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Rice OsDOF15 contributes to ethylene-inhibited primary root elongation under salt stress
by
Qin, Hua
, Peng, Peng
, Gao, Yadi
, Wang, Fangfang
, Zhou, Yun
, Zhang, Yuqiong
, Huang, Rongfeng
, Wang, Juan
, Miao, Yuchen
, Chen, Xinbing
, Zhou, Jiahao
, Qi, Yidong
in
Biosynthetic Pathways - drug effects
/ cell proliferation
/ Cell Proliferation - drug effects
/ DOF transcription factor
/ ethylene
/ ethylene production
/ Ethylenes - biosynthesis
/ Ethylenes - pharmacology
/ Gene Expression Regulation, Plant - drug effects
/ loss-of-function mutation
/ Meristem - anatomy & histology
/ Meristem - drug effects
/ meristem size
/ Oryza - drug effects
/ Oryza - metabolism
/ Oryza sativa
/ Plant Proteins - metabolism
/ Plant Roots - drug effects
/ Plant Roots - growth & development
/ Plant Roots - metabolism
/ Promoter Regions, Genetic - genetics
/ Quantitative Trait, Heritable
/ rice
/ root
/ root growth
/ root meristems
/ salt stress
/ Salt Stress - drug effects
/ seedlings
/ Sodium Chloride - pharmacology
/ transcription factors
/ Transcription, Genetic - drug effects
2019
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Rice OsDOF15 contributes to ethylene-inhibited primary root elongation under salt stress
by
Qin, Hua
, Peng, Peng
, Gao, Yadi
, Wang, Fangfang
, Zhou, Yun
, Zhang, Yuqiong
, Huang, Rongfeng
, Wang, Juan
, Miao, Yuchen
, Chen, Xinbing
, Zhou, Jiahao
, Qi, Yidong
in
Biosynthetic Pathways - drug effects
/ cell proliferation
/ Cell Proliferation - drug effects
/ DOF transcription factor
/ ethylene
/ ethylene production
/ Ethylenes - biosynthesis
/ Ethylenes - pharmacology
/ Gene Expression Regulation, Plant - drug effects
/ loss-of-function mutation
/ Meristem - anatomy & histology
/ Meristem - drug effects
/ meristem size
/ Oryza - drug effects
/ Oryza - metabolism
/ Oryza sativa
/ Plant Proteins - metabolism
/ Plant Roots - drug effects
/ Plant Roots - growth & development
/ Plant Roots - metabolism
/ Promoter Regions, Genetic - genetics
/ Quantitative Trait, Heritable
/ rice
/ root
/ root growth
/ root meristems
/ salt stress
/ Salt Stress - drug effects
/ seedlings
/ Sodium Chloride - pharmacology
/ transcription factors
/ Transcription, Genetic - drug effects
2019
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Rice OsDOF15 contributes to ethylene-inhibited primary root elongation under salt stress
by
Qin, Hua
, Peng, Peng
, Gao, Yadi
, Wang, Fangfang
, Zhou, Yun
, Zhang, Yuqiong
, Huang, Rongfeng
, Wang, Juan
, Miao, Yuchen
, Chen, Xinbing
, Zhou, Jiahao
, Qi, Yidong
in
Biosynthetic Pathways - drug effects
/ cell proliferation
/ Cell Proliferation - drug effects
/ DOF transcription factor
/ ethylene
/ ethylene production
/ Ethylenes - biosynthesis
/ Ethylenes - pharmacology
/ Gene Expression Regulation, Plant - drug effects
/ loss-of-function mutation
/ Meristem - anatomy & histology
/ Meristem - drug effects
/ meristem size
/ Oryza - drug effects
/ Oryza - metabolism
/ Oryza sativa
/ Plant Proteins - metabolism
/ Plant Roots - drug effects
/ Plant Roots - growth & development
/ Plant Roots - metabolism
/ Promoter Regions, Genetic - genetics
/ Quantitative Trait, Heritable
/ rice
/ root
/ root growth
/ root meristems
/ salt stress
/ Salt Stress - drug effects
/ seedlings
/ Sodium Chloride - pharmacology
/ transcription factors
/ Transcription, Genetic - drug effects
2019
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Rice OsDOF15 contributes to ethylene-inhibited primary root elongation under salt stress
Journal Article
Rice OsDOF15 contributes to ethylene-inhibited primary root elongation under salt stress
2019
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Overview
In early seedlings, the primary root adapts rapidly to environmental changes through the modulation of endogenous hormone levels. The phytohormone ethylene inhibits primary root elongation, but the underlying molecular mechanism of how ethylene-reduced root growth is modulated in environmental changes remains poorly understood.
Here, we show that a novel rice (Oryza sativa) DOF transcription factor OsDOF15 positively regulates primary root elongation by regulating cell proliferation in the root meristem, via restricting ethylene biosynthesis. Loss-of-function of OsDOF15 impaired primary root elongation and cell proliferation in the root meristem, whereas OsDOF15 overexpression enhanced these processes, indicating that OsDOF15 is a key regulator of primary root elongation.
This regulation involves the direct interaction of OsDOF15 with the promoter of OsACS1, resulting in the repression of ethylene biosynthesis. The control of ethylene biosynthesis by OsDOF15 in turn regulates cell proliferation in the root meristem. OsDOF15 transcription is repressed by salt stress, and OsDOF15-mediated ethylene biosynthesis plays a role in inhibition of primary root elongation by salt stress.
Thus, our data reveal how the ethylene-inhibited primary root elongation is finely controlled by OsDOF15 in response to environmental signal, a novel mechanism of plants responding to salt stress and transmitting the information to ethylene biosynthesis to restrict root elongation.
Publisher
Wiley
Subject
Biosynthetic Pathways - drug effects
/ Cell Proliferation - drug effects
/ ethylene
/ Gene Expression Regulation, Plant - drug effects
/ Meristem - anatomy & histology
/ Plant Roots - growth & development
/ Promoter Regions, Genetic - genetics
/ Quantitative Trait, Heritