植物生长促进细菌以一种特定的方式影响玉米和美洲狼尾草的代谢产物

Faten Dhawi, A. Hess
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引用次数: 4

摘要

贫瘠的土壤是农业界面临的主要挑战之一,促使人们使用化肥来改善整体土壤质量。然而,化肥的使用会对环境产生重大的连锁影响。因此,利用有益微生物的接种来处理贫瘠的土壤是一个相当生态友好的可持续解决方案。在目前的研究中,我们用植物生长促进细菌(PGPB),荧光假单胞菌补充了营养缺乏的土壤。将荧光假单胞菌的细菌接种物添加到玉米和美国宾夕法尼亚州玉米幼苗播种后两天的贫瘠土壤中。使用核磁共振法(NMR)在处理后两个月对芽和根进行代谢产物分析。数据表明,与对照相比,植物地上部和根部的19种代谢产物发生了显著变化。在这些代谢产物中,7种在玉米变种的根中上调,9种在美洲狼尾草的根中下调。PGPB增强了根中的糖(果糖、葡萄糖、蔗糖)和氨基酸(谷氨酸、丙氨酸和琥珀酸),而在美洲狼獾的芽中下调。荧光假单胞菌主要诱导,玉米中氨酰基tRNA相关代谢产物以及丙氨酸、天冬氨酸和谷氨酸代谢产物的生物合成),而PGPB在美洲狼尾草中诱导代谢产物,主要是上调的碳水化合物相关代谢产物(淀粉和蔗糖)。两种植物在某些代谢反应上的差异表明PGPB的影响具有物种特异性。
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Plant Growth-Prompting Bacteria Influenced Metabolites of Zea mays var. amylacea and Pennisetum americanum p. in a Species-Specific Manner
Poor soil is one of the agricultural world’s principal challenges, inciting the use of chemical fertilizer’s to improve overall soil quality. However, the use of chemical fertilizer has significant and cascading environmental consequences. Therefore, the use of beneficial microbes’ inoculation in treating poor soil is a considerably ecofriendly sustainable solution. In the current study, we supplemented nutrient-deprived soil with plant growth promoting bacteria (PGPB), Pseudomonas fluorescens. The bacterial inoculations of Pseudomonas fluorescenswere added to the poor soil following two days post-sowing of Zea mays var. amylacea and Pennisetumamericanum p. seedlings. Metabolite analyses were conducted two months after treatment for both shoots and roots using nuclear magnetic resonance method (NMR). The data indicated significant changes in 19 metabolites relative to control in both plants shoot and roots. Among these metabolites, 7 were upregulated in roots of Zea mays var. amylacea, and 9 metabolites were upregulated in roots of Pennisetum americanum p. The PGPB enhanced sugars (fructose, glucose, sucrose) and amino acids (glutamate, alanine and succinate) in roots, while down regulating in shoots of Pennisetum americanum p. The Pseudomonas fluorescens induced, predominantly,Aminoacyl-tRNA related metabolite, and Alanine, aspartate and glutamate metabolite biosynthesis in Zea mays var. amylacea), whereas PGPB induced metabolites in Pennisetum americanum p., dominated by up regulated carbohydrate related (starch and sucrose) metabolites. The difference in some metabolic response between the two plants indicated that PGPB influence has a species-specific manner.
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