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烟粉虱B型生物型在大豆基因型上的表现

Performance of Bemisia tabaci Biotype B on Soybean Genotypes.

作者信息

Cruz P L, Baldin E L L

机构信息

Depto de Proteção Vegetal, Fac de Ciências Agronômicas, Univ Estadual Paulista (UNESP), 18610-307, Botucatu, SP, Brasil.

出版信息

Neotrop Entomol. 2017 Apr;46(2):210-215. doi: 10.1007/s13744-016-0445-3. Epub 2016 Sep 21.

Abstract

Bemisia tabaci (Genn.) (Hemiptera: Aleyrodidae) has been recognized as an important pest of many agricultural systems including soybean [Glycine max (L.) Merrill] crops. As an alternative to chemical control, the use of resistant genotypes represents an important tool for integrated pest management (IPM). This study aimed to evaluate the biological development of Bemisia tabaci biotype B confined on 13 soybean genotypes under greenhouse conditions. Initially, the nymphal period, complete development period (egg-adult), and the viability of the silverleaf whitefly nymphs were evaluated in all genotypes. Then, four genotypes promising for resistance ('Jackson,' UX-2569-159, 'P98Y11,' and 'TMG132 RR') and a susceptible genotype (PI-227687) were selected for further assays, where two insect populations were compared: a first population from the initial rearing (cabbage plants) and another corresponding to insects previously reared out on the selected genotypes. In addition to the parameters evaluated in preliminary tests, we also determined the viability and incubation period of eggs. Moderate levels of resistance (antibiosis/antixenosis) to B. tabaci biotype B were found in three genotypes. 'P98Y11' and 'TMG132 RR' were less suitable for insect development, extending the development cycle, and UX-2569-159 caused high nymphal mortality. We did not observe a significant increase in the level of plant resistance by the use of previously stressed insects. This suggests that the evaluation of a single whitefly generation may be sufficient to make correct decisions on promising soybean genotypes.

摘要

烟粉虱(Genn.)(半翅目:粉虱科)已被公认为包括大豆[Glycine max (L.) Merrill]作物在内的许多农业系统中的重要害虫。作为化学防治的替代方法,使用抗性基因型是害虫综合治理(IPM)的重要工具。本研究旨在评估温室条件下,烟粉虱B型在13种大豆基因型上的生物学发育情况。首先,在所有基因型中评估若虫期、完整发育期(卵-成虫)以及银叶粉虱若虫的活力。然后,选择了四种有望具有抗性的基因型(‘Jackson’、UX-2569-159、‘P98Y11’和‘TMG132 RR’)和一种感病基因型(PI-227687)进行进一步试验,比较了两个昆虫种群:第一个种群来自初始饲养(甘蓝植株),另一个种群对应于先前在所选基因型上饲养的昆虫。除了在初步试验中评估的参数外,我们还测定了卵的活力和孵化期。在三种基因型中发现了对烟粉虱B型的中等抗性水平(抗生性/抗虫性)。‘P98Y11’和‘TMG132 RR’对昆虫发育不太适宜,延长了发育周期,而UX-2569-159导致若虫死亡率很高。我们没有观察到使用先前受胁迫的昆虫会使植物抗性水平显著提高。这表明对单代粉虱的评估可能足以对有前景的大豆基因型做出正确决策。

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