Biofilm-forming plant growth-promoting rhizobacterial consortia isolated from mines and dumpsites assist green remediation of toxic metal (Ni and Pb) using Brassica juncea.

IF 1.8 4区 生物学 Q3 BIOLOGY
Biologia futura Pub Date : 2023-09-01 Epub Date: 2023-09-21 DOI:10.1007/s42977-023-00179-y
Sarita Sharma, Meenu Saraf
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引用次数: 0

Abstract

To study how biofilm-forming rhizobacteria isolated from mines and dumpsites improved the phytoremediation efficacy of B. juncea in metal-contaminated soil. Out of 91 isolates, six were chosen for research based on their tolerance to metals, and their efficient PGPR properties, and subjected to the design of a consortium. A compatibility study revealed no antagonistic interaction between rhizobacterial-consortiums. The results of the biofilm formation and FEG-SEM studies revealed that a consortium-BC8 formed a strong biofilm on the root surface of B. juncea seedlings. Based on results obtained with the phytoextraction efficiency of B. juncea in consortium-BC8 (SMHMZ46 and SMHMP23), they were identified as Klebsiella variicola and Pseudomonas otitidis, respectively, and submitted to NCBI GenBank with accession numbers MZ145092 and OK560623. This rhizobacteria is the first to be reported as assisting Ni and Pb phytoremediation by employing B. juncea. Soil inoculation with consortium-BC8 increased the amount of soluble Ni and Pb by 13.25-fold and 10.69-fold, respectively, when compared to the control. These consortiums-BC8 significantly increased vegetative growth and metal accumulation in root and shoot with a translocation-factor of 1.58 for Ni and soil to root with a bioconcentration-factor of 1.3 for Pb in B. juncea grown in individual soil contamination with 96.05 mg/kg NiCl2 and 89.63 mg/kg Pb(NO3)2, which are significantly higher than other consortium treatments and the non-inoculated control. B. juncea amendments with a biofilm-forming consortium-BC8 having TF, BCF, and BAC > 1 for Ni, whereas BCF > 1, TF, and BAC < 1 for Pb, are appropriate for green remediation of Ni and phytostabilization of Pb.

Abstract Image

从矿山和垃圾场分离出的形成生物膜的促进植物生长的根际细菌群落有助于使用芥菜对有毒金属(Ni和Pb)进行绿色修复。
研究从矿山和垃圾场分离出的形成生物膜的根际细菌如何提高芥子菜在金属污染土壤中的植物修复效果。在91个分离株中,根据其对金属的耐受性和有效的PGPR特性,选择了6个进行研究,并接受了联合体的设计。一项兼容性研究显示,根际细菌群落之间没有拮抗相互作用。生物膜的形成和FEG-SEM研究结果表明,BC8在芥菜幼苗的根表面形成了强大的生物膜。根据对芥菜B.juncea在联合体BC8(SMHMZ46和SMHMP23)中的植物提取效率的研究结果,它们分别被鉴定为变异克雷伯菌和奥蒂假单胞菌,并以登录号MZ145092和OK560623提交给NCBI GenBank。该根际细菌是第一个被报道通过使用芥菜芽孢杆菌来辅助Ni和Pb植物修复的根际细菌。与对照相比,接种BC8联合体的土壤中可溶性Ni和Pb的含量分别增加了13.25倍和10.69倍。这些群落-BC8显著增加了在96.05 mg/kg NiCl2和89.63 mg/kg Pb(NO3)2的单独土壤污染中生长的芥菜中的营养生长和根和地上部的金属积累,其中Ni的迁移因子为1.58,其显著高于其他联合体处理和未接种的对照。B.具有形成生物膜的复合体的酒渣鼻改良剂-BC8,具有TF、BCF和BAC > Ni为1,而BCF > 1、TF和BAC
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来源期刊
Biologia futura
Biologia futura Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
3.50
自引率
0.00%
发文量
27
期刊介绍: How can the scientific knowledge we possess now influence that future? That is, the FUTURE of Earth and life − of humankind. Can we make choices in the present to change our future? How can 21st century biological research ask proper scientific questions and find solid answers? Addressing these questions is the main goal of Biologia Futura (formerly Acta Biologica Hungarica). In keeping with the name, the new mission is to focus on areas of biology where major advances are to be expected, areas of biology with strong inter-disciplinary connection and to provide new avenues for future research in biology. Biologia Futura aims to publish articles from all fields of biology.
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