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Application of plant growth regulators mitigates chlorotic foliar injury by the black pecan aphid (Hemiptera: Aphididae)

机译:植物生长调节剂的应用减轻了黑山核桃蚜虫(半翅目:蚜科)对叶绿素的伤害。

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BACKGROUND: Black pecan aphid, Melanocallis caryaefoliae (Davis) (Hemiptera: Aphididae), feeding elicits localized chlorotic injury to pecan foliage [Carya illinoinensis (Wangenh.) K Koch] and apparent acceleration of leaf senescence and defoliation. The ability of certain plant growth regulators (PGRs) (f orchlorf enuron, gibberellic acid and aviglycine) to prevent M. caryaefoliaeirom triggering pecan leaf chlorosis and senescence-like processes was evaluated on two dates in both 2006 and 2007. Treatments were applied to orchard foliage and used in laboratory leaf-disc bioassays to assess possible reduction in aphid-elicited chlorosis and concomitant effects on aphid mortality and development.RESULTS: Foliage pretreated with forchlorfenuron + gibberellic acid prior to being challenged with aphids resulted in significantly less aphid-elicited chlorosis than did control or aviglycine-treated leaf discs. No PGR affected aphid mortality; however, development time was increased by forchlorfenuron + gibberellic acid in 2006 and by aviglycine + gibberellic acid on one date in 2007.CONCLUSION: Certain PGRs possess the potential for usage on pecan to protect foliar canopies from M. caryaefoliae via changes in the susceptibility of the host leaf to senescence-like factors being introduced by feeding aphids. This protective effect on host foliage and the associated suppressive effect on development of feeding aphids might also be relevant to pest management programs on other aphid-crop systems in which aphid-elicited chlorosis and senescence-like processes can limit profitability.
机译:背景:黑胡桃蚜虫(Melanocallis caryaefoliae(戴维斯)(半翅目:蚜虫)),进食会引起胡桃叶[Carly illinoinensis(Wangenh。)在2006年和2007年的两个日期,评估了某些植物生长调节剂(PGRs)(氟氯菊酯,烯草隆,赤霉素和aviglycine)防止山核桃分枝杆菌触发山核桃叶绿化和衰老状过程的能力。叶片并用于实验室叶盘生物测定,以评估可能引起的蚜虫减少的萎黄减少以及对蚜虫死亡率和发育的伴随影响。结果:在用蚜虫攻击之前,用甲草胺+赤霉素预处理的叶子导致减少的蚜虫引起的萎黄病比对照或经aviglycine处理的叶盘要大。没有PGR影响蚜虫死亡率;然而,2006年甲草胺+赤霉素增加了开发时间,而2007年丙肝素+赤霉素增加了开发时间。结论:某些PGR具有在山核桃上使用的潜力,可通过改变山核桃的药敏性来保护叶冠层。宿主叶片通过进食蚜虫而引入衰老样因子。这种对寄主叶片的保护作用以及对进食蚜虫发育的相关抑制作用也可能与其他蚜虫作物系统的有害生物管理计划有关,在该系统中,蚜虫引起的绿化和衰老样过程会限制获利能力。

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