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Plant growth-promoting effects of rhizospheric and endophytic bacteria associated with different tomato cultivars and new tomato hybrids

机译:与不同番茄品种和新番茄杂交品种相关的根际和内生细菌对植物生长的促进作用

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Background Conventional agriculture relies on chemical pesticides and fertilizers, which can degrade ecosystems. A reduction of these harmful practices is required, replacing (or integrating) them with more eco-friendly approaches, such as microbial inoculation. Tomato is an important agricultural product, with a high content of bioactive compounds (folate, ascorbate, polyphenols, and carotenoids). The focus of this research was to investigate the plant growth-promoting (PGP) abilities of bacterial strains isolated from different tomato cultivars, with the aim to develop systems to improve plant health and crop productivity based on microbial inoculation. Methods A pool of different tomato cultivars already available on the market and new tomato hybrids were selected based on their nutritional quality (high content of biologically active compounds). A total of 23 strains were isolated from tomato roots (11 rhizospheric strains and 12 root endophytes). The cultivable isolates were analyzed for a number of different PGP traits: organic acids (OA), indole acetic acid (IAA), ACC deaminase, and siderophore production. The effects of microbial inoculation on root growth of Arabidopsis thaliana were also evaluated using a Vertical Agar Plate assay. Results A high percentage of the isolated strains tested positive for the following PGP traits: 73?% were able to produce OA, 89?% IAA, 83?% ACC deaminase, and 87?% siderophores. The most striking result were remarkable increases in the formation of root hairs for most of the inoculated plants. This effect was obvious for all A. thaliana seedlings inoculated with the isolated endophytes, and for the 50?% of the seedlings inoculated with the rhizospheric strains. Conclusions A better knowledge of the plant growth-promotion activity of these strains can provide an important contribution to increase environmental sustainability in agriculture. Graphical Screening of plant growth-promoting (PGP) effects of bacteria associated with different tomato cultivars.
机译:背景技术常规农业依靠化学农药和化肥,会破坏生态系统。需要减少这些有害的做法,用更环保的方法(例如微生物接种)替代(或整合)它们。番茄是一种重要的农产品,具有高含量的生物活性化合物(叶酸,抗坏血酸,多酚和类胡萝卜素)。这项研究的重点是研究从不同番茄品种分离出的细菌菌株的植物促生长(PGP)能力,目的是开发基于微生物接种改善植物健康和农作物生产力的系统。方法:市场上已有不同品种的番茄品种,并根据其营养品质(高生物活性化合物含量)选择了新的番茄杂交品种。从番茄根中分离出总共23个菌株(11个根际菌株和12个根内生菌)。分析了可分离菌株的许多不同PGP性状:有机酸(OA),吲哚乙酸(IAA),ACC脱氨酶和铁载体的产生。还使用垂直琼脂平板试验评估了微生物接种对拟南芥根生长的影响。结果分离出的高比例菌株对以下PGP特性测试呈阳性:73%能够产生OA,89%IAA,83%ACC脱氨酶和87%铁载体。最惊人的结果是大多数接种植物的根毛形成显着增加。对于所有接种了分离的内生菌的拟南芥幼苗,以及接种有根际菌株的50%的幼苗,这种效应都是明显的。结论更好地了解这些菌株的植物生长促进活性可以为提高农业的环境可持续性做出重要贡献。图形筛选不同番茄品种相关细菌的植物促生长(PGP)效果。

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