首页> 外文期刊>Land Degradation and Development >CHARACTERIZATION OF BURKHOLDERIA SP XTB-5 FOR PHENOL DEGRADATION AND PLANT GROWTH PROMOTION AND ITS APPLICATION IN BIOREMEDIATION OF CONTAMINATED SOIL
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CHARACTERIZATION OF BURKHOLDERIA SP XTB-5 FOR PHENOL DEGRADATION AND PLANT GROWTH PROMOTION AND ITS APPLICATION IN BIOREMEDIATION OF CONTAMINATED SOIL

机译:苯酚降解和植物生长促进的Burkholderia SP XTB-5的表征及其在受污染土壤生物修复中的应用

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A key issue when researching land degradation is the pollution of soils. For bioremediation of contaminated soil, Burkholderia sp. XTB-5 cells were obtained from soil and grown on mineral salt medium with initial phenol concentrations of 650 mg L-1 and 850 mg L-1, which were found to degrade more than 98% of phenol content in less than 4 days. About 90% of phenol content (with initial concentration of 250 mg kg(-1) soil) was removed from soil inoculated with XTB-5 cells in 6 days. More than 90% of phenol content was removed within 20 days after co-introduction of XTB-5 cells and plants to sterilized soil in a greenhouse or to natural soil in field trials. But under the same conditions, individual introduction of plants to sterilized soil in the greenhouse reduced phenol content by about 50% and introduction to natural soil in field trials reduced phenol content by about 38%, suggesting that phytoremediation of phenol is often inefficient and microorganisms can efficiently degrade this pollutant. In addition, strain XTB-5 was found to solubilize phosphate and produce 1-Aminocyclopropane-1-Carboxylate (ACC) deaminase and siderophore. Strain XTB-5 promoted plant growth in both phenol-absent and phenol-spiked soil under greenhouse and field conditions. Considering that ACC deaminase is beneficial to plant growth under adverse environmental conditions, plant growth promotion by XTB-5 in phenol-contaminated soil is not only due to XTB-5 cell-degradation of phenol and reduced phytotoxicity but also to production of ACC deaminase. Hence, Burkholderia sp. XTB-5 presents an attractive microorganism for phytoremediation of contaminated soil and agronomic application. Copyright (C) 2016 John Wiley & Sons, Ltd.
机译:研究土地退化时的关键问题是土壤的污染。对于污染土壤的生物修复,Burkholderia SP。从土壤中获得XTB-5细胞,并在矿物盐培养基上生长,初始酚浓度为650mg L-1和850mg L-1,其发现在少于4天内降解98%的苯酚含量。在6天内从接种XTB-5细胞的土壤中除去约90%的苯酚含量(初始浓度为250mg kg(-1)土壤)。在将XTB-5细胞和植物共同引入温室中的灭菌土壤或实地试验中的天然土壤后20天内除去超过90%的苯酚含量。但在相同的条件下,各自引入植物在温室中灭菌土壤将酚含量降低约50%,并在现场试验中的天然土壤引入苯酚含量约为38%,表明苯酚的植物化通常是低效率和微生物有效降解这种污染物。此外,发现菌株XTB-5溶解磷酸盐并产生1-氨基环丙烷-1-羧酸盐(ACC)脱氨酶和二手道。菌株XTB-5在温室和现场条件下促进酚缺席和酚掺入土壤中的植物生长。考虑到ACC脱氨酶在不良环境条件下植物生长有利于植物生长,酚醛污染土壤中的植物生长促进不仅是由于苯酚的XTB-5细胞降解和降低的植物毒性,而且还对ACC脱氨酶的产生。因此,Burkholderia SP。 XTB-5为污染的土壤和农艺应用提出了一种诱人的微生物,植物修复。版权所有(c)2016 John Wiley& SONS,LTD.

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