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Exploring the use of recombinant inbred lines in combination with beneficial microbial inoculants (AM fungus and PGPR) to improve drought stress tolerance in tomato

机译:探索将重组自交系与有益微生物接种剂(AM真菌和PGPR)结合使用以提高番茄的耐旱性

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摘要

At a world scale, tomato is an important horticultural crop, but its productivity is highly reduced by drought stress. Combining the application of beneficial microbial inoculants with breeding and grafting techniques may be key to cope with reduced tomato yield under drought. This study aimed to investigate the growth responses and physiological mechanisms involved in the performance under drought stress of four tomato recombinant inbred lines (RIL) after inoculation with the arbuscular mycorrhizal (AM) fungus Rhizophagus irregularis and the plant growth promoting rhizobacteria (PGPR) Variovorax paradoxus 5C-2. Results showed a variation in the efficiency of the different tomato RILs under drought stress and a differential effect of the microbial inoculants, depending on the RIL involved. The inoculants affected plant parameters such as net photosynthetic capacity, oxidative damage to lipids, osmolyte accumulation, root hydraulic conductivity or aquaporin abundance and phosphorylation status. RIL66 was the one obtaining maximum benefit from the microbial inoculants under drought stress conditions, due likely to improved CO2-fixation capacity and root hydraulic conductivity. We propose that RIL66 could be selected as a good plant material to be used as rootstock to improve tomato growth and productivity under water limiting conditions. Since RIL66 is highly responsive to microbial inoculants, this grafting strategy should be combined with inoculation of R. irregularis and V. paradoxus in order to improve plant yield under conditions of drought stress.[EN]
机译:在世界范围内,番茄是重要的园艺作物,但由于干旱胁迫,番茄的生产力大大降低。将有益微生物接种剂的应用与育种和嫁接技术相结合可能是应对干旱下番茄减产的关键。这项研究旨在调查接种有丛枝菌根(AM)真菌不规则根瘤菌和植物促生根瘤菌(PGPR)Variovorax paradoxus的四个番茄重组自交系(RIL)在干旱胁迫下表现的生长响应和生理机制5C-2。结果表明,不同的番茄RILs在干旱胁迫下的效率存在差异,微生物接种剂的效果也不同,具体取决于所涉及的RIL。孕育剂影响植物的参数,例如净光合能力,脂质的氧化损伤,渗透液的积累,根系水力传导率或水通道蛋白的丰度和磷酸化状态。 RIL66是在干旱胁迫条件下从微生物接种剂中获得最大收益的一种农药,这可能是由于提高了CO2固定能力和根系水力传导性。我们建议将RIL66选作优良的植物材料,用作砧木,以提高水分限制条件下的番茄生长和生产力。由于RIL66对微生物接种剂具有高响应性,因此该嫁接策略应与不规则R.和V. paradoxus的接种结合使用,以提高干旱胁迫下的植物产量。[EN]

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