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用于石油烃污染土壤植物修复的苜蓿(紫花苜蓿)和石油烃驯化的含ACC脱氨酶细菌的融合

Converging alfalfa ( L.) and petroleum hydrocarbon acclimated ACC-deaminase containing bacteria for phytoremediation of petroleum hydrocarbon contaminated soil.

作者信息

Rafique Hafiz Muhammad, Khan Muhammad Yahya, Asghar Hafiz Naeem, Ahmad Zahir Zahir, Nadeem Sajid Mehmood, Sohaib Muhammad, Alotaibi Fahad, Al-Barakah Fahad N I

机构信息

Institute of Soil and Environmental Sciences, University of Agriculture, Faisalabad, Pakistan.

Office of Senior Scientist (Agriculture Chemistry) Muzaffar Garh, Muzaffar Garh, Pakistan.

出版信息

Int J Phytoremediation. 2023;25(6):717-727. doi: 10.1080/15226514.2022.2104214. Epub 2022 Aug 2.

Abstract

Plant assisted bioremediation of petroleum hydrocarbon contaminated soil is considered an effective green technology whereby accelerated degradation occurs due to converged effect of microorganisms and plants. However, survival and growth of microbes and plants under stress conditions is challenging task for success of the technology. In this study, plant growth promoting bacteria containing 1-aminocyclopropane-1-carboxylate (ACC)-deaminase activity and tolerance to petroleum hydrocarbon contamination were used in association with alfalfa for bioremediation of petroleum hydrocarbon contaminated soil. Eight pre-isolated bacterial isolates from soil having previous history of petroleum contamination were used in convergence with alfalfa on sand soil which was artificially contaminated (10 g crude oil per kg of coarse textured soil). Combined effect of bacteria and plants on the degradation of petroleum hydrocarbons under controlled conditions of light and temperature was observed for a period of 60 days. The results of the study revealed that four bacterial isolates strain PM32Y, strain WZ3S1, sp. strain SM73 and sp. strain WZ3S3 in association with alfalfa significantly degraded petroleum hydrocarbons. The most significant biodegradation (47%) of petroleum hydrocarbons was recorded in the experimental unit receiving PM32Y inoculation in association with alfalfa. Biodegradation of petroleum hydrocarbons was 33% with alone inoculation (without alfalfa) of PM32Y. The study revealed that combined use of bacteria and alfalfa plant is more efficient than alone application of either bacteria or plants for degradation of petroleum hydrocarbons.

摘要

植物辅助生物修复石油烃污染土壤被认为是一种有效的绿色技术,由于微生物和植物的协同作用,可加速石油烃的降解。然而,在胁迫条件下微生物和植物的存活与生长是该技术成功实施面临的一项具有挑战性的任务。在本研究中,将含有1-氨基环丙烷-1-羧酸(ACC)脱氨酶活性且耐受石油烃污染的植物促生细菌与紫花苜蓿联合用于石油烃污染土壤的生物修复。从曾遭受石油污染的土壤中预先分离出8株细菌菌株,将其与紫花苜蓿一起用于人工污染(每千克质地较粗的土壤含10克原油)的沙土的生物修复。在光照和温度可控的条件下,观察细菌和植物对石油烃降解的联合作用,为期60天。研究结果表明,4株细菌菌株(PM32Y菌株、WZ3S1菌株、SM73菌株和WZ3S3菌株)与紫花苜蓿联合能显著降解石油烃。在接种PM32Y菌株与紫花苜蓿的实验单元中,石油烃的生物降解率最高(47%)。单独接种(不种植紫花苜蓿)PM32Y菌株时,石油烃的生物降解率为33%。该研究表明,细菌与紫花苜蓿联合使用比单独使用细菌或植物降解石油烃更有效。

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