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Resistance of apple trees to Cydia pomonella egg-laying due to leaf surface metabolites

机译:叶表面代谢产物对苹果树对灰Cy产卵的抗性

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During host plant selection and particularly after alighting on a plant, chemical cues from the plant surface influence an insect's acceptance of the plant and, subsequently, its egg-laying behaviour. Primary metabolites in the phylloplane may be more important than hitherto known. We have shown that soluble carbohydrates, such as glucose, fructose, and sucrose, and sugar alcohols, such as sorbitol, quebrachitol, and myo-inositol, can be detected by insects after contacting the plant and that they positively influence egg-laying of the codling moth, Cydia pomonella (L.) (Lepidoptera: Tortricidae), on apple trees. We addressed the question whether a lack of these substances could also explain apple tree resistance to C. pomonella in terms of reduced egg-laying. Leaf surface washings were collected in an apple orchard by spraying water on the resistant cultivar X65-11 and on the susceptible cultivar P5R50A4. The washings were tested on a nylon cloth on isolated females under no-choice conditions. The washings were analysed and synthetic blends, each consisting of the six metabolites in the proportions established in the leaf surface washings of both cultivars, were then tested for their effect on egg-laying of C. pomonella. Dose-response egg-laying tests were carried out on substrates impregnated with the X65-11 leaf surface blend at 1, 100, 1 000, and 10 000 times the natural dose. Egg-laying behaviour in the bioassays with leaf surface washings of both cultivars closely resembled egg-laying in the orchard. Washings of P5R50A4 stimulated egg-laying to a greater extent than those of X65-11 and the water control. Synthetic blends reduced substrate acceptance and egg-laying, compared to the washings of X65-11. Ratios between components within the blend are responsible for this resistance. In conclusion, quantities and ratios of the six primary metabolites found on the leaf surface may influence host preference of C. pomonella as well as their egg-laying behaviour, thus they may play a role in the trees' resistance to the codling moth.
机译:在选择寄主植物期间,尤其是在下植物后,来自植物表面的化学提示会影响昆虫对植物的接受程度,进而影响其产卵行为。叶平面中的主要代谢产物可能比迄今已知的更为重要。我们已经表明,昆虫与植物接触后可以检测到可溶性碳水化合物(例如葡萄糖,果糖和蔗糖)和糖醇(例如山梨糖醇,槲皮醇和肌醇),它们对植物的卵生有积极影响。苹果树上的苹果mo蛾,Cydia pomonella(L。)(鳞翅目:Tor科)。我们提出了一个问题,即缺乏这些物质是否也可以从减少产卵的角度解释苹果树对肺炎衣原体的抗性。通过在抗性品种X65-11和易感品种P5R50A4上喷水,在苹果园中收集叶片表面的洗涤液。在无选择的条件下,在孤立的雌性的尼龙布上测试洗涤液。分析洗涤物并合成混合物,每种混合物均由两种变种的叶片表面洗涤物中确定的比例的六种代谢物组成,然后测试其对马氏梭菌产卵的影响。在浸渍有X65-11叶片表面混合物的基质上以自然剂量的1、100、1000和10000倍进行剂量响应产卵试验。在两个品种的叶片表面洗涤的生物测定中,产卵行为与果园中的产卵极为相似。与X65-11和水质控制相比,P5R50A4的洗涤刺激产卵的程度更大。与X65-11的洗涤液相比,合成混合物降低了基质的接受度和产蛋率。共混物中各组分之间的比例是造成这种阻力的原因。总之,在叶表面发现的六种主要代谢物的数量和比例可能会影响梭状衣原体的寄主偏好及其产卵行为,因此它们可能在树木对苹果mo蛾的抗性中发挥作用。

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