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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:日益增长的农学对蔬菜水果品质和营养价值的影响

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摘要

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:嫁接已成为集约蔬菜生产的当务之急,因为基于环境保护的理由禁止使用基于氯氟烃的土壤熏蒸剂。受此发展的推动,对砧木-接穗相互作用的研究扩大了嫁接在蔬菜行业中的潜在应用范围,超越了土壤植物病理学方面。嫁接已越来越多地用于在不利环境下对蔬菜作物造成非生物和生物胁迫的种植,从而能够将商业生产扩展到其他未充分利用的土地上。旺盛的砧木不仅用于露天田地,而且还用于受保护的耕作中,在那里生产率的提高改善了基础设施和能源成本的分配。嫁接的应用主要在两个家族中扩展:葫芦科和茄科,它们都是主要的蔬菜作物。由于扩大蔬菜嫁接的主要驱动力是对土壤传播的病原体的抵抗力,对非生物胁迫的耐受性和单产的增加,因此砧木的选择和育种相应地满足了提高生产力的主要需求,而这无疑是以水果质量为代价的。然而,迫切需要评估这种日益增长的农学实践对人类营养的定性影响。蔬菜水果品质受损的问题很少与嫁接实践相关。因此,本综述的目的是重新评估嫁接的做法和特殊类型的商业砧木的流行对蔬菜果实品质以及部分可存储性的影响。就嫁接西瓜,瓜,黄瓜,番茄,茄子和胡椒的质量,物理,感觉和生物活性方面进行了检查。在解释嫁接对蔬菜水果理化品质和营养价值构型的影响时,讨论了介导砧木对接穗性能的生理机制。

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