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Substrate biofortification in combination with foliar sprays of plant growth promoting bacteria and humic substances boosts production of organic tomatoes

机译:底物生物强化结合植物生长的叶面喷雾促进细菌和腐殖质物质,可提高有机番茄的产量

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Global demand for organic produce has increased by ca. 20% annually as consumers express increasing concerns over pesticide residues in their food. Organic tomato farming under tropical conditions is limited, and studies of production for industrial processing are relatively rare. In this study, we aimed to evaluate a new biotechnological tool with the potential to accelerate the conversion from conventional to organic industrial tomato production by combining the benefits of (i) the plant growth-promoting bacteria (PGPB) Herbaspirillum seropedicae and (ii) humates. This novel biofertilizer was first applied in plant growth substrate to stimulate seedling growth under greenhouse conditions; subsequently, it was used as a foliar spray following the transplantation of greenhouse seedlings to field conditions. The benefits of vermicompost plus PGPB and humate were evident in both seedling growth and development. Fruit biomass increased significantly relative to control plants after changes in plant metabolism during early growth stages. After transplantation to the field, foliar spraying of PGPB and humates enhanced nitrate uptake and nitrate reductase activity; it also stimulated the secondary metabolic phenylalanine ammonia lyase pathway. This new generation of biological products based on vermicompost, soluble organic matter and selected beneficial microorganisms provides opportunities for effectively increasing biological inputs to sustainable food, fiber and energy production. (C) 2014 Elsevier B.V. All rights reserved.
机译:全球对有机农产品的需求增加了约每年20%的消费者表示越来越担心食品中的农药残留。热带条件下的有机番茄种植受到限制,对工业加工生产的研究相对较少。在这项研究中,我们旨在评估一种新的生物技术工具,该技术结合了(i)促进植物生长的细菌(PGPB)草螺旋藻和(ii)腐殖酸盐的益处,有可能加速从传统番茄向有机工业番茄生产的转化。 。这种新型生物肥料首先用于植物生长基质,以刺激温室条件下的幼苗生长。随后,在将温室幼苗移植到田间条件后,将其用作叶面喷雾剂。 Vermicompost加上PGPB和腐殖酸盐的好处在幼苗生长和发育中均显而易见。在生长初期,植物代谢发生变化后,果实生物量相对于对照植物显着增加。移植到田间后,叶面喷施PGPB和腐殖酸盐可增强硝酸盐的吸收和硝酸盐还原酶的活性。它还刺激了次级代谢苯丙氨酸氨裂解酶途径。这种基于ver虫,可溶性有机物和精选有益微生物的新一代生物产品为有效增加可持续食物,纤维和能源生产的生物投入提供了机会。 (C)2014 Elsevier B.V.保留所有权利。

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