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Field-based assessment of the mechanism of maize yield enhancement by Azospirillum lipoferum CRT1

机译:田螺脂肪铁CRT1提高玉米产量的机制的实地评估

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摘要

Plant Growth-Promoting Bacteria (PGPB) of the genus Azospirillum are known to enhance root growth and yield in many plant species including cereals. To probe the underlying mechanisms, correlations between modifications of yield and 6-leaf plantlet characteristics were estimated on maize in four fields with contrasting soil properties over two consecutive years using the commercial isolate A. lipoferum CRT1. In both years, plantlet metabolome, photosynthetic potential and organ morphology were found to display field-and inoculation-specific signatures. Metabolomic analyses revealed that A. lipoferum CRT1 mostly affected sugar metabolism with no suggested impact on N and P assimilation. Mineral nitrogen feeding increased yield but did not affect yield enhancement by the bacterial partner. However, greater improvements of leaf photosynthetic potential correlated with yield diminutions and larger plantlets in all of their proportions correlated with yield enhancements. Bacterial inoculation restored proper seed-to-adult plant ratio when it accidentally dropped below 80%. Only in these cases did it raise yield. All in all, securing mature plant density is hypothesized as being the primary driver of A. lipoferum CRT1-mediated yield enhancement in maize fields.
机译:众生螺旋藻属的植物生长促进细菌(PGPB)已知能在包括谷物在内的许多植物物种中增强根的生长和产量。为了探究其潜在机理,使用商业分离株A. lipoferum CRT1,连续两年对土壤性质不同的四个田地上的玉米,估计了产量变化与6-叶小植株特性之间的相关性。在这两年中,均发现小苗的代谢组,光合作用潜力和器官形态表现出田间和接种特有的特征。代谢组学分析表明,A。lipoferum CRT1主要影响糖代谢,而对N和P同化没有影响。饲喂矿质氮可以提高产量,但不会影响细菌伴侣的产量提高。但是,叶片光合作用潜力的更大改善与产量减少相关,而更大比例的小植株与产量增加相关。当细菌接种率意外下降到80%以下时,它恢复了适当的种子与成年植物比。只有在这些情况下,它才能提高产量。总而言之,确保成熟的植物密度被认为是玉米田中油曲霉CRT1介导的产量提高的主要驱动力。

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