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Bacteria in combination with fertilizers promote root and shoot growth of maize in saline-sodic soil

机译:细菌与肥料的结合促进盐碱土壤中玉米的根和芽生长

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摘要

Salinity is the leading abiotic stress hampering maize ( Zea mays L.) growth throughout the world, especially in Pakistan. During salinity stress, the endogenous ethylene level in plants increases, which retards proper root growth and consequent shoot growth of the plants. However, certain bacteria contain the enzyme 1-aminocyclopropane-1-carboxylate (ACC) deaminase, which converts 1-aminocyclopropane-1-carboxylic acid (an immediate precursor of ethylene biosynthesis in higher plants) into ammonia and α-ketobutyrate instead of ethylene. In the present study, two Pseudomonas bacterial strains containing ACC-deaminase were tested separately and in combinations with mineral fertilizers to determine their potential to minimize/undo the effects of salinity on maize plants grown under saline-sodic field conditions. The data recorded at 30, 50 and 70 days after sowing revealed that both the Pseudomonas bacterial strains improved root and shoot length, root and shoot fresh weight, and root and shoot dry weight up to 34, 43, 35, 71, 55 and 68%, respectively, when applied without chemical fertilizers: these parameter were enhanced up to 108, 95, 100, 131, 100 and 198%, respectively, when the strains were applied along with chemical fertilizers. It can be concluded that ACC-deaminase Pseudomonas bacterial strains applied alone and in conjunction with mineral fertilizers improved the root and shoot growth of maize seedlings grown in saline-sodic soil.
机译:盐度是阻碍世界各地玉米(Zea mays L.)生长的主要生物,尤其是在巴基斯坦。在盐分胁迫期间,植物中的内源乙烯水平增加,这阻碍了植物适当的根生长和随后的芽生长。但是,某些细菌包含1-氨基环丙烷-1-羧酸酯(ACC)脱氨酶,该酶将1-氨基环丙烷-1-羧酸(高等植物中乙烯生物合成的直接前体)转化为氨和α-酮丁酸酯而不是乙烯。在本研究中,分别对两种含有ACC脱氨酶的假单胞菌细菌菌株进行了测试,并与矿物肥料组合进行了测试,以确定它们在盐碱田条件下最小化/消除盐度对玉米植株的影响的潜力。播种后30、50和70天记录的数据表明,假单胞菌菌株均能提高根和茎长,根和茎鲜重以及根和茎干重达34、43、35、71、55和68不使用化肥施用时分别为%:当菌株与化肥一起施用时,这些参数分别提高到108、95、100、131、100和198%。可以得出结论,单独施用ACC脱氨酶假单胞菌细菌菌株并与矿物肥料配合使用可改善盐碱土壤中玉米幼苗的根和芽生长。

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