CAS Key Laboratory of Tropical Plant Resources and Sustainable Use, Xishuangbanna Tropical Botanical Garden, The Innovative Academy of Seed Design, Chinese Academy of Sciences, Kunming, China.
Center of Economic Botany, Core Botanical Gardens, Chinese Academy of Sciences, Mengla, China.
Plant Cell Environ. 2021 May;44(5):1679-1691. doi: 10.1111/pce.14000. Epub 2021 Feb 3.
Although the crosstalk between iron (Fe) and copper (Cu) homeostasis signalling networks exists in plants, the underlined molecular mechanism remains unclear. FIT (FER-LIKE IRON DEFICIENCY-INDUCED TRANSCRIPTION FACTOR) and four bHLH Ib members (bHLH38, bHLH39, bHLH100 and bHLH101) are the key regulators of Fe homeostasis. Here, we reveal that FIT and bHLH Ib control the up-regulation of Cu-uptake genes (COPT2, FRO4 and FRO5) by Fe deficiency, and Cu is required for improving plant growth under Fe-deficiency conditions. The induction of Cu-uptake gene expression and the elevation of Cu concentration are inhibited in the fit-2 or bhlh4x (the quadruple mutant of four bHLH Ib genes) under Fe-deficiency conditions. The dual overexpression of both bHLH38 (or bHLH39) and FIT activates the expression of COPT2, FRO4 and FRO5 and increases Cu accumulation. Furthermore, bHLH Ib proteins directly bind to the promoters of COPT2, FRO4 and FRO5. Either Cu supplement or overexpression of COPT2 or FRO4 improves the growth of fit-2 under Fe-deficiency conditions. Moreover, the induction of COPT2, FRO4 and FRO5 by Fe deficiency is independent of SPL7, a central regulator of Cu-deficiency responses. This work through the link between bHLH Ib/FIT and COPT2/FRO4/FRO5 under Fe-deficiency conditions establishes a new relationship between Cu and Fe homeostasis.
虽然铁(Fe)和铜(Cu)稳态信号网络之间存在串扰,但其中的分子机制尚不清楚。FIT(FER-LIKE IRON DEFICIENCY-INDUCED TRANSCRIPTION FACTOR)和四个 bHLH Ib 成员(bHLH38、bHLH39、bHLH100 和 bHLH101)是铁稳态的关键调节剂。在这里,我们揭示了 FIT 和 bHLH Ib 控制 Fe 缺乏时 Cu 摄取基因(COPT2、FRO4 和 FRO5)的上调,Cu 是在 Fe 缺乏条件下改善植物生长所必需的。在 fit-2 或 bhlh4x(四个 bHLH Ib 基因的四重突变体)中,Cu 摄取基因表达的诱导和 Cu 浓度的升高在 Fe 缺乏条件下受到抑制。在 Fe 缺乏条件下,bHLH38(或 bHLH39)和 FIT 的双重过表达激活了 COPT2、FRO4 和 FRO5 的表达,并增加了 Cu 积累。此外,bHLH Ib 蛋白直接结合到 COPT2、FRO4 和 FRO5 的启动子上。Cu 补充或 COPT2 或 FRO4 的过表达都能改善 fit-2 在 Fe 缺乏条件下的生长。此外,Fe 缺乏诱导 COPT2、FRO4 和 FRO5 的表达不依赖于 SPL7,后者是 Cu 缺乏响应的中央调节剂。这项工作通过 Fe 缺乏条件下 bHLH Ib/FIT 和 COPT2/FRO4/FRO5 之间的联系,建立了 Cu 和 Fe 稳态之间的新关系。