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請用此 Handle URI 來引用此文件: http://scholars.ntou.edu.tw/handle/123456789/3803
標題: A multifunctional rhizobacterial strain with wide application in different ferns facilitates arsenic phytoremediation
作者: Chongyang Yang
Ying-Ning Ho 
Ryota Makita
Chihiro Inoue
Mei-Fang Chien
關鍵字: arsenic;phytoremediation;rhizobacteria;pteris vittata;Pteris multifida;aioA-like genes
公開日期: 10-四月-2020
出版社: Elsevier
卷: 712
起(迄)頁: 134504
來源出版物: Science of the Total Environment
摘要: 
Pteris vittata and Pteris multifida are widely studied As hyperaccumulators that absorb As mainly via roots. Hence, rhizobacteria exhibit promising potential in phytoextraction owing to their immense microbial diversity and interactions with plants. Pseudomonas vancouverensis strain m318 that contains aioA-like genes was screened from P. multifida’s rhizosphere through the high As resistance (minimum inhibitory concentrations (MICs) against As(III): 16 mM; MICs against As(V): 320 mM), rapid As oxidation (98% oxidation by bacterial cultures (OD600nm = 1) from 200 μL of 0.1 mM As(III) within 24 h), predominant secretion of IAA (12.45 mg L−1) and siderophores (siderophore unit: 88%). Strain m318 showed significant chemotactic response and high colonization efficiency to P. vittata roots, which suggested its wide host affinity. Interestingly, inoculation with strain m318 enhanced the proportion of aioA-like genes in the rhizosphere. And in field trials, inoculation with strain m318 increased As accumulation in P. vittata by 48–146% and in P. multifida by 42–233%. Post-transplantation inoculations also increased As accumulation in both ferns. The abilities of the isolated multifunctional strain m318 and the increase in the rhizosphere microbial aioA-like genes are thus speculated to be involved in As transformation in the rhizospheres and roots of P. vittata and P. multifida.
URI: http://scholars.ntou.edu.tw/handle/123456789/3803
ISSN: 0048-9697
DOI: 10.1016/j.scitotenv.2019.1114504
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