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ARGONAUTE10 and ARGONAUTE1 Regulate the Termination of Floral Stem Cells through Two MicroRNAs in Arabidopsis

Stem cells are crucial in morphogenesis in plants and animals. Much is known about the mechanisms that maintain stem cell fates or trigger their terminal differentiation. However, little is known about how developmental time impacts stem cell fates. Using Arabidopsis floral stem cells as a model, we...

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Autores principales: Ji, Lijuan, Liu, Xigang, Yan, Jun, Wang, Wenming, Yumul, Rae Eden, Kim, Yun Ju, Dinh, Thanh Theresa, Liu, Jun, Cui, Xia, Zheng, Binglian, Agarwal, Manu, Liu, Chunyan, Cao, Xiaofeng, Tang, Guiliang, Chen, Xuemei
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3069122/
https://www.ncbi.nlm.nih.gov/pubmed/21483759
http://dx.doi.org/10.1371/journal.pgen.1001358
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author Ji, Lijuan
Liu, Xigang
Yan, Jun
Wang, Wenming
Yumul, Rae Eden
Kim, Yun Ju
Dinh, Thanh Theresa
Liu, Jun
Cui, Xia
Zheng, Binglian
Agarwal, Manu
Liu, Chunyan
Cao, Xiaofeng
Tang, Guiliang
Chen, Xuemei
author_facet Ji, Lijuan
Liu, Xigang
Yan, Jun
Wang, Wenming
Yumul, Rae Eden
Kim, Yun Ju
Dinh, Thanh Theresa
Liu, Jun
Cui, Xia
Zheng, Binglian
Agarwal, Manu
Liu, Chunyan
Cao, Xiaofeng
Tang, Guiliang
Chen, Xuemei
author_sort Ji, Lijuan
collection PubMed
description Stem cells are crucial in morphogenesis in plants and animals. Much is known about the mechanisms that maintain stem cell fates or trigger their terminal differentiation. However, little is known about how developmental time impacts stem cell fates. Using Arabidopsis floral stem cells as a model, we show that stem cells can undergo precise temporal regulation governed by mechanisms that are distinct from, but integrated with, those that specify cell fates. We show that two microRNAs, miR172 and miR165/166, through targeting APETALA2 and type III homeodomain-leucine zipper (HD-Zip) genes, respectively, regulate the temporal program of floral stem cells. In particular, we reveal a role of the type III HD-Zip genes, previously known to specify lateral organ polarity, in stem cell termination. Both reduction in HD-Zip expression by over-expression of miR165/166 and mis-expression of HD-Zip genes by rendering them resistant to miR165/166 lead to prolonged floral stem cell activity, indicating that the expression of HD-Zip genes needs to be precisely controlled to achieve floral stem cell termination. We also show that both the ubiquitously expressed ARGONAUTE1 (AGO1) gene and its homolog AGO10, which exhibits highly restricted spatial expression patterns, are required to maintain the correct temporal program of floral stem cells. We provide evidence that AGO10, like AGO1, associates with miR172 and miR165/166 in vivo and exhibits “slicer” activity in vitro. Despite the common biological functions and similar biochemical activities, AGO1 and AGO10 exert different effects on miR165/166 in vivo. This work establishes a network of microRNAs and transcription factors governing the temporal program of floral stem cells and sheds light on the relationships among different AGO genes, which tend to exist in gene families in multicellular organisms.
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spelling pubmed-30691222011-04-11 ARGONAUTE10 and ARGONAUTE1 Regulate the Termination of Floral Stem Cells through Two MicroRNAs in Arabidopsis Ji, Lijuan Liu, Xigang Yan, Jun Wang, Wenming Yumul, Rae Eden Kim, Yun Ju Dinh, Thanh Theresa Liu, Jun Cui, Xia Zheng, Binglian Agarwal, Manu Liu, Chunyan Cao, Xiaofeng Tang, Guiliang Chen, Xuemei PLoS Genet Research Article Stem cells are crucial in morphogenesis in plants and animals. Much is known about the mechanisms that maintain stem cell fates or trigger their terminal differentiation. However, little is known about how developmental time impacts stem cell fates. Using Arabidopsis floral stem cells as a model, we show that stem cells can undergo precise temporal regulation governed by mechanisms that are distinct from, but integrated with, those that specify cell fates. We show that two microRNAs, miR172 and miR165/166, through targeting APETALA2 and type III homeodomain-leucine zipper (HD-Zip) genes, respectively, regulate the temporal program of floral stem cells. In particular, we reveal a role of the type III HD-Zip genes, previously known to specify lateral organ polarity, in stem cell termination. Both reduction in HD-Zip expression by over-expression of miR165/166 and mis-expression of HD-Zip genes by rendering them resistant to miR165/166 lead to prolonged floral stem cell activity, indicating that the expression of HD-Zip genes needs to be precisely controlled to achieve floral stem cell termination. We also show that both the ubiquitously expressed ARGONAUTE1 (AGO1) gene and its homolog AGO10, which exhibits highly restricted spatial expression patterns, are required to maintain the correct temporal program of floral stem cells. We provide evidence that AGO10, like AGO1, associates with miR172 and miR165/166 in vivo and exhibits “slicer” activity in vitro. Despite the common biological functions and similar biochemical activities, AGO1 and AGO10 exert different effects on miR165/166 in vivo. This work establishes a network of microRNAs and transcription factors governing the temporal program of floral stem cells and sheds light on the relationships among different AGO genes, which tend to exist in gene families in multicellular organisms. Public Library of Science 2011-03-31 /pmc/articles/PMC3069122/ /pubmed/21483759 http://dx.doi.org/10.1371/journal.pgen.1001358 Text en Ji et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Ji, Lijuan
Liu, Xigang
Yan, Jun
Wang, Wenming
Yumul, Rae Eden
Kim, Yun Ju
Dinh, Thanh Theresa
Liu, Jun
Cui, Xia
Zheng, Binglian
Agarwal, Manu
Liu, Chunyan
Cao, Xiaofeng
Tang, Guiliang
Chen, Xuemei
ARGONAUTE10 and ARGONAUTE1 Regulate the Termination of Floral Stem Cells through Two MicroRNAs in Arabidopsis
title ARGONAUTE10 and ARGONAUTE1 Regulate the Termination of Floral Stem Cells through Two MicroRNAs in Arabidopsis
title_full ARGONAUTE10 and ARGONAUTE1 Regulate the Termination of Floral Stem Cells through Two MicroRNAs in Arabidopsis
title_fullStr ARGONAUTE10 and ARGONAUTE1 Regulate the Termination of Floral Stem Cells through Two MicroRNAs in Arabidopsis
title_full_unstemmed ARGONAUTE10 and ARGONAUTE1 Regulate the Termination of Floral Stem Cells through Two MicroRNAs in Arabidopsis
title_short ARGONAUTE10 and ARGONAUTE1 Regulate the Termination of Floral Stem Cells through Two MicroRNAs in Arabidopsis
title_sort argonaute10 and argonaute1 regulate the termination of floral stem cells through two micrornas in arabidopsis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3069122/
https://www.ncbi.nlm.nih.gov/pubmed/21483759
http://dx.doi.org/10.1371/journal.pgen.1001358
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