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Abiotically-induced plant morphological changes and host-range expansion in quarantine evaluations of candidate weed biocontrol agents : the case study Conchyloctenia hybrida (Coleoptera: Chrysomelidae)

机译:候选杂草生物防治剂的检疫评估中的不利诱导的植物形态变化和宿主范围扩展:案例研究Conchyloctenia hybrida(鞘翅目:叶甲科)

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摘要

Plant morphological changes mediated by growth conditions are linked to changes in host preference of herbivores. Understanding how these morphological changes influence herbivore feeding is critical in the interpretation of results of host evaluation of candidate weed biocontrol agents in quarantine and improvement of the evaluation system. We determined the effect of plant growth conditions on leaf trichomes and host choice of Conchyloctenia hybrida Boheman, an insect adapted to the removal of trichomes before feeding. The study included four Solanum species: Solanum lichtensteinii Willdenow (natural host of C. hybrida), Solanum mauritianum Scopoli, Solanum melongena L., and Solanum tuberosum L.. Plants were grown in either full sun, shade, a glasshouse, or in a growth-chamber. Plants grown in full sun had a higher leaf trichome density than those in shade or controlled environments. S. mauritianum had the highest trichome density and thickness of trichome layer. In a multiple-choice test using excised leaves, feeding by C. hybrida was higher on Solanum plants grown in the controlled environment as compared with full sun. Trichome removal from leaf surfaces of plants grown in full sun, using adhesive tape, was effective for S. lichtensteinii, S. mauritianum, and S. melongena, but not S. tuberosum. Leaf consumption by C. hybrida increased significantly where manual trichome removal using adhesive tape was effective. Structurally, leaves of S. tuberosum have simple trichomes with basal cells sunken into the mesophyll tissue. When using forceps to remove trichomes of S. tuberosum, mesophyll and vascular tissue remained attached to the trichomes. Generally, the type, density, and mat-thickness of leaf trichomes determined feeding by C. hybrida, but varied with plant species and growth conditions.
机译:生长条件介导的植物形态变化与草食动物寄主偏好的变化有关。理解这些形态变化如何影响草食动物进食对于解释隔离区候选杂草生物防治剂的宿主评估结果和评估系统的改进至关重要。我们确定了植物生长条件对叶片毛状体的影响,并确定了Conchyloctenia hybrida Boheman的寄主选择,这是一种适于在进食前去除毛状体的昆虫。该研究包括4种茄科植物:茄属植物Lichtensteinii Willdenow(杂种梭菌的自然寄主),茄子茄属Scopoli,茄属茄属和茄属茄属。成长室。在阳光下生长的植物比在阴凉或受控环境下具有更高的叶片毛状体密度。毛链霉菌具有最高的毛线密度和毛线层厚度。在使用切下的叶子进行的多项选择试验中,与在阳光充足的条件下相比,在受控环境下生长的茄属植物的C. hybrida取食量更高。使用胶带从日光下生长的植物的叶片表面去除千叶虫对李氏链球菌,毛里求斯链霉菌和黑麦链球菌有效,但对马铃薯不起作用。在使用胶带手动去除毛毛的地方,杂种梭菌的叶片消耗量显着增加。在结构上,马铃薯的叶子具有简单的毛状体,基细胞沉入叶肉组织中。当使用镊子去除马铃薯链球菌的毛状体时,叶肉和维管组织仍然附着在毛状体上。通常,叶片毛状体的类型,密度和垫厚决定了杂种梭菌的取食,但随植物种类和生长条件而变化。

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