首页> 外文期刊>International Journal of Phytoremediation >Plant growth-promoting bacteria facilitate the growth of barley and oats in salt-impacted soil: implications for phytoremediation of saline soils.
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Plant growth-promoting bacteria facilitate the growth of barley and oats in salt-impacted soil: implications for phytoremediation of saline soils.

机译:促进植物生长的细菌促进大麦和燕麦在受盐影响的土壤中的生长:这对盐渍土壤的植物修复具有重要意义。

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Plant growth-promoting bacteria (PGPB) strains that contain the enzyme 1-amino- cyclopropane-1-carboxylate (ACC) deaminase can lower stress ethylene levels and improve plant growth. In this study, ACC deaminase-producing bacteria were isolated from a salt-impacted (~50 dS/m) farm field, and their ability to promote plant growth of barley and oats in saline soil was investigated in pouch assays (1% NaCl), greenhouse trials (9.4 dS/m), and field trials (6-24 dS/m). A mix of previously isolated PGPB strains UW3 (Pseudomonas sp.) and UW4 (P. sp.) was also tested for comparison. Rhizobacterial isolate CMH3 (P. corrugata) and UW3+UW4 partially alleviated plant salt stress in growth pouch assays. In greenhouse trials, CMH3 enhanced root biomass of barley and oats by 200% and 50%, respectively. UW3+UW4, CMH3 and isolate CMH2 also enhanced barley and oat shoot growth by 100%-150%. In field tests, shoot biomass of oats tripled when treated with UW3+UW4 and doubled with CHM3 compared with that of untreated plants. PGPB treatment did not affect salt uptake on a per mass basis; higher plant biomass led to greater salt uptake, resulting in decreased soil salinity. This study demonstrates a method for improving plant growth in marginal saline soils. Associated implications for salt remediation are discussed.
机译:含有1-氨基-环丙烷-1-羧酸酯(ACC)脱氨酶的植物促生细菌(PGPB)菌株可以降低胁迫乙烯水平并改善植物生长。在这项研究中,从受盐影响的农田(〜50 dS / m)中分离出产生ACC脱氨酶的细菌,并通过袋装试验(1%NaCl)研究了它们促进大麦和燕麦在盐渍土壤中植物生长的能力。 ,温室试验(9.4 dS / m)和田间试验(6-24 dS / m)。还测试了先前分离的PGPB菌株UW3(假单胞菌属)和UW4(P. sp。)的混合物以进行比较。根瘤菌分离株CMH3(P. corrugata)和UW3 + UW4在生长袋试验中部分缓解了植物盐胁迫。在温室试验中,CMH3分别将大麦和燕麦的根生物量提高了200%和50%。 UW3 + UW4,CMH3和分离株CMH2也使大麦和燕麦芽的生长提高了100%-150%。在野外试验中,与未处理的植物相比,用UW3 + UW4处理的燕麦芽生物量增加了三倍,而用CHM3处理的则增加了一倍。 PGPB处理不影响按质量计的盐吸收;较高的植物生物量导致更大的盐吸收,导致土壤盐分降低。这项研究证明了一种改善边缘盐渍土壤中植物生长的方法。讨论了盐修复的相关含义。

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