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Mechanisms of partial plant resistance to diamondback moth (Plutella xylostella) in brassicas

机译:芸苔属部分植物对小菜蛾(小菜蛾)的抗性机制

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摘要

Artificial diet studies were used to differentiate among physical and chemical mechanisms affecting the suitability to diamondback moth (Plutella xylostella L.), of 16 food substrates obtained by growing four different brassicas in the glasshouse or field and measuring the pest's performance on either leaf discs or a diet incorporating leaf powders. Leaves of Chinese cabbage and the cabbage cultivar 'Minicole' were, respectively, the most and least suitable leaves for the insect, but this ranking was reversed on artificial diet. Leaves of glasshouse-grown plants were more suitable than those of plants grown in the fields. Differences in the suitability of leaves to diamondback moth appeared to be largely determined by leaf toughness and surface wax load. Concentrations of individual glucosinolates in the brassicas probably acted as phagostimulants, so increasing their intrinsic susceptibility to diamondback moth, but the effect of the physical factors appeared more important.
机译:人工饮食研究用于区分影响温室小菜蛾(Plutella xylostella L.)适应性的物理和化学机制,这16种食物是通过在温室或田间种植四种不同的芸苔属并在叶盘或圆盘上测量害虫的性能而获得的含有叶粉的饮食。大白菜和小白菜品种“ Minicole”的叶子分别是最适合昆虫的叶子,但在人工饮食中这种排名被颠倒了。温室种植的植物的叶子比田间种植的植物的叶子更合适。叶片对小菜蛾的适应性差异似乎很大程度上取决于叶片的韧性和表面蜡负荷。芸苔属中单个芥子油苷的浓度可能起着兴奋剂的作用,因此增加了它们对小菜蛾的内在敏感性,但物理因素的影响显得更为重要。

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