Non-uniform distribution pattern for differentially expressed genes of transgenic rice Huahui 1 at different developmental stages and environments.

DNA microarray analysis is an effective method to detect unintended effects by detecting differentially expressed genes (DEG) in safety assessment of genetically modified (GM) crops. With the aim to reveal the distribution of DEG of GM crops under different conditions, we performed DNA microarray an...

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Main Authors: Zhi Liu, Jie Zhao, Yunhe Li, Wenwei Zhang, Guiliang Jian, Yufa Peng, Fangjun Qi
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3350509?pdf=render
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spelling doaj-c318af0e6a184bafba10633fb261c7a82020-11-24T21:55:33ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0175e3707810.1371/journal.pone.0037078Non-uniform distribution pattern for differentially expressed genes of transgenic rice Huahui 1 at different developmental stages and environments.Zhi LiuJie ZhaoYunhe LiWenwei ZhangGuiliang JianYufa PengFangjun QiDNA microarray analysis is an effective method to detect unintended effects by detecting differentially expressed genes (DEG) in safety assessment of genetically modified (GM) crops. With the aim to reveal the distribution of DEG of GM crops under different conditions, we performed DNA microarray analysis using transgenic rice Huahui 1 (HH1) and its non-transgenic parent Minghui 63 (MH63) at different developmental stages and environmental conditions. Considerable DEG were selected in each group of HH1 under different conditions. For each group of HH1, the number of DEG was different; however, considerable common DEG were shared between different groups of HH1. These findings suggested that both DEG and common DEG were adequate for investigation of unintended effects. Furthermore, a number of significantly changed pathways were found in all groups of HH1, indicating genetic modification caused everlasting changes to plants. To our knowledge, our study for the first time provided the non-uniformly distributed pattern for DEG of GM crops at different developmental stages and environments. Our result also suggested that DEG selected in GM plants at specific developmental stage and environment could act as useful clues for further evaluation of unintended effects of GM plants.http://europepmc.org/articles/PMC3350509?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Zhi Liu
Jie Zhao
Yunhe Li
Wenwei Zhang
Guiliang Jian
Yufa Peng
Fangjun Qi
spellingShingle Zhi Liu
Jie Zhao
Yunhe Li
Wenwei Zhang
Guiliang Jian
Yufa Peng
Fangjun Qi
Non-uniform distribution pattern for differentially expressed genes of transgenic rice Huahui 1 at different developmental stages and environments.
PLoS ONE
author_facet Zhi Liu
Jie Zhao
Yunhe Li
Wenwei Zhang
Guiliang Jian
Yufa Peng
Fangjun Qi
author_sort Zhi Liu
title Non-uniform distribution pattern for differentially expressed genes of transgenic rice Huahui 1 at different developmental stages and environments.
title_short Non-uniform distribution pattern for differentially expressed genes of transgenic rice Huahui 1 at different developmental stages and environments.
title_full Non-uniform distribution pattern for differentially expressed genes of transgenic rice Huahui 1 at different developmental stages and environments.
title_fullStr Non-uniform distribution pattern for differentially expressed genes of transgenic rice Huahui 1 at different developmental stages and environments.
title_full_unstemmed Non-uniform distribution pattern for differentially expressed genes of transgenic rice Huahui 1 at different developmental stages and environments.
title_sort non-uniform distribution pattern for differentially expressed genes of transgenic rice huahui 1 at different developmental stages and environments.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description DNA microarray analysis is an effective method to detect unintended effects by detecting differentially expressed genes (DEG) in safety assessment of genetically modified (GM) crops. With the aim to reveal the distribution of DEG of GM crops under different conditions, we performed DNA microarray analysis using transgenic rice Huahui 1 (HH1) and its non-transgenic parent Minghui 63 (MH63) at different developmental stages and environmental conditions. Considerable DEG were selected in each group of HH1 under different conditions. For each group of HH1, the number of DEG was different; however, considerable common DEG were shared between different groups of HH1. These findings suggested that both DEG and common DEG were adequate for investigation of unintended effects. Furthermore, a number of significantly changed pathways were found in all groups of HH1, indicating genetic modification caused everlasting changes to plants. To our knowledge, our study for the first time provided the non-uniformly distributed pattern for DEG of GM crops at different developmental stages and environments. Our result also suggested that DEG selected in GM plants at specific developmental stage and environment could act as useful clues for further evaluation of unintended effects of GM plants.
url http://europepmc.org/articles/PMC3350509?pdf=render
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AT jiezhao nonuniformdistributionpatternfordifferentiallyexpressedgenesoftransgenicricehuahui1atdifferentdevelopmentalstagesandenvironments
AT yunheli nonuniformdistributionpatternfordifferentiallyexpressedgenesoftransgenicricehuahui1atdifferentdevelopmentalstagesandenvironments
AT wenweizhang nonuniformdistributionpatternfordifferentiallyexpressedgenesoftransgenicricehuahui1atdifferentdevelopmentalstagesandenvironments
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AT yufapeng nonuniformdistributionpatternfordifferentiallyexpressedgenesoftransgenicricehuahui1atdifferentdevelopmentalstagesandenvironments
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