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烟碱酰胺在韧皮部中铁向植物的库器官的运输、花粉发育和花粉管生长中发挥作用。

Nicotianamine functions in the Phloem-based transport of iron to sink organs, in pollen development and pollen tube growth in Arabidopsis.

机构信息

Department of Biosciences-Botany, Saarland University, D-66123 Saarbrücken, Germany.

出版信息

Plant Cell. 2012 Jun;24(6):2380-400. doi: 10.1105/tpc.112.099077. Epub 2012 Jun 15.

Abstract

The metal chelator nicotianamine promotes the bioavailability of Fe and reduces cellular Fe toxicity. For breeding Fe-efficient crops, we need to explore the fundamental impact of nicotianamine on plant development and physiology. The quadruple nas4x-2 mutant of Arabidopsis thaliana cannot synthesize any nicotianamine, shows strong leaf chlorosis, and is sterile. To date, these phenotypes have not been fully explained. Here, we show that sink organs of this mutant were Fe deficient, while aged leaves were Fe sufficient. Upper organs were also Zn deficient. We demonstrate that transport of Fe to aged leaves relied on citrate, which partially complemented the loss of nicotianamine. In the absence of nicotianamine, Fe accumulated in the phloem. Our results show that rather than enabling the long-distance movement of Fe in the phloem (as is the case for Zn), nicotianamine facilitates the transport of Fe from the phloem to sink organs. We delimit nicotianamine function in plant reproductive biology and demonstrate that nicotianamine acts in pollen development in anthers and pollen tube passage in the carpels. Since Fe and Zn both enhance pollen germination, a lack of either metal may contribute to the reproductive defect. Our study sheds light on the physiological functions of nicotianamine.

摘要

金属螯合剂烟酰胺促进铁的生物利用度并降低细胞铁毒性。为了培育高效铁作物,我们需要探索烟酰胺对植物发育和生理的基本影响。拟南芥的 quadruple nas4x-2 突变体不能合成任何烟酰胺,表现出强烈的叶片黄化和不育。迄今为止,这些表型尚未得到充分解释。在这里,我们表明该突变体的汇器官缺铁,而衰老叶片中的铁含量充足。上部器官也缺锌。我们证明铁向衰老叶片的运输依赖于柠檬酸,这部分弥补了烟酰胺的缺乏。在没有烟酰胺的情况下,铁在韧皮部中积累。我们的结果表明,烟酰胺不是促进铁在韧皮部中的长距离运输(就像锌一样),而是促进铁从韧皮部向汇器官的运输。我们限定了烟酰胺在植物生殖生物学中的功能,并证明烟酰胺在花药中的花粉发育和雌蕊中的花粉管通过中起作用。由于铁和锌都能增强花粉萌发,因此缺乏任何一种金属都可能导致生殖缺陷。我们的研究阐明了烟酰胺的生理功能。

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