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Crop architecture and crop tolerance to fungal diseases and insect herbivory. Mechanisms to limit crop losses

机译:作物结构和农作物对真菌病和昆虫食草的耐受性。限制农作物损失的机制

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摘要

Plant tolerance to biotic stresses (mostly limited here to fungal pathogens and insects) is the ability of a plant to maintain performance in the presence of expressed disease or insect herbivory. It differs from resistance (the capacity to eliminate or limit pests and pathogens by genetic and molecular mechanisms) and avoidance (the ability to escape infection by epidemics). The ways to tolerance of pests and diseases are multiple and expressed at different scales. The contribution of organs to the capture and use of resources depends on canopy and root architecture, so the respective locations of disease and plant organs will have a strong effect on the crop's response. Similarly, tolerance is increased when the period of crop sensitivity lies outside the period within which the pest or pathogen is present. The ability of the plant to compensate for the reduced acquisition of resources by the production of new organs or by remobilization of reserves may also mitigate biotic stress effects. Numerous examples exist in the literature and are described in this article. Quantification of tolerance remains difficult because of: (i) the large number of potential mechanisms involved; (ii) different rates of development of plants, pests and pathogens; and (iii) various compensatory mechanisms. Modelling is, therefore, a valuable tool to quantify losses, but also to prioritize the processes involved.
机译:植物对生物胁迫的耐受性(此处仅限于真菌病原体和昆虫)是植物在存在表达的疾病或昆虫食草动物的情况下保持生长的能力。它不同于抗药性(通过遗传和分子机制消除或限制有害生物和病原体的能力)和规避(通过流行病避免感染的能力)。病虫害的耐受方式多种多样,并以不同的规模表达。器官对资源获取和利用的贡献取决于冠层和根系结构,因此疾病和植物器官的各自位置将对作物的响应产生强烈影响。同样,当作物敏感性期超出存在有害生物或病原体的时期时,耐受性也会提高。植物通过生产新器官或通过动员储备来补偿资源减少的能力,也可以减轻生物胁迫的影响。文献中存在大量示例,并在本文中进行了描述。由于以下原因,难以对耐受性进行量化:(i)涉及大量潜在机制; (ii)植物,害虫和病原体的不同发育速度; (iii)各种补偿机制。因此,建模是量化损失并确定相关流程优先级的宝贵工具。

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