首页> 外文OA文献 >Grafting Snake Melon Cucumis melo L. subsp. melo Var. flexuosus (L.) Naudin in Organic Farming: Effects on Agronomic Performance; Resistance to Pathogens; Sugar, Acid, and VOC Profiles; and Consumer Acceptance
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Grafting Snake Melon Cucumis melo L. subsp. melo Var. flexuosus (L.) Naudin in Organic Farming: Effects on Agronomic Performance; Resistance to Pathogens; Sugar, Acid, and VOC Profiles; and Consumer Acceptance

机译:嫁接蛇甜瓜Cucumis Melo L. subsp。 Melo var。 Flexuosus(L.)Naudin在有机耕作中:对农艺表现的影响;抗病原体;糖,酸和VOC型材;和消费者接受

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摘要

The performance of snake melon [Cucumis melo var. flexuosus (L.)] in organic farming was studied under high biotic and salt stress conditions. Soilborne diseases (mainly caused by Macrophomina phaseolina and Neocosmospora falciformis), combined with virus incidence [Watermelon mosaic virus (WMV), Zucchini yellow mosaic virus (ZYMV), and Tomato leaf curl New Delhi virus (ToLCNDV)] and Podosphaera xanthii attacks, reduced yield by more than 50%. Snake melon susceptibility to M. phaseolina and Monosporascus cannonballus was proved in pathogenicity tests, while it showed some degree of resistance to Neocosmospora keratoplastica and N. falciformis. On the contrary, salt stress had a minor impact, although a synergic effect was detected: yield losses caused by biotic stress increased dramatically when combined with salt stress. Under biotic stress, grafting onto the melon F1Pat81 and wild Cucumis rootstocks consistently reduced plant mortality in different agroecological conditions, with a better performance compared to classic Cucurbita commercial hybrids. Yield was even improved under saline conditions in grafted plants. A negative effect was detected, though, on consumer acceptability, especially with the use of Cucurbita rootstocks. Cucumis F1Pat81 rootstock minimized this side effect, which was probably related to changes in the profile of sugars, acids, and volatiles. Grafting affected sugars and organic acid contents, with this effect being more accentuated with the use of Cucurbita rootstocks than with Cucumis. In fact, the latter had a higher impact on the volatile organic compound profile than on sugar and acid profile, which may have resulted in a lower effect on consumer perception. The use of Cucumis rootstocks seems to be a strategy to enable organic farming production of snake melon targeted to high-quality markets in order to promote the cultivation of this neglected crop.
机译:蛇瓜的性能[Cucumis melo var。在高生物和盐胁迫条件下研究了有机耕种中的Flexuosus(L.)]。土壤中疾病(主要由Macrophomina phoplaolina和Neocosmospora falciformis引起),与病毒发病率相结合[西瓜马赛克病毒(WMV),西葫芦黄色马赛克病毒(Zymv),以及番茄叶卷曲新德里病毒(Tolcndv)]和Podosphaera xanthii攻击,减少产量超过50%。在致病性试验中证明了对M. phapeolina和MonoSporcus Cannonballus的Snake Melon易感性,而它表明对Neocosmospora Keratoploplasta和N.Falciformis的一定程度的抗性。相反,盐胁迫具有轻微的影响,尽管检测到协同效应:当与盐胁迫结合时,通过生物应激引起的产生损失急剧增加。在生物应激下,嫁接到甜瓜F1PAT81和野生黄瓜砧座上始终如一地降低了不同农生病症的植物死亡率,与经典的葫芦塔商业杂交种相比具有更好的性能。在接枝植物中的盐条件下产量甚至改善。然而,对消费者可接受性进行了消极效果,特别是在使用葫芦塔砧木。 Cucumis F1PAT81砧木最小化了这种副作用,这可能与糖,酸和挥发物概况的变化有关。嫁接受影响的糖和有机酸含量,这种效果更加强调,使用葫芦塔砧木而不是黄瓜。事实上,后者对挥发性有机化合物曲线的影响较高,而不是糖和酸性曲线,这可能导致对消费者感知的效果较低。使用Cucumis砧木似乎是能够使蛇瓜有机耕作产生的策略,以促进这种被忽视的作物的培养。

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