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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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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