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首页> 外文期刊>Journal of environmental sciences >Uptake and transformation of arsenic during the reproductive life stage of Agaricus bisporus and Agaricus campestris
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Uptake and transformation of arsenic during the reproductive life stage of Agaricus bisporus and Agaricus campestris

机译:双孢蘑菇和野蘑菇的生殖生命期砷的吸收和转化

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Fruiting bodies from the Agaricus genus have been found to contain non-toxic arsenobetaine (AB) as a major compound. It is unknown whether AB is formed during the vegetative or reproductive life stages of the fungus, or by the surrounding microbial community, but AB's structural similarity to glycine betaine has led to the hypothesis that AB may be adventitiously accumulated as an osmolyte. To investigate the potential formation of AB during the reproductive life stage of Agaricus species, growth substrate and fungi were collected during the commercial growth of Agaricus bisporus and analyzed for arsenic speciation using HPLC-ICP-MS. AB was found to be the major arsenic compound in the fungus at the earliest growth stage of fruiting (the primordium). The growth substrate mainly contained arsenate (As(V)). The distribution of arsenic in an A. bisporus primordium grown on As(V) treated substrate, and in a mature Agaricus campestris fruiting body collected from arsenic contaminated mine tailings, was mapped using two dimensional XAS imaging. The primordium and stalk of the mature fruiting body were both found to be growing around pockets of substrate material containing higher As concentrations, and AB was found exclusively in the fungal tissues. In the mature A. campestris the highest proportion of AB was found in the cap, supporting the AB as an osmolyte hypothesis. The results have allowed us to pinpoint the fungus life stage at which AB formation takes place, namely reproduction, which provides a direction for further research. (C) 2016 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:已发现姬松茸属的子实体含有无毒的砷甜菜碱(AB)作为主要化合物。尚不清楚AB是在真菌的营养或生殖生命阶段形成还是由周围的微生物群落形成,但AB与甘氨酸甜菜碱的结构相似性导致了这样一个假设,即AB可能会偶然渗透成渗透压。为了研究姬松茸菌在生殖生命阶段中AB的潜在形成,在双孢蘑菇的商业生长过程中收集了生长底物和真菌,并使用HPLC-ICP-MS分析了砷的形态。在结实最早的阶段(原基),发现AB是真菌中的主要砷化合物。生长基质主要包含砷酸盐(As(V))。使用二维XAS成像技术绘制了在经As(V)处理的基质上生长的双孢蘑菇原基中以及从受砷污染的矿山尾矿中收集的成熟姬松茸子实体中砷的分布图。发现成熟子实体的原基和茎都在含有较高As浓度的底物材料的口袋周围生长,而AB仅在真菌组织中发现。在成熟的桔梗中,在瓶盖中发现了最高比例的AB,支持A​​B作为渗透压假说。结果使我们能够准确地确定发生AB形成的真菌生命阶段,即繁殖,这为进一步研究提供了方向。 (C)2016中国科学院生态环境研究中心。由Elsevier B.V.发布

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