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转基因木薯根中铁的生物强化和稳态表达藻类铁吸收基因 FEA1。

Iron Biofortification and Homeostasis in Transgenic Cassava Roots Expressing the Algal Iron Assimilatory Gene, FEA1.

机构信息

Donald Danforth Plant Science Center St. Louis, MO, USA.

出版信息

Front Plant Sci. 2012 Sep 13;3:171. doi: 10.3389/fpls.2012.00171. eCollection 2012.

Abstract

We have engineered the tropical root crop cassava (Manihot esculenta) to express the Chlamydomonas reinhardtii iron assimilatory gene, FEA1, in its storage roots with the objective of enhancing the root nutritional qualities. Iron levels in mature cassava storage roots were increased from 10 to 36 ppm in the highest iron accumulating transgenic lines. These iron levels are sufficient to meet the minimum daily requirement for iron in a 500 g meal. Significantly, the expression of the FEA1 gene in storage roots did not alter iron levels in leaves. Transgenic plants also had normal levels of zinc in leaves and roots consistent with the specific uptake of ferrous iron mediated by the FEA1 protein. Relative to wild-type plants, fibrous roots of FEA1 expressing plants had reduced Fe (III) chelate reductase activity consistent with the more efficient uptake of iron in the transgenic plants. We also show that multiple cassava genes involved in iron homeostasis have altered tissue-specific patterns of expression in leaves, stems, and roots of transgenic plants consistent with increased iron sink strength in transgenic roots. These results are discussed in terms of strategies for the iron biofortification of plants.

摘要

我们通过基因工程手段,在热带作物木薯(Manihot esculenta)的块根中表达了莱茵衣藻(Chlamydomonas reinhardtii)的铁吸收基因 FEA1,以期提高块根的营养品质。在积累铁能力最高的转基因系中,成熟木薯块根中的铁含量从 10ppm 增加到 36ppm。这些铁含量足以满足 500g 膳食中铁的最低日需求量。值得注意的是,FEA1 基因在块根中的表达并未改变叶片中的铁含量。转基因植株的叶片和根系中的锌含量也正常,这与 FEA1 蛋白介导的亚铁的特异性吸收一致。与野生型植株相比,表达 FEA1 的植株的须根中铁(III)螯合物还原酶活性降低,这与转基因植株中铁的吸收效率更高有关。我们还表明,参与铁稳态的多个木薯基因在转基因植株的叶片、茎和根中的组织特异性表达模式发生了改变,这与转基因根中更强的铁汇强度一致。我们将根据这些结果讨论植物铁生物强化的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/affd/3440605/f89730a1da7e/fpls-03-00171-g001.jpg

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