The U-box family genes in Medicago truncatula: Key elements in response to salt, cold, and drought stresses.

The ubiquitination pathway regulates growth, development, and stress responses in plants, and the U-box protein family of ubiquitin ligases has important roles in this pathway. Here, 64 putative U-box proteins were identified in the Medicago truncatula genome. In addition to the conserved U-box moti...

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Main Authors: Jianbo Song, Xiaowei Mo, Haiqi Yang, Luming Yue, Jun Song, Beixin Mo
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5542650?pdf=render
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spelling doaj-bdff2a138cf74e89a52c638a73ca70e12020-11-24T22:17:19ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-01128e018240210.1371/journal.pone.0182402The U-box family genes in Medicago truncatula: Key elements in response to salt, cold, and drought stresses.Jianbo SongXiaowei MoHaiqi YangLuming YueJun SongBeixin MoThe ubiquitination pathway regulates growth, development, and stress responses in plants, and the U-box protein family of ubiquitin ligases has important roles in this pathway. Here, 64 putative U-box proteins were identified in the Medicago truncatula genome. In addition to the conserved U-box motif, other functional domains, such as the ARM, kinase, KAP, and WD40 domains, were also detected. Phylogenetic analysis of the M. truncatula U-box proteins grouped them into six subfamilies, and chromosomal mapping and synteny analyses indicated that tandem and segmental duplications may have contributed to the expansion and evolution of the U-box gene family in this species. Using RNA-seq data from M. truncatula seedlings subjected to three different abiotic stresses, we identified 33 stress-inducible plant U-box genes (MtPUBs). Specifically, 25 salinity-, 15 drought-, and 16 cold-regulated MtPUBs were detected. Among them, MtPUB10, MtPUB17, MtPUB18, MtPUB35, MtPUB42, and MtPUB44 responded to all three stress conditions. Expression profiling by qRT-PCR was consistent with the RNA-seq data, and stress-related elements were identified in the promoter regions. The present findings strongly indicate that U-box proteins play critical roles in abiotic stress response in M. truncatula.http://europepmc.org/articles/PMC5542650?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Jianbo Song
Xiaowei Mo
Haiqi Yang
Luming Yue
Jun Song
Beixin Mo
spellingShingle Jianbo Song
Xiaowei Mo
Haiqi Yang
Luming Yue
Jun Song
Beixin Mo
The U-box family genes in Medicago truncatula: Key elements in response to salt, cold, and drought stresses.
PLoS ONE
author_facet Jianbo Song
Xiaowei Mo
Haiqi Yang
Luming Yue
Jun Song
Beixin Mo
author_sort Jianbo Song
title The U-box family genes in Medicago truncatula: Key elements in response to salt, cold, and drought stresses.
title_short The U-box family genes in Medicago truncatula: Key elements in response to salt, cold, and drought stresses.
title_full The U-box family genes in Medicago truncatula: Key elements in response to salt, cold, and drought stresses.
title_fullStr The U-box family genes in Medicago truncatula: Key elements in response to salt, cold, and drought stresses.
title_full_unstemmed The U-box family genes in Medicago truncatula: Key elements in response to salt, cold, and drought stresses.
title_sort u-box family genes in medicago truncatula: key elements in response to salt, cold, and drought stresses.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description The ubiquitination pathway regulates growth, development, and stress responses in plants, and the U-box protein family of ubiquitin ligases has important roles in this pathway. Here, 64 putative U-box proteins were identified in the Medicago truncatula genome. In addition to the conserved U-box motif, other functional domains, such as the ARM, kinase, KAP, and WD40 domains, were also detected. Phylogenetic analysis of the M. truncatula U-box proteins grouped them into six subfamilies, and chromosomal mapping and synteny analyses indicated that tandem and segmental duplications may have contributed to the expansion and evolution of the U-box gene family in this species. Using RNA-seq data from M. truncatula seedlings subjected to three different abiotic stresses, we identified 33 stress-inducible plant U-box genes (MtPUBs). Specifically, 25 salinity-, 15 drought-, and 16 cold-regulated MtPUBs were detected. Among them, MtPUB10, MtPUB17, MtPUB18, MtPUB35, MtPUB42, and MtPUB44 responded to all three stress conditions. Expression profiling by qRT-PCR was consistent with the RNA-seq data, and stress-related elements were identified in the promoter regions. The present findings strongly indicate that U-box proteins play critical roles in abiotic stress response in M. truncatula.
url http://europepmc.org/articles/PMC5542650?pdf=render
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