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缺铁诱导 bHLH104 的表达增强了拟南芥对缺铁的耐受性。

Fe-deficiency-induced expression of bHLH104 enhances Fe-deficiency tolerance of Arabidopsis thaliana.

机构信息

Key Laboratory of Tropical Plant Resources and Sustainable Use, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Kunming, Yunnan, 650223, China.

University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Planta. 2017 Sep;246(3):421-431. doi: 10.1007/s00425-017-2703-y. Epub 2017 Apr 27.

Abstract

Expression of bHLH104 - GFP driven by the MYB72 promoter improves plants' tolerance to Fe deficiency and increases seed Fe concentrations. Iron (Fe) deficiency causes reduced crop yield and quality. In humans, Fe deficiency is directly associated with Fe-deficiency anemia. Therefore, breeding Fe-deficiency tolerant and Fe-enriched plants are an ideal approach to deal with these problems. Here, different strategies were explored to generate Fe-deficiency tolerant and Fe-enriched plants. Unexpectedly, the overexpression of Fe-deficiency responsive genes (IRT1, MYB72, and bHLH100) resulted in enhanced sensitivity to Fe deficiency, including leaf chlorosis and short roots under Fe-deficiency conditions. Next, three different types of Fe-deficiency responsive promoters (Pro , Pro and Pro ) were used to drive the expression of bHLH104-GFP fusion gene in Arabidopsis. Pro :bHLH104-GFP plants showed the enhanced sensitivity to Fe deficiency on Fe-deficient media and the reduced fertility in alkaline soil. In contrast, Pro :bHLH104-GFP plants displayed a slight tolerance to Fe deficiency and Pro :bHLH104-GFP plants had a significant advantage in growth in alkaline soil, including increased root length, chlorophyll, and biomass. Further analysis revealed that the expression of Fe-deficiency responsive genes was dramatically upregulated in both Pro :bHLH104-GFP and Pro :bHLH104-GFP plants under Fe-deficiency conditions. When grown in alkaline soil, Pro :bHLH104-GFP plants greatly improved the seed yield and Fe concentration. These results are fundamental for plant manipulation approaches to modify tolerance to Fe deficiency and Fe accumulation through alterations of bHLH104 gene expression.

摘要

bHLH104-GFP 表达受 MYB72 启动子驱动可提高植物对缺铁的耐受性并增加种子铁浓度。缺铁会导致作物产量和质量下降。在人类中,缺铁直接与缺铁性贫血有关。因此,培育缺铁耐性和富铁植物是解决这些问题的理想方法。在这里,探索了不同的策略来生成缺铁耐性和富铁植物。出乎意料的是,铁响应基因(IRT1、MYB72 和 bHLH100)的过表达导致对缺铁的敏感性增强,包括缺铁条件下叶片黄化和根系变短。接下来,使用三种不同类型的缺铁响应启动子(Pro 、Pro 和 Pro )在拟南芥中驱动 bHLH104-GFP 融合基因的表达。Pro :bHLH104-GFP 植物在缺铁培养基上表现出对缺铁的敏感性增强,在碱性土壤中的繁殖力降低。相比之下,Pro :bHLH104-GFP 植物对缺铁具有轻微的耐受性,Pro :bHLH104-GFP 植物在碱性土壤中的生长具有显著优势,包括根长、叶绿素和生物量增加。进一步分析表明,在缺铁条件下,Pro :bHLH104-GFP 和 Pro :bHLH104-GFP 植物中的铁响应基因表达均显著上调。在碱性土壤中生长时,Pro :bHLH104-GFP 植物大大提高了种子产量和铁浓度。这些结果为通过改变 bHLH104 基因表达来修饰植物对缺铁和铁积累的耐受性提供了基础。

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