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铬酸盐对玉米(Zea mays (L.))中高亲和力硫酸盐转运蛋白的表达以及硫酸盐同化途径组分的同工型有不同影响。

Chromate differentially affects the expression of a high-affinity sulfate transporter and isoforms of components of the sulfate assimilatory pathway in Zea mays (L.).

作者信息

Schiavon M, Wirtz M, Borsa P, Quaggiotti S, Hell R, Malagoli M

机构信息

Department of Agricultural Biotechnologies, University of Padua, Agripolis, 35020 Legnaro (Padua), Italy.

出版信息

Plant Biol (Stuttg). 2007 Sep;9(5):662-71. doi: 10.1055/s-2007-965440.

Abstract

In this study the chromate accumulation and tolerance were investigated in ZEA MAYS L. in relation to sulfur availability since sulfate may interact with chromate for transport into the cells. Chromate inhibited sulfate uptake when supplied to plants for a short-term period, whereas phosphate uptake remained unchanged. Sulfate absorption was also reduced in S-starved (-S) and S-supplied (+S) plants treated for 2 d with 0.2 mM chromate and the concomitant repression of the root high-affinity sulfate root transporter ZMST1;1 transcript accumulation was observed. Conversely, the plasma membrane H (+)-ATPase MHA2 was unaffected by chromate in +S plants, allowing to exclude a general effect of chromate on the active membrane transport. As observed for sulfate uptake, chromate uptake was enhanced in -S condition and decreased in both +S and -S plants after 2 d of Cr treatment. Chromate reduced the concentration of sulfur and sulfate in +S plants to the basal level of -S plants, and maximum chromium accumulation was recorded in S-deprived plants. Analysis of transcript abundance of genes involved in sulfate assimilation revealed differential regulation by chromate, which was only partly related to sulfur availability and to the levels of thiols. This work shows for the first time that chromate specifically represses sulfate uptake, and such repression occurs without the implication of the candidate regulatory metabolites of the sulfate transport system in plants.

摘要

在本研究中,鉴于硫酸盐可能与铬酸盐相互作用以转运至细胞内,因此研究了玉米中铬酸盐的积累及耐受性与硫有效性之间的关系。短期向植物供应铬酸盐时,其会抑制硫酸盐的吸收,而磷酸盐的吸收则保持不变。用0.2 mM铬酸盐处理2天的缺硫(-S)和供硫(+S)植物中,硫酸盐的吸收也减少了,同时观察到根高亲和硫酸盐根转运体ZMST1;1转录物积累受到抑制。相反,在+S植物中,质膜H(+) -ATP酶MHA2不受铬酸盐影响,这排除了铬酸盐对主动膜运输的普遍影响。正如在硫酸盐吸收中观察到的那样,在缺硫条件下铬酸盐吸收增加,而在铬处理2天后,+S和 -S植物中的铬酸盐吸收均减少。铬酸盐将+S植物中硫和硫酸盐的浓度降低至 -S植物的基础水平,并且在缺硫植物中记录到最大的铬积累量。对参与硫酸盐同化的基因转录丰度分析表明,铬酸盐对其有不同的调控作用,这仅部分与硫有效性和硫醇水平有关。这项工作首次表明,铬酸盐特异性抑制硫酸盐吸收,并且这种抑制作用的发生与植物中硫酸盐转运系统的候选调控代谢物无关。

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