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首页> 外文期刊>Korean Journal of Horticultural Science & Technology >Greenhouse Evaluation of Melon Rootstock Resistance to Monosporascus Root Rot and Vine Decline as Well as of Yield and Fruit Quality in Grafted 'Inodorus' Melons
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Greenhouse Evaluation of Melon Rootstock Resistance to Monosporascus Root Rot and Vine Decline as Well as of Yield and Fruit Quality in Grafted 'Inodorus' Melons

机译:日光温室甜瓜嫁接'Inodorus'甜瓜对单孢菌根腐烂和藤蔓下降的抗性以及产量和品质的温室评价

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摘要

Melons (Cucumis melo L.) are generally grafted onto Cucurbita rootstocks to manage soilborne pathogens such as Monosporascus root rot and vine decline (MRR/VD) and Fusarium wilt. However, grafting onto Cucurbita rootstocks reportedly results in the reduction of fruit quality. In this study, the resistance to MRR/VD, yield, and fruit quality of melons grafted onto melon rootstocks were evaluated under greenhouse conditions. Eight melon rootstocks (R1 to R8) were used and the inodorus melon 'Homerunstari was used as scion. Melon rootstocks R1 to R6 were selected based on resistance to MRR/VD under greenhouse conditions. Non-grafted 'Homerunstar' and plants grafted onto squash interspecific hybrid 'Shintozwa' rootstock (Cucurbita maxima D. x C. moschata D.) served as controls. Grafted melons were cultivated in the greenhouse infested with Monosporascus cannonballus during two growing seasons (summer and autumn). The responses to MRR/VD, yield, and fruit quality differed depending on the rootstocks and growing season. The melons grafted onto `Shintozwa' exhibited less severe disease symptoms and higher survival rates than non-grafted melons in both seasons. While the melon rootstocks in the summer cultivation did not increase the survival rate compared to non-grafted melons, the melon rootstocks R1 and R2 in the autumn cultivation led to higher survival rates. The melon rootstocks resistant to MRR/VD increased the percentage of marketable fruits and marketable yields. Grafting onto the melon rootstocks caused little or no reduction of fruit quality such as low calcium content, fruit softening, and vitrescence, especially in lower-temperature autumn season. Accordingly, these results suggest that grafting onto the melon rootstocks may increase the tolerance to MRR/VD and the marketable yield without a reduction of fruit quality
机译:通常将甜瓜(Cucumis melo L.)嫁接到南瓜根砧木上,以管理土壤传播的病原体,例如单孢根腐病和葡萄藤腐烂(MRR / VD)和枯萎病。但是,据报道嫁接到南瓜根茎上会导致果实品质下降。在这项研究中,在温室条件下评估了嫁接在甜瓜砧木上的甜瓜对MRR / VD的抗性,产量和果实品质。使用八种甜瓜砧木(R1至R8),将无臭甜瓜'Homerunstari用作接穗。基于温室条件下对MRR / VD的抗性选择甜瓜砧木R1至R6。将未嫁接的“ Homerunstar”和嫁接到南瓜种间杂种“ Shintozwa”砧木(西葫芦(Cucurbita maxima D. x C. moschata D.))上的植物作为对照。在两个生长季节(夏季和秋季),将嫁接的哈密瓜种植在盛有Monosporascus cannonballus的温室中。对MRR / VD,产量和果实品质的反应取决于砧木和生长期。在两个季节中,嫁接在“ Shintozwa”上的瓜均表现出较轻度的疾病症状和较高的存活率。与未嫁接的甜瓜相比,夏季栽培的甜瓜砧木并没有提高成活率,而秋季栽培的甜瓜砧木R1和R2则提高了成活率。抗MRR / VD的甜瓜砧木增加了可销售水果的百分比和可销售的产量。嫁接在甜瓜砧木上导致果实品质降低,甚至很少降低,例如钙含量低,果实软化和玻璃化,特别是在低温秋季。因此,这些结果表明,嫁接在甜瓜砧木上可提高对MRR / VD的耐受性和可销售的产量,而不会降低果实品质

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