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首页> 外文期刊>Frontiers in Plant Science >Vegetable Grafting: The Implications of a Growing Agronomic Imperative for Vegetable Fruit Quality and Nutritive Value
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Vegetable Grafting: The Implications of a Growing Agronomic Imperative for Vegetable Fruit Quality and Nutritive Value

机译:蔬菜嫁接:植物果实质量和营养价值不断增长的农艺必要性的影响

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Grafting has become an imperative for intensive vegetable production since chlorofluorocarbon-based soil fumigants were banned from use on grounds of environmental protection. Compelled by this development, research into rootstock–scion interaction has broadened the potential applications of grafting in the vegetable industry beyond aspects of soil phytopathology. Grafting has been increasingly tapped for cultivation under adverse environs posing abiotic and biotic stresses to vegetable crops, thus enabling expansion of commercial production onto otherwise under-exploited land. Vigorous rootstocks have been employed not only in the open field but also under protected cultivation where increase in productivity improves distribution of infrastructural and energy costs. Applications of grafting have expanded mainly in two families: the Cucurbitaceae and the Solanaceae, both of which comprise major vegetable crops. As the main drives behind the expansion of vegetable grafting have been the resistance to soilborne pathogens, tolerance to abiotic stresses and increase in yields, rootstock selection and breeding have accordingly conformed to the prevailing demand for improving productivity, arguably at the expense of fruit quality. It is, however, compelling to assess the qualitative implications of this growing agronomic practice for human nutrition. Problems of impaired vegetable fruit quality have not infrequently been associated with the practice of grafting. Accordingly, the aim of the current review is to reassess how the practice of grafting and the prevalence of particular types of commercial rootstocks influence vegetable fruit quality and, partly, storability. Physical, sensorial and bioactive aspects of quality are examined with respect to grafting for watermelon, melon, cucumber, tomato, eggplant, and pepper. The physiological mechanisms at play which mediate rootstock effects on scion performance are discussed in interpreting the implications of grafting for the configuration of vegetable fruit physicochemical quality and nutritive value.
机译:嫁接已成为强化蔬菜生产的必要性,因为氯氟烃的土壤熏蒸剂因环境保护的原因而禁止。通过这种发展推动,砧木互动的研究扩大了植物产业嫁接超越土壤植物病理学方面的潜在应用。在对植物作物构成非生物和生物胁迫的不良环境下,饲养越来越多地挖掘培养,从而使商业生产扩大到脱爆的土地上。剧烈的砧木不仅在开放领域雇用,而且在保护培养下雇用,其中生产率的增加提高了基础设施和能源成本的分布。嫁接的应用主要在两个家庭中扩增:葫芦科和茄科,两者都包含主要蔬菜作物。由于植物移植膨胀背后的主要驱动器已经是对土壤丧失的抗性病原体的抵抗力,对非生物胁迫的耐受性和产率的增加,砧木选择和育种的增加,符合提高生产力的普遍要求,可具体地以果实质量为代价。然而,令人兴奋地评估这种不断增长的农艺实践对人类营养的定性影响。蔬菜水果效果受损的问题并不常见地与嫁接的做法有关。因此,目前审查的目的是重新评估嫁接的实践和特定类型的商业砧木的普遍性如何影响蔬菜果实质量,部分地,可储存性。对西瓜,甜瓜,黄瓜,番茄,茄子和胡椒的嫁接来检查质量的物理,感官和生物活性方面。在解释植物水果理化质量和营养价值配置的影响中,讨论了对砧木性能的游戏的生理机制进行了讨论的探讨了扦插效果。

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