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首页> 外文期刊>Biological Agriculture & Horticulture >Interspecific rootstock can enhance yield of processing tomatoes (Solanum lycopersicum L.) in organic farming
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Interspecific rootstock can enhance yield of processing tomatoes (Solanum lycopersicum L.) in organic farming

机译:三角形砧木可以提高加工番茄(Solanum Lycopersicum L.)的有机耕作的产量

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摘要

At present, consumer concern about the impact of food production on the environment is driving increased demand for high quality and healthy tomatoes. However, the yield of processing tomatoes in organic systems are generally lower than that in conventional systems and only a limited number of genotypes suitable for low input or organic systems are available for farmers. The technique of grafting commercial genotypes onto selected rootstocks offers a faster alternative to the classic breeding process. Therefore, in this study, the use of the interspecific rootstock RS01658654 (RT1) was assessed, aiming to improve the marketable yield of processing tomatoes grown in an organic cropping system. The non-commercial processing tomato genotype TC266 was grafted onto the interspecific rootstock RT1 and the plants were then grown under organic conditions. In two growing seasons, morphological, physiological and agronomic performances of grafted processing tomato plants were compared to non-grafted and self-grafted plants. TC226 grafted onto RT1 had a higher number of flowers and leaves compared with the non-grafted and the self-grafted plants. In addition, the marketable yield (significant in 2017 only), the number of fruits and the fruit dry weight were higher for plants grown on the interspecific rootstock RT1, without affecting the quality of the fruit. The results of this study showed that the use of the interspecific rootstock RT1 could provide a good option for improving the production of processing tomatoes in organic farming.
机译:目前,消费者关注粮食生产对环境的影响,推动了对高品质和健康的西红柿的需求。然而,有机系统中的加工西红柿的产量通常低于常规系统中的产量,并且仅适用于低输入或有机系统的有限数量的基因型可用于农民。将商业基因型接枝到选定的砧木上的技术提供了更快的替代经典育种过程。因此,在本研究中,评估了三种砧木RS01658654(RT1)的使用,旨在提高在有机种植系统中生长的加工西红柿的可销售产量。将非商业加工番茄基因型Tc266接枝到三角砧座RT1上,然后在有机条件下生长植物。在两个生长的季节中,将接枝加工番茄植物的形态,生理和农艺性能与非接枝和自接枝植物进行比较。与非接枝和自接枝植物相比,TC226接枝到RT1上具有较高的鲜花和叶子。此外,在三角砧木RT1上生长的植物生长的植物的植物数量和果实干重的数量较高,而不影响水果的质量,植物数量和水果干重的数量较高。该研究的结果表明,使用三角形砧木RT1可以提供良好的选择,可以改善有机耕作中加工西红柿的生产。

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