Literature DB >> 29241564

Chrysanthemum MADS-box transcription factor CmANR1 modulates lateral root development via homo-/heterodimerization to influence auxin accumulation in Arabidopsis.

Cui-Hui Sun1, Jian-Qiang Yu1, Li-Zhu Wen1, Yun-Hui Guo1, Xia Sun1, Yu-Jin Hao1, Da-Gang Hu2, Cheng-Shu Zheng3.   

Abstract

Root system architecture is an important agronomic trait by which plants both acquire water and nutrients from the soil and adapt to survive in a complex environment. The adaptation of plant root systems to environmental constraints largely depends on the growth and development of lateral roots (LRs). MADS-box transcription factors (TFs) are important known regulators of plant growth, development, and response to environmental stimuli. However, the potential mechanisms by which they regulate LRs development remain poorly understood. Here, we identified a MADS-box chrysanthemum gene CmANR1, homologous to the Arabidopsis gene AtANR1, which plays a key role in the regulation of LR development. qRT-PCR assays indicated that CmANR1 was primarily expressed in chrysanthemum roots and was rapidly induced by exposure to high nitrate concentrations. Ectopic expression of CmANR1 in Arabidopsis significantly increased the number and length of emerged LRs compared to the wild-type (col) control, but had no obvious affect on primary root (PR) development. We also found that CmANR1 positively influenced auxin accumulation in LRs at least partly by improving auxin biosynthesis and transport, thereby promoting LR development. Furthermore, we found that ANR1 formed homo- and heterodimers through interactions with itself and AGL21 at its C-terminal domain. Overall, our findings provide considerable new information about the mechanisms by which the chrysanthemum MADS-box TF CmANR1 mediates LR development by directly altering auxin accumulation.
Copyright © 2017 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Auxin; Chrysanthemum; CmANR1; Lateral root development; MADS-box; Nitrate

Mesh:

Substances:

Year:  2017        PMID: 29241564     DOI: 10.1016/j.plantsci.2017.09.017

Source DB:  PubMed          Journal:  Plant Sci        ISSN: 0168-9452            Impact factor:   4.729


  12 in total

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3.  Nitric Oxide Affects Rice Root Growth by Regulating Auxin Transport Under Nitrate Supply.

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Authors:  Shunkai Hu; Mi Zhang; Yiqing Yang; Wei Xuan; Zhongwei Zou; Emmanuel Arkorful; Yi Chen; Qingping Ma; Anburaj Jeyaraj; Xuan Chen; Xinghui Li
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6.  New insights into the role of MADS-box transcription factor gene CmANR1 on root and shoot development in chrysanthemum (Chrysanthemum morifolium).

Authors:  Cheng-Shu Zheng; Da-Gang Hu; Fangfang Ma; Cui-Hui Sun; Jia-Hui Wang; Kai-Di Gu; Peng Zhang; Xin-Yi Zhang
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Review 7.  Novel Aspects of Nitrate Regulation in Arabidopsis.

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9.  The MADS transcription factor CmANR1 positively modulates root system development by directly regulating CmPIN2 in chrysanthemum.

Authors:  Da-Gang Hu; Cheng-Shu Zheng; Cui-Hui Sun; Jian-Qiang Yu; Xi Duan; Jia-Hui Wang; Quan-Yan Zhang; Kai-Di Gu
Journal:  Hortic Res       Date:  2018-10-01       Impact factor: 6.793

10.  New insights into the role of chrysanthemum calcineurin B-like interacting protein kinase CmCIPK23 in nitrate signaling in Arabidopsis roots.

Authors:  Bowen Liu; Hongmei Fan; Cuihui Sun; Mingyue Yuan; Xi Geng; Xiao Ding; Rui Ma; Na Yan; Xia Sun; Chengshu Zheng
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