Identification of rice transcription factors associated with drought tolerance using the Ecotilling method.

The drought tolerance (DT) of plants is a complex quantitative trait. Under natural and artificial selection, drought tolerance represents the crop survival ability and production capacity under drought conditions (Luo, 2010). To understand the regulation mechanism of varied drought tolerance among...

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Main Authors: Shunwu Yu, Fengxian Liao, Feiming Wang, Weiwei Wen, Jiajia Li, Hanwei Mei, Lijun Luo
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3278407?pdf=render
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spelling doaj-851ecb499c5c4cb09b14f180535bb2a52020-11-25T01:15:26ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0172e3076510.1371/journal.pone.0030765Identification of rice transcription factors associated with drought tolerance using the Ecotilling method.Shunwu YuFengxian LiaoFeiming WangWeiwei WenJiajia LiHanwei MeiLijun LuoThe drought tolerance (DT) of plants is a complex quantitative trait. Under natural and artificial selection, drought tolerance represents the crop survival ability and production capacity under drought conditions (Luo, 2010). To understand the regulation mechanism of varied drought tolerance among rice genotypes, 95 diverse rice landraces or varieties were evaluated within a field screen facility based on the 'line-source soil moisture gradient', and their resistance varied from extremely resistant to sensitive. The method of Ecotype Targeting Induced Local Lesions in Genomes (Ecotilling) was used to analyze the diversity in the promoters of 24 transcription factor families. The bands separated by electrophoresis using Ecotilling were converted into molecular markers. STRUCTURE analysis revealed a value of K = 2, namely, the population with two subgroups (i.e., indica and japonica), which coincided very well with the UPGMA clusters (NTSYS-pc software) using distance-based analysis and InDel markers. Then the association analysis between the promoter diversity of these transcription factors and the DT index/level of each variety was performed. The results showed that three genes were associated with the DT index and that five genes were associated with the DT level. The sequences of these associated genes are complex and variable, especially at approximately 1000 bp upstream of the transcription initiation sites. The study illuminated that association analysis aimed at Ecotilling diversity of natural groups could facilitate the isolation of rice genes related to complex quantitative traits.http://europepmc.org/articles/PMC3278407?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Shunwu Yu
Fengxian Liao
Feiming Wang
Weiwei Wen
Jiajia Li
Hanwei Mei
Lijun Luo
spellingShingle Shunwu Yu
Fengxian Liao
Feiming Wang
Weiwei Wen
Jiajia Li
Hanwei Mei
Lijun Luo
Identification of rice transcription factors associated with drought tolerance using the Ecotilling method.
PLoS ONE
author_facet Shunwu Yu
Fengxian Liao
Feiming Wang
Weiwei Wen
Jiajia Li
Hanwei Mei
Lijun Luo
author_sort Shunwu Yu
title Identification of rice transcription factors associated with drought tolerance using the Ecotilling method.
title_short Identification of rice transcription factors associated with drought tolerance using the Ecotilling method.
title_full Identification of rice transcription factors associated with drought tolerance using the Ecotilling method.
title_fullStr Identification of rice transcription factors associated with drought tolerance using the Ecotilling method.
title_full_unstemmed Identification of rice transcription factors associated with drought tolerance using the Ecotilling method.
title_sort identification of rice transcription factors associated with drought tolerance using the ecotilling method.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description The drought tolerance (DT) of plants is a complex quantitative trait. Under natural and artificial selection, drought tolerance represents the crop survival ability and production capacity under drought conditions (Luo, 2010). To understand the regulation mechanism of varied drought tolerance among rice genotypes, 95 diverse rice landraces or varieties were evaluated within a field screen facility based on the 'line-source soil moisture gradient', and their resistance varied from extremely resistant to sensitive. The method of Ecotype Targeting Induced Local Lesions in Genomes (Ecotilling) was used to analyze the diversity in the promoters of 24 transcription factor families. The bands separated by electrophoresis using Ecotilling were converted into molecular markers. STRUCTURE analysis revealed a value of K = 2, namely, the population with two subgroups (i.e., indica and japonica), which coincided very well with the UPGMA clusters (NTSYS-pc software) using distance-based analysis and InDel markers. Then the association analysis between the promoter diversity of these transcription factors and the DT index/level of each variety was performed. The results showed that three genes were associated with the DT index and that five genes were associated with the DT level. The sequences of these associated genes are complex and variable, especially at approximately 1000 bp upstream of the transcription initiation sites. The study illuminated that association analysis aimed at Ecotilling diversity of natural groups could facilitate the isolation of rice genes related to complex quantitative traits.
url http://europepmc.org/articles/PMC3278407?pdf=render
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