Cargando…
Arabidopsis PCaP2 Plays an Important Role in Chilling Tolerance and ABA Response by Activating CBF- and SnRK2-Mediated Transcriptional Regulatory Network
Chilling stress affects plant growth and productivity. However, the multi-underlying mechanisms of chilling tolerance are not well understood. Arabidopsis PCaP2 is involved in regulating the dynamic of microtubules (MTs) and F-actin and Ca(2+)-binding ability. Here, the results showed that the PCaP2...
Autores principales: | , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Frontiers Media S.A.
2018
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5852069/ https://www.ncbi.nlm.nih.gov/pubmed/29568301 http://dx.doi.org/10.3389/fpls.2018.00215 |
_version_ | 1783306491376173056 |
---|---|
author | Wang, Xianling Wang, Lu Wang, Yu Liu, Huan Hu, Dan Zhang, Ning Zhang, Shaobin Cao, Huiying Cao, Qijiang Zhang, Zhihong Tang, Shuang Song, Dandan Wang, Che |
author_facet | Wang, Xianling Wang, Lu Wang, Yu Liu, Huan Hu, Dan Zhang, Ning Zhang, Shaobin Cao, Huiying Cao, Qijiang Zhang, Zhihong Tang, Shuang Song, Dandan Wang, Che |
author_sort | Wang, Xianling |
collection | PubMed |
description | Chilling stress affects plant growth and productivity. However, the multi-underlying mechanisms of chilling tolerance are not well understood. Arabidopsis PCaP2 is involved in regulating the dynamic of microtubules (MTs) and F-actin and Ca(2+)-binding ability. Here, the results showed that the PCaP2 expression was highly induced in roots, cotyledons, true leaves, lateral roots and flowers under cold stress. Compared with the wild type, PCaP2-overexpressing plants displayed the enhanced tolerance, whereas its RNAi and mutant were more sensitive in seed germination, seedling and reproductive growth under chilling stress in Arabidopsis. In addition, PCaP2 was also a positive regulator of ABA signaling pathway by analyzing the expression of PCaP2 and the phenotypes of PCaP2-overexpressing, mutant and RNAi plants under ABA treatment. Interestingly, disruption of PCaP2 inhibited the expression of CBF1, -3 and CBF-target COR genes, while increased the CBF2 expression in response to cold or ABA. Moreover, we found that SnRK2s were involved in cold stress and PCaP2 mutants down-regulated the transcription level of SnRK2.2, -2.3 and SnRK2-mediated downstream genes including ABF2, RD29A, KIN1, KIN2, but up-regulated SnRK2.6, ABF1, -3, -4 in ABA and cold treatments. It is well-accepted that PCaP2 as a Ca(2+)-binding protein triggers the gene expression to enhance plant chilling tolerance. Our further studies showed that MT destabilizing activity of PCaP2, but not F-actin-severing function, may be involved in chilling stress. Taken together, our results highlight that PCaP2 plays an important role in chilling tolerance and ABA response by triggering the CBF- and SnRK2-meditated transcriptional regulatory pathways, providing novel evidences of underlying mechanisms of multi-pathways in chilling stress. |
format | Online Article Text |
id | pubmed-5852069 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | Frontiers Media S.A. |
record_format | MEDLINE/PubMed |
spelling | pubmed-58520692018-03-22 Arabidopsis PCaP2 Plays an Important Role in Chilling Tolerance and ABA Response by Activating CBF- and SnRK2-Mediated Transcriptional Regulatory Network Wang, Xianling Wang, Lu Wang, Yu Liu, Huan Hu, Dan Zhang, Ning Zhang, Shaobin Cao, Huiying Cao, Qijiang Zhang, Zhihong Tang, Shuang Song, Dandan Wang, Che Front Plant Sci Plant Science Chilling stress affects plant growth and productivity. However, the multi-underlying mechanisms of chilling tolerance are not well understood. Arabidopsis PCaP2 is involved in regulating the dynamic of microtubules (MTs) and F-actin and Ca(2+)-binding ability. Here, the results showed that the PCaP2 expression was highly induced in roots, cotyledons, true leaves, lateral roots and flowers under cold stress. Compared with the wild type, PCaP2-overexpressing plants displayed the enhanced tolerance, whereas its RNAi and mutant were more sensitive in seed germination, seedling and reproductive growth under chilling stress in Arabidopsis. In addition, PCaP2 was also a positive regulator of ABA signaling pathway by analyzing the expression of PCaP2 and the phenotypes of PCaP2-overexpressing, mutant and RNAi plants under ABA treatment. Interestingly, disruption of PCaP2 inhibited the expression of CBF1, -3 and CBF-target COR genes, while increased the CBF2 expression in response to cold or ABA. Moreover, we