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砷对砷超富集植物蜈蚣草叶绿体超微结构及钙分布的影响

Effect of arsenic on chloroplast ultrastructure and calcium distribution in arsenic hyperaccumulator Pteris vittata L.

作者信息

Li Wen-Xue, Chen Tong-Bin, Huang Ze-Chun, Lei Mei, Liao Xiao-Yong

机构信息

Center for Environmental Remediation, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, 11A Datun Road, Beijing 100101, PR China.

出版信息

Chemosphere. 2006 Feb;62(5):803-9. doi: 10.1016/j.chemosphere.2005.04.055. Epub 2005 Jun 21.

Abstract

This study investigated the impacts of arsenic (As) on the chloroplast ultrastructure and calcium (Ca) distribution in Chinese brake (Pteris vittata L.) mainly by histochemical methods, with an emphasis on the possible function of Ca in As detoxification and accumulation in P. vittata. P. vittata was grown in an artificially contaminated soil added with different concentrations of Na(2)HAsO(4) (0, 100, 300 and 800 mg kg(-1) As dry soil) for 24 weeks in a greenhouse. The addition of As did not affect the chloroplast ultrastructure of young pinna, meanwhile most of the membrane systems of chloroplasts in mature pinna were severely damaged under high As condition. Calcium concentration in the fronds of P. vittata was not significantly affected by the addition of As, but Ca concentration in the mature pinna significantly increased by As addition, consistent with the position appearing As toxicity. When no As was added, most of calcium precipitates distributed around the inner membrane of vacuole. But when the pinna appeared plasmolysis, more calcium precipitates resided outside the cell membrane and bigger particles evenly distributed in the cytoplasm. All the results indicated that Ca had a close relation with As toxicity in P. vittata.

摘要

本研究主要通过组织化学方法,研究了砷(As)对蜈蚣草(Pteris vittata L.)叶绿体超微结构和钙(Ca)分布的影响,重点探讨了Ca在蜈蚣草As解毒和积累过程中的可能作用。将蜈蚣草种植在添加了不同浓度Na₂HAsO₄(0、100、300和800 mg kg⁻¹ As干土)的人工污染土壤中,在温室中培养24周。添加As对幼叶的叶绿体超微结构没有影响,而在高As条件下,成熟叶中大多数叶绿体的膜系统受到严重破坏。添加As对蜈蚣草叶片中的Ca浓度没有显著影响,但添加As后成熟叶中的Ca浓度显著增加,这与出现As毒性的部位一致。未添加As时,大多数钙沉淀分布在液泡内膜周围。但当叶片出现质壁分离时,更多的钙沉淀位于细胞膜外,较大颗粒均匀分布在细胞质中。所有结果表明,Ca与蜈蚣草中的As毒性密切相关。

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