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Silicon isotope study on rice plants from the Zhejiang province, China

机译:中国浙江省水稻植物的硅同位素研究

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Silicon isotope compositions of 16 rice plants from the Zhejiang province were studied, and potential applications of silicon isotope study to agriculture and biogeochemistry were discussed.It is found that the SiO2 contents in ignited rice plant samples increased generally from roots, through SL (stem and leaves), to husks. Large and systematic silicon isotope fractionation was observed among different organs of individual rice plants. Their delta(30)Si values show a generally increasing trend from roots and SL, through husks, to grains, which can be explained by kinetic isotope fractionation in a Rayleigh process. A delta(30)Si value of 6.1 parts per thousand was obtained from two samples of rice grains, which is much greater than the highest value (3.4 parts per thousand) observed in terrestrial samples before.It is inferred that monosilicic acid is the major silicon-bearing component taken up by rice roots. Passive uptake of silicon is important for rice and evapotranspiration may be the major mechanism for the transportation and precipitation of silicon in rice plants. It is suggested that silicon isotope study has a potential application to agriculture and biogeochemistry. (c) 2005 Elsevier B.V All rights reserved.
机译:对浙江省16种水稻的硅同位素组成进行了研究,并探讨了其在农业和生物地球化学中的潜在应用,发现被点燃的水稻样品中的SiO2含量通常从根部到SL(茎和叶子),去壳。在单个水稻植株的不同器官之间观察到大而系统的硅同位素分级分离。它们的delta(30)Si值显示出从根和SL到果壳到谷物的总体趋势,这可以通过瑞利过程中的动力学同位素分馏来解释。从两个稻谷样品中获得的Delta(30)Si值为每千份6.1份,这比之前在陆地样品中观察到的最高值(每千份3.4份)要大得多。据推断,单硅酸是主要的水稻根部吸收的含硅成分。硅的被动吸收对水稻很重要,蒸散可能是水稻中硅运输和沉淀的主要机理。研究表明,硅同位素研究在农业和生物地球化学中具有潜在的应用前景。 (c)2005 Elsevier B.V保留所有权利。

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