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Increased water salinity applied to tomato plants accelerates the development of the leaf miner Tuta absoluta through bottom-up effects

机译:应用于番茄植物的水盐度增加加速了通过自下而上效应的叶子矿工Tuta Absoluta的发展

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Variation in resource inputs to plants may trigger bottom-up effects on herbivorous insects. We examined the effects of water input: optimal water vs. limited water; water salinity: with vs. without addition of 100?mM NaCl; and their interactions on tomato plants (Solanum lycopersicum), and consequently, the bottom-up effects on the tomato leaf miner, Tuta absoluta (Meytick) (Lepidoptera: Gelechiidae). Plant growth was significantly impeded by limited water input and NaCl addition. In terms of leaf chemical defense, the production of tomatidine significantly increased with limited water and NaCl addition, and a similar but non-significant trend was observed for the other glycoalkaloids. Tuta absoluta survival did not vary with the water and salinity treatments, but the treatment "optimal water-high salinity" increased the development rate without lowering pupal mass. Our results suggest that caution should be used in the IPM program against T. absoluta when irrigating tomato crops with saline water.
机译:植物资源输入的变化可能引发对食草昆虫的自下而上影响。我们检查了水输入的影响:最佳水与有限的水;水盐度:与Vs.没有100?mm NaCl;及其对番茄植物(Solanum Lycopersicum)的相互作用,从而对番茄叶矿工,Tuta Absoluta(Meytick)(Lepidoptera:Gelechiidae)的自下而上的影响。有限的水输入和NaCl加入,植物生长显着阻碍。在叶子化学防御方面,西坦的生产与有限的水和NaCl加成显着增加,并且对其他甘油碱的含量相似但不显着的趋势。 Tuta Absoluta生存率与水和盐度处理没有变化,但治疗“最佳水 - 高盐度”增加了蛹质量的发展速度。我们的研究结果表明,在用盐水灌溉番茄作物时,应在针对Absoluta的IPM计划中使用谨慎。

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