found that SnRK2s were involved in cold stress and PCaP2 mutants down-regulated the transcription level of SnRK2.2, -2.3 and SnRK2-mediated downstream genes including ABF2, RD29A, KIN1, KIN2, but up-regulated SnRK2.6, ABF1, -3, -4 in ABA and cold treatments. It is well-accepted that PCaP2 as a Ca(2+)-binding protein triggers the gene expression to enhance plant chilling tolerance. Our further studies showed that MT destabilizing activity of PCaP2, but not F-actin-severing function, may be involved in chilling stress. Taken together, our results highlight that PCaP2 plays an important role in chilling tolerance and ABA response by triggering the CBF- and SnRK2-meditated transcriptional regulatory pathways, providing novel evidences of underlying mechanisms of multi-pathways in chilling stress. Frontiers Media S.A. 2018-03-08 /pmc/articles/PMC5852069/ /pubmed/29568301 http://dx.doi.org/10.3389/fpls.2018.00215 Text en Copyright © 2018 Wang, Wang, Wang, Liu, Hu, Zhang, Zhang, Cao, Cao, Zhang, Tang, Song and Wang. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms. |
spellingShingle | Plant Science Wang, Xianling Wang, Lu Wang, Yu Liu, Huan Hu, Dan Zhang, Ning Zhang, Shaobin Cao, Huiying Cao, Qijiang Zhang, Zhihong Tang, Shuang Song, Dandan Wang, Che Arabidopsis PCaP2 Plays an Important Role in Chilling Tolerance and ABA Response by Activating CBF- and SnRK2-Mediated Transcriptional Regulatory Network |
title | Arabidopsis PCaP2 Plays an Important Role in Chilling Tolerance and ABA Response by Activating CBF- and SnRK2-Mediated Transcriptional Regulatory Network |
title_full | Arabidopsis PCaP2 Plays an Important Role in Chilling Tolerance and ABA Response by Activating CBF- and SnRK2-Mediated Transcriptional Regulatory Network |
title_fullStr | Arabidopsis PCaP2 Plays an Important Role in Chilling Tolerance and ABA Response by Activating CBF- and SnRK2-Mediated Transcriptional Regulatory Network |
title_full_unstemmed | Arabidopsis PCaP2 Plays an Important Role in Chilling Tolerance and ABA Response by Activating CBF- and SnRK2-Mediated Transcriptional Regulatory Network |
title_short | Arabidopsis PCaP2 Plays an Important Role in Chilling Tolerance and ABA Response by Activating CBF- and SnRK2-Mediated Transcriptional Regulatory Network |
title_sort | arabidopsis pcap2 plays an important role in chilling tolerance and aba response by activating cbf- and snrk2-mediated transcriptional regulatory network |
topic | Plant Science |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5852069/ https://www.ncbi.nlm.nih.gov/pubmed/29568301 http://dx.doi.org/10.3389/fpls.2018.00215 |
work_keys_str_mv | AT wangxianling arabidopsispcap2playsanimportantroleinchillingtoleranceandabaresponsebyactivatingcbfandsnrk2mediatedtranscriptionalregulatorynetwork AT wanglu arabidopsispcap2playsanimportantroleinchillingtoleranceandabaresponsebyactivatingcbfandsnrk2mediatedtranscriptionalregulatorynetwork AT wangyu arabidopsispcap2playsanimportantroleinchillingtoleranceandabaresponsebyactivatingcbfandsnrk2mediatedtranscriptionalregulatorynetwork AT liuhuan arabidopsispcap2playsanimportantroleinchillingtoleranceandabaresponsebyactivatingcbfandsnrk2mediatedtranscriptionalregulatorynetwork AT hudan arabidopsispcap2playsanimportantroleinchillingtoleranceandabaresponsebyactivatingcbfandsnrk2mediatedtranscriptionalregulatorynetwork AT zhangning arabidopsispcap2playsanimportantroleinchillingtoleranceandabaresponsebyactivatingcbfandsnrk2mediatedtranscriptionalregulatorynetwork AT zhangshaobin arabidopsispcap2playsanimportantroleinchillingtoleranceandabaresponsebyactivatingcbfandsnrk2mediatedtranscriptionalregulatorynetwork AT caohuiying arabidopsispcap2playsanimportantroleinchillingtoleranceandabaresponsebyactivatingcbfandsnrk2mediatedtranscriptionalregulatorynetwork AT caoqijiang arabidopsispcap2playsanimportantroleinchillingtoleranceandabaresponsebyactivatingcbfandsnrk2mediatedtranscriptionalregulatorynetwork AT zhangzhihong arabidopsispcap2playsanimportantroleinchillingtoleranceandabaresponsebyactivatingcbfandsnrk2mediatedtranscriptionalregulatorynetwork AT tangshuang arabidopsispcap2playsanimportantroleinchillingtoleranceandabaresponsebyactivatingcbfandsnrk2mediatedtranscriptionalregulatorynetwork AT songdandan arabidopsispcap2playsanimportantroleinchillingtoleranceandabaresponsebyactivatingcbfandsnrk2mediatedtranscriptionalregulatorynetwork AT wangche arabidopsispcap2playsanimportantroleinchillingtoleranceandabaresponsebyactivatingcbfandsnrk2mediatedtranscriptionalregulatorynetwork |