de França Solange Maria, Silva Paulo Roberto Ramalho, Gomes-Neto Antonio Vieira, Gomes Regina Lucia Ferreira, da Silva Melo José Wagner, Breda Mariana Oliveira
Agronomy-Tropical Agriculture Postgraduate Program, Agricultural Science Center-Entomology, University Campus Minister Petrônio Portella - Universidade Federal do Piauí, Teresina, Brazil.
Agricultural Science Center-Entomology, University Campus Minister Petrônio - Universidade Federal do Piauí, Teresina, Brazil.
Front Plant Sci. 2018 Oct 11;9:1466. doi: 10.3389/fpls.2018.01466. eCollection 2018.
The red spider mite, (Acari: Tetranychidae) can be an important pest on lima bean ( L.). Thus, the objective of this work was to assess the antibiosis and antixenosis effects of lima bean genotypes on , through the evaluation of performance parameters as well as the host preference for food and oviposition. Nine lima bean genotypes from the Active Bank of Germplasm of the Federal University of Piauí - BGP / UFPI were screened. To assess antibiosis parameters, eggs of were individually placed on leaf disks of each genotype. The period and survival of the different stages of development (larvae, protonymph, deutonymph and adult), pre-oviposition, oviposition and post-oviposition period, longevity and fecundity of females were evaluated, and fertility life table parameters were calculated. In choice tests, adult females of were used. The numbers of mites and eggs were counted for each genotype. The protonymph, egg-adult, longevity and oviposition period, fertility life table parameters, as well as the food and oviposition preference were affected by lima bean genotypes. We found that some genotypes reduced adult female longevity, increased the larval and egg-adult period, decreased oviposition period, negatively affected the fertility life table parameters, reducing the net reproductive rate (R), the intrinsic rate of increase (r) and the finite rate of increase (), while increasing the population doubling time (DT), exhibiting a reliable antibiosis effect upon . Nevertheless, these same genotypes were the most preferred for food and oviposition. By contrast, some other genotypes reduced the adult female longevity and oviposition period, elongated the larval period and affected fertility life table parameters, demonstrating an antibiosis effect upon Moreover, these other genotypes were among the less preferred for food and oviposition, exhibiting an additional antixenosis effect. Thus, our results demonstrate that the genotypes of lima bean may present distinct levels of resistance to , and this resistance may be an important tool for Integrated Pest Management. This is one of the first studies aiming to describe mite resistance sources in lima bean.
红叶螨(蜱螨亚纲:叶螨科)可能是利马豆(Phaseolus lunatus L.)的一种重要害虫。因此,本研究的目的是通过评估性能参数以及对食物和产卵的寄主偏好,来评估利马豆基因型对红叶螨的抗生和抗生性作用。对皮奥伊联邦大学种质活性库 - BGP / UFPI中的9种利马豆基因型进行了筛选。为了评估抗生参数,将红叶螨的卵分别放置在每种基因型的叶片圆盘上。评估了不同发育阶段(幼虫、若螨、成螨)的时期和存活率、产卵前期、产卵期和产卵后期、雌螨的寿命和繁殖力,并计算了生育力生命表参数。在选择试验中,使用了红叶螨的成年雌螨。统计每种基因型的螨和卵的数量。若螨、卵 - 成螨、寿命和产卵期、生育力生命表参数以及食物和产卵偏好受利马豆基因型影响。我们发现,一些基因型缩短了成年雌螨的寿命,延长了幼虫期和卵 - 成螨期,缩短了产卵期,对生育力生命表参数产生负面影响,降低了净繁殖率(R)、内禀增长率(r)和有限增长率(λ),同时增加了种群加倍时间(DT),对红叶螨表现出可靠的抗生作用。然而,这些相同的基因型却是食物和产卵的最优选。相比之下,其他一些基因型缩短了成年雌螨的寿命和产卵期,延长了幼虫期并影响了生育力生命表参数,对红叶螨表现出抗生作用。此外,这些其他基因型在食物和产卵方面是较不优选的,表现出额外的抗生性作用。因此,我们的结果表明,利马豆的基因型可能对红叶螨呈现出不同程度的抗性,并且这种抗性可能是害虫综合管理的重要工具。这是旨在描述利马豆中抗螨源的首批研究之一。