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Integration of Developmental and Environmental Signals via a Polyadenylation Factor in Arabidopsis

The ability to integrate environmental and developmental signals with physiological responses is critical for plant survival. How this integration is done, particularly through posttranscriptional control of gene expression, is poorly understood. Previously, it was found that the 30 kD subunit of Ar...

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Autores principales: Liu, Man, Xu, Ruqiang, Merrill, Carrie, Hong, Liwei, Von Lanken, Carol, Hunt, Arthur G., Li, Qingshun Q.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4278772/
https://www.ncbi.nlm.nih.gov/pubmed/25546057
http://dx.doi.org/10.1371/journal.pone.0115779
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author Liu, Man
Xu, Ruqiang
Merrill, Carrie
Hong, Liwei
Von Lanken, Carol
Hunt, Arthur G.
Li, Qingshun Q.
author_facet Liu, Man
Xu, Ruqiang
Merrill, Carrie
Hong, Liwei
Von Lanken, Carol
Hunt, Arthur G.
Li, Qingshun Q.
author_sort Liu, Man
collection PubMed
description The ability to integrate environmental and developmental signals with physiological responses is critical for plant survival. How this integration is done, particularly through posttranscriptional control of gene expression, is poorly understood. Previously, it was found that the 30 kD subunit of Arabidopsis cleavage and polyadenylation specificity factor (AtCPSF30) is a calmodulin-regulated RNA-binding protein. Here we demonstrated that mutant plants (oxt6) deficient in AtCPSF30 possess a novel range of phenotypes – reduced fertility, reduced lateral root formation, and altered sensitivities to oxidative stress and a number of plant hormones (auxin, cytokinin, gibberellic acid, and ACC). While the wild-type AtCPSF30 (C30G) was able to restore normal growth and responses, a mutant AtCPSF30 protein incapable of interacting with calmodulin (C30GM) could only restore wild-type fertility and responses to oxidative stress and ACC. Thus, the interaction with calmodulin is important for part of AtCPSF30 functions in the plant. Global poly(A) site analysis showed that the C30G and C30GM proteins can restore wild-type poly(A) site choice to the oxt6 mutant. Genes associated with hormone metabolism and auxin responses are also affected by the oxt6 mutation. Moreover, 19 genes that are linked with calmodulin-dependent CPSF30 functions, were identified through genome-wide expression analysis. These data, in conjunction with previous results from the analysis of the oxt6 mutant, indicate that the polyadenylation factor AtCPSF30 is a regulatory hub where different signaling cues are transduced, presumably via differential mRNA 3′ end formation or alternative polyadenylation, into specified phenotypic outcomes. Our results suggest a novel function of a polyadenylation factor in environmental and developmental signal integration.
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spelling pubmed-42787722015-01-05 Integration of Developmental and Environmental Signals via a Polyadenylation Factor in Arabidopsis Liu, Man Xu, Ruqiang Merrill, Carrie Hong, Liwei Von Lanken, Carol Hunt, Arthur G. Li, Qingshun Q. PLoS One Research Article The ability to integrate environmental and developmental signals with physiological responses is critical for plant survival. How this integration is done, particularly through posttranscriptional control of gene expression, is poorly understood. Previously, it was found that the 30 kD subunit of Arabidopsis cleavage and polyadenylation specificity factor (AtCPSF30) is a calmodulin-regulated RNA-binding protein. Here we demonstrated that mutant plants (oxt6) deficient in AtCPSF30 possess a novel range of phenotypes – reduced fertility, reduced lateral root formation, and altered sensitivities to oxidative stress and a number of plant hormones (auxin, cytokinin, gibberellic acid, and ACC). While the wild-type AtCPSF30 (C30G) was able to restore normal growth and responses, a mutant AtCPSF30 protein incapable of interacting with calmodulin (C30GM) could only restore wild-type fertility and responses to oxidative stress and ACC. Thus, the interaction with calmodulin is important for part of AtCPSF30 functions in the plant. Global poly(A) site analysis showed that the C30G and C30GM proteins can restore wild-type poly(A) site choice to the oxt6 mutant. Genes associated with hormone metabolism and auxin responses are also affected by the oxt6 mutation. Moreover, 19 genes that are linked with calmodulin-dependent CPSF30 functions, were identified through genome-wide expression analysis. These data, in conjunction with previous results from the analysis of the oxt6 mutant, indicate that the polyadenylation factor AtCPSF30 is a regulatory hub where different signaling cues are transduced, presumably via differential mRNA 3′ end formation or alternative polyadenylation, into specified phenotypic outcomes. Our results suggest a novel function of a polyadenylation factor in environmental and developmental signal integration. Public Library of Science 2014-12-29 /pmc/articles/PMC4278772/ /pubmed/25546057 http://dx.doi.org/10.1371/journal.pone.0115779 Text en © 2014 Liu et al http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Liu, Man
Xu, Ruqiang
Merrill, Carrie
Hong, Liwei
Von Lanken, Carol
Hunt, Arthur G.
Li, Qingshun Q.
Integration of Developmental and Environmental Signals via a Polyadenylation Factor in Arabidopsis
title Integration of Developmental and Environmental Signals via a Polyadenylation Factor in Arabidopsis
title_full Integration of Developmental and Environmental Signals via a Polyadenylation Factor in Arabidopsis
title_fullStr Integration of Developmental and Environmental Signals via a Polyadenylation Factor in Arabidopsis
title_full_unstemmed Integration of Developmental and Environmental Signals via a Polyadenylation Factor in Arabidopsis
title_short Integration of Developmental and Environmental Signals via a Polyadenylation Factor in Arabidopsis
title_sort integration of developmental and environmental signals via a polyadenylation factor in arabidopsis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4278772/
https://www.ncbi.nlm.nih.gov/pubmed/25546057
http://dx.doi.org/10.1371/journal.pone.0115779
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