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在重金属污染土壤中,产胞外多糖的肠杆菌属RZS5菌株对植物生长的促进作用及根系定殖

Plant growth promotion and root colonization by EPS producing Enterobacter sp. RZS5 under heavy metal contaminated soil.

作者信息

Sayyed R Z, Patel P R, Shaikh S S

出版信息

Indian J Exp Biol. 2015 Feb;53(2):116-23.

Abstract

The heavy metal resistant bacterium isolated from field soil and identified as Enterobacter sp. RZS5 tolerates a high concentration (100-2000 μM) of various heavy metal ions such as Mn2+, Ni2+, Zn2+, Cu2+, CO2+ and Fe2+ when grown in such environment and produces exopolysaccharides (EPS). Here, we have demonstrated EPS production by Enterobacter sp. RZS5 during 60 h of growth in yeast extract mannitol broth (YEMB). The yield increased by two fold after the addition of 60 μM of Ca2+; 50 μM of Fe2+ and 60 μM of Mg2+ ions in YEMB, and the optimization of physico-chemical parameters. EPS was extracted with 30% (v/v) of isopropanol as against the commonly used 50% (v/v) isopropanol method. EPS-rich broth promoted seed germination, shoot height, root length, number of leaves and chlorophyll content of wheat (Triticum aestivum) seed and peanut (Arachis hypogaea) seed. The higher colony-forming unit of Enterobacter sp. in soil inoculated with EPS rich broth of Enterobacter sp. indicated the root colonizing potential and rhizosphere competence of the isolate. The FTIR spectra of the EPS extract confirmed the presence of the functional group characteristics of EPS known to exhibit a high binding affinity towards certain metal ions. This overall growth and vigour in plants along with the effective root colonization, reflected the potential of the isolate as an efficient bio-inoculant in bioremediation.

摘要

从田间土壤中分离出的重金属抗性细菌被鉴定为肠杆菌属RZS5,当在这种环境中生长时,它能耐受高浓度(100 - 2000 μM)的各种重金属离子,如Mn2 +、Ni2 +、Zn2 +、Cu2 +、CO2 +和Fe2 +,并产生胞外多糖(EPS)。在此,我们证明了肠杆菌属RZS5在酵母提取物甘露醇肉汤(YEMB)中生长60小时期间产生EPS。在YEMB中添加60 μM的Ca2 +、50 μM的Fe2 +和60 μM的Mg2 +离子并优化理化参数后,产量提高了两倍。与常用的50%(v/v)异丙醇方法相比,EPS是用30%(v/v)的异丙醇提取的。富含EPS的肉汤促进了小麦(Triticum aestivum)种子和花生(Arachis hypogaea)种子的发芽、茎高、根长、叶片数量和叶绿素含量。接种富含肠杆菌属EPS肉汤的土壤中肠杆菌属的菌落形成单位较高,表明该分离株具有根定殖潜力和根际竞争能力。EPS提取物的傅里叶变换红外光谱(FTIR)证实了已知对某些金属离子具有高结合亲和力的EPS官能团特征的存在。植物的这种总体生长和活力以及有效的根定殖,反映了该分离株作为生物修复中高效生物接种剂的潜力。

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