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A multifunctional rhizobacterial strain with wide application in different ferns facilitates arsenic phytoremediation

机译:多功能根瘤菌菌株在不同蕨类植物中的广泛应用促进了砷的植物修复

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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 (OD_(600nm) = 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.
机译:作为一种主要通过根吸收As的超蓄积物,广泛研究了Pteris vittata和Pteris multifida。因此,根瘤菌由于其巨大的微生物多样性和与植物的相互作用而在植物提取中显示出有希望的潜力。通过高As抗性(对As(III)的最低抑菌浓度(MIC):16 mM;对As(V)的MICs:320 mM),从多歧疟原虫的根际中筛选出含有aioA样基因的温哥华假单胞菌菌株m318。作为氧化(在24小时内从200μL的0.1 mM As(III)中被细菌培养物(OD_(600nm)= 1)氧化为98%),主要分泌IAA(12.45 mg L〜(-1))和铁载体(铁载体单位:88%)。 m318菌株表现出显着的趋化性反应,并且对斑节对虾根的定殖效率很高,表明其具有广泛的宿主亲和力。有趣的是,用菌株m318接种可增加根际中aioA样基因的比例。在田间试验中,菌株m318的接种使Vi.ta体内的As积累增加了48-146%,而Multifida的As积累则增加了42-233%。移植后的接种也增加了两个蕨类植物的砷积累。因此推测分离的多功能菌株m318的能力和根际微生物aioA样基因的增加参与了P. vittata和P. multifida的根际和根的As转化。

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  • 来源
    《The Science of the Total Environment》 |2020年第10期|134504.1-134504.11|共11页
  • 作者

  • 作者单位

    Graduate School of Environmental Studies Tohoku University Aramaki Aoba-ku 6-6-20 Aoba Sendai 980-8579 Japan;

    Graduate School of Environmental Studies Tohoku University Aramaki Aoba-ku 6-6-20 Aoba Sendai 980-8579 Japan Institute of Marine Biology and Center of Excellence for the Oceans National Taiwan Ocean University 2 Pei-Ning Road Keelung 20224 Taiwan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Arsenic; Phytoremediation; Rhizobacteria; Pteris vittata; Pteris multifida; aioA-like genes;

    机译:砷;植物修复;根瘤菌;凤尾蕨;凤尾蕨;类AioA基因;

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