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一种bHLH转录因子在菊花缺铁时调节铁的摄取。

A bHLH transcription factor regulates iron intake under Fe deficiency in chrysanthemum.

作者信息

Zhao Min, Song Aiping, Li Peiling, Chen Sumei, Jiang Jiafu, Chen Fadi

机构信息

College of Horticulture, Nanjing Agricultural University, Nanjing 210095, China.

出版信息

Sci Rep. 2014 Oct 24;4:6694. doi: 10.1038/srep06694.

Abstract

Iron (Fe) deficiency can represent a serious constraint on crop growth and productivity. A number of members of the bHLH transcription factor family are known to be involved in the plant Fe deficiency response. Plants have evolved two distinct uptake strategies when challenged by Fe deficiency: dicotyledonous and non-graminaceous species rely mostly on a reduction strategy regulated by bHLH transcription factors, whereas rice relies on a chelation strategy, also regulated by bHLH transcription factors. CmbHLH1, a bHLH transcription factor which is localized within the nucleus, was isolated from chrysanthemum. Its transcription was up-regulated both by Fe deficiency and by the exogenous application of abscisic acid. The roots of transgenic chrysanthemum plants in which CmbHLH1 was up-regulated were better able than those of the wild type chrysanthemum cultivar to acidify their immediate external environment by enhancing the transcription of the H(+)-ATPase encoding gene CmHA. However, there was no effect of the transgene on the efficiency of uptake of either manganese or zinc. Here, Chrysanthemum CmbHLH1 contributed to Fe uptake via H(+)-ATPase mediated acidification of the rhizosphere. ABA may be positively involved in the process.

摘要

铁(Fe)缺乏会严重限制作物生长和生产力。已知bHLH转录因子家族的一些成员参与植物对铁缺乏的反应。当受到铁缺乏挑战时,植物进化出两种不同的吸收策略:双子叶植物和非禾本科物种主要依赖由bHLH转录因子调节的还原策略,而水稻则依赖螯合策略,同样由bHLH转录因子调节。CmbHLH1是一种定位于细胞核内的bHLH转录因子,从菊花中分离得到。其转录在铁缺乏和外源施加脱落酸时均上调。CmbHLH1上调的转基因菊花植株的根比野生型菊花品种的根更能通过增强编码H(+)-ATP酶的基因CmHA的转录来酸化其紧邻的外部环境。然而,转基因对锰或锌的吸收效率没有影响。在这里,菊花CmbHLH1通过H(+)-ATP酶介导的根际酸化促进铁的吸收。脱落酸可能正向参与这一过程。

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