型1与生物型2相比,表现出明显更长的途径阶段和SEP喂养,生物型2的木质部饮水量明显大于生物型1。IBRWAGP4- 7种大麦对生物型1的抗性似乎受途径阶段遇到的细胞间因子和SEP喂养期间摄入的细胞内因子的控制。大麦生物型2饲喂所显示的EPG参数缺乏差异,表明IBRWAGP4-7大麦中2型生物的抗性是基于对D. noxia饲喂的耐受性而不是改变的饲喂方式。 'KS94H871'小麦的抗性似乎是韧皮部,非韧皮部和木质部因子的函数,这些因子延长了途径饲喂的持续时间并限制了SEP饲喂。

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