首页> 外文期刊>The Science of the Total Environment >Characterization of Trichoderma asperellum RM-28 for its sodic/saline-alkali tolerance and plant growth promoting activities to alleviate toxicity of red mud
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Characterization of Trichoderma asperellum RM-28 for its sodic/saline-alkali tolerance and plant growth promoting activities to alleviate toxicity of red mud

机译:鉴定曲霉木霉RM-28的钠/盐碱耐受性和促进植物生长的活性以减轻赤泥的毒性

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摘要

Red mud (RM) is a highly alkaline, saline and sodic solid by-product released by alumina industries, which pose an economical and environmental problem and establishment of vegetation on these sites is a big challenge. In the present study, a fungus RM-28 exhibiting high tolerance to alkaline (pH 12), saline/sodic (NaCl 4%) was isolated from RM flooded rhizosphere soil of bermudagrass and tested its ability to reduce RM toxicity and promote the growth of sorghum-sudangrass seedlings. This fungus also exhibited high tolerance to heavy metal(loid)s (HMs) and desirable plant growth-promoting traits. This fungus was identified as Trichoderma asperellum based on its internal transcribed spacer (ITS) of rDNA and translation elongation factor-1 alpha (TEF 1 alpha) gene analysis. This fungus was effective in reducing the pH and solubilizing tricalcium phosphate under high alkaline and saline conditions in vitro. Further, RM-28 inoculation significantly lowered the pH and EC of the red mud from 11.8 to 8.2 and 2.23 to 1.42, respectively. Inoculation of RM-28 significantly improved the growth, chlorophyll content and reduced the oxidative stress of sorghum-sudangrass seedlings grown in red mud leachate. These observations suggest that T. asperellum RM-28 serves as potential source for the establishment of vegetation on red mud/red mud contaminated soils. (C) 2019 Elsevier B.V. All rights reserved.
机译:赤泥(RM)是氧化铝行业释放的高碱性,盐分和钠固体副产品,这带来了经济和环境问题,在这些地点建立植被是一个巨大的挑战。在本研究中,从百草枯的RM淹没根际土壤中分离出对碱(pH 12),盐/钠(NaCl 4%)具有高耐受性的真菌RM-28,并测试了其降低RM毒性并促进其生长的能力。高粱-苏丹草幼苗。这种真菌还表现出对重金属(HMs)的高度耐受性和理想的促进植物生长的性状。根据该真菌的rDNA内部转录间隔子(ITS)和翻译延伸因子1 alpha(TEF 1 alpha)基因分析,将该真菌鉴定为曲霉木霉。这种真菌可有效降低pH值,并在高碱性和盐水条件下增溶磷酸三钙。此外,RM-28接种显着将赤泥的pH和EC分别从11.8降低至8.2和2.23降低至1.42。接种RM-28可以显着改善红泥渗滤液中生长的高粱-苏丹草幼苗的生长,叶绿素含量并降低其氧化应激。这些观察结果表明,曲霉T. Asperellum RM-28可作为在红泥/红泥污染土壤上建立植被的潜在来源。 (C)2019 Elsevier B.V.保留所有权利。

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