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草甘膦对缺铁向日葵根系中铁还原酶活性的抑制作用。

Glyphosate inhibition of ferric reductase activity in iron deficient sunflower roots.

作者信息

Ozturk Levent, Yazici Atilla, Eker Selim, Gokmen Ozgur, Römheld Volker, Cakmak Ismail

机构信息

Faculty of Engineering and Natural Sciences, Sabanci University, TUR-34956 Istanbul, Turkey.

Department of Soil Science, Faculty of Agriculture, Cukurova University, TUR-01330 Adana, Turkey.

出版信息

New Phytol. 2008;177(4):899-906. doi: 10.1111/j.1469-8137.2007.02340.x. Epub 2007 Dec 20.

Abstract

Iron (Fe) deficiency is increasingly being observed in cropping systems with frequent glyphosate applications. A likely reason for this is that glyphosate interferes with root uptake of Fe by inhibiting ferric reductase in roots required for Fe acquisition by dicot and nongrass species. This study investigated the role of drift rates of glyphosate (0.32, 0.95 or 1.89 mm glyphosate corresponding to 1, 3 and 6% of the recommended herbicidal dose, respectively) on ferric reductase activity of sunflower (Helianthus annuus) roots grown under Fe deficiency conditions. Application of 1.89 mm glyphosate resulted in almost 50% inhibition of ferric reductase within 6 h and complete inhibition 24 h after the treatment. Even at lower rates of glyphosate (e.g. 0.32 mm and 0.95 mm), ferric reductase was inhibited. Soluble sugar concentration and the NAD(P)H oxidizing capacity of apical roots were not decreased by the glyphosate applications. To our knowledge, this is the first study reporting the effects of glyphosate on ferric reductase activity. The nature of the inhibitory effect of glyphosate on ferric reductase could not be identified. Impaired ferric reductase could be a major reason for the increasingly observed Fe deficiency in cropping systems associated with widespread glyphosate usage.

摘要

在频繁使用草甘膦的种植系统中,铁(Fe)缺乏现象日益普遍。一个可能的原因是,草甘膦通过抑制双子叶植物和非禾本科植物获取铁所需的根部铁还原酶,干扰了铁的根部吸收。本研究调查了草甘膦漂移率(分别为0.32、0.95或1.89毫米草甘膦,对应推荐除草剂量的1%、3%和6%)对缺铁条件下生长的向日葵(Helianthus annuus)根部铁还原酶活性的影响。施用1.89毫米草甘膦在6小时内导致铁还原酶活性几乎被抑制50%,处理后24小时完全被抑制。即使在较低的草甘膦用量(如0.32毫米和0.95毫米)下,铁还原酶也受到抑制。草甘膦处理并未降低根尖的可溶性糖浓度和NAD(P)H氧化能力。据我们所知,这是第一项报道草甘膦对铁还原酶活性影响的研究。草甘膦对铁还原酶抑制作用的性质尚无法确定。铁还原酶受损可能是与草甘膦广泛使用相关的种植系统中缺铁现象日益普遍的主要原因。

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