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香蕉(Musa acuminata)脱水响应元件结合(MaDREB)转录因子介导的果实成熟转录调控网络。

The transcriptional regulatory network mediated by banana (Musa acuminata) dehydration-responsive element binding (MaDREB) transcription factors in fruit ripening.

作者信息

Kuang Jian-Fei, Chen Jian-Ye, Liu Xun-Cheng, Han Yan-Chao, Xiao Yun-Yi, Shan Wei, Tang Yang, Wu Ke-Qiang, He Jun-Xian, Lu Wang-Jin

机构信息

State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources/Guangdong Provincial Key Laboratory of Postharvest Science of Fruits and Vegetables, College of Horticultural Science, South China Agricultural University, Guangzhou, 510642, China.

School of Life Sciences and State Key Laboratory of Agrobiotechnology, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong SAR, China.

出版信息

New Phytol. 2017 Apr;214(2):762-781. doi: 10.1111/nph.14389. Epub 2017 Jan 3.

Abstract

Fruit ripening is a complex, genetically programmed process involving the action of critical transcription factors (TFs). Despite the established significance of dehydration-responsive element binding (DREB) TFs in plant abiotic stress responses, the involvement of DREBs in fruit ripening is yet to be determined. Here, we identified four genes encoding ripening-regulated DREB TFs in banana (Musa acuminata), MaDREB1, MaDREB2, MaDREB3, and MaDREB4, and demonstrated that they play regulatory roles in fruit ripening. We showed that MaDREB1-MaDREB4 are nucleus-localized, induced by ethylene and encompass transcriptional activation activities. We performed a genome-wide chromatin immunoprecipitation and high-throughput sequencing (ChIP-Seq) experiment for MaDREB2 and identified 697 genomic regions as potential targets of MaDREB2. MaDREB2 binds to hundreds of loci with diverse functions and its binding sites are distributed in the promoter regions proximal to the transcriptional start site (TSS). Most of the MaDREB2-binding targets contain the conserved (A/G)CC(G/C)AC motif and MaDREB2 appears to directly regulate the expression of a number of genes involved in fruit ripening. In combination with transcriptome profiling (RNA sequencing) data, our results indicate that MaDREB2 may serve as both transcriptional activator and repressor during banana fruit ripening. In conclusion, our study suggests a hierarchical regulatory model of fruit ripening in banana and that the MaDREB TFs may act as transcriptional regulators in the regulatory network.

摘要

果实成熟是一个复杂的、由基因编程的过程,涉及关键转录因子(TFs)的作用。尽管脱水响应元件结合(DREB)转录因子在植物非生物胁迫反应中的重要性已得到确认,但DREB是否参与果实成熟尚待确定。在此,我们在香蕉(Musa acuminata)中鉴定出四个编码受成熟调控的DREB转录因子的基因,即MaDREB1、MaDREB2、MaDREB3和MaDREB4,并证明它们在果实成熟过程中发挥调控作用。我们发现MaDREB1 - MaDREB4定位于细胞核,受乙烯诱导,且具有转录激活活性。我们对MaDREB2进行了全基因组染色质免疫沉淀和高通量测序(ChIP - Seq)实验,鉴定出697个基因组区域为MaDREB2的潜在靶标。MaDREB2与数百个具有不同功能的位点结合,其结合位点分布在转录起始位点(TSS)近端的启动子区域。大多数MaDREB2结合靶标含有保守的(A/G)CC(G/C)AC基序,并且MaDREB2似乎直接调控许多参与果实成熟的基因的表达。结合转录组分析(RNA测序)数据,我们的结果表明MaDREB2在香蕉果实成熟过程中可能既作为转录激活因子又作为转录抑制因子。总之,我们的研究提出了香蕉果实成熟的分层调控模型,并且MaDREB转录因子可能在调控网络中作为转录调节因子发挥作用。

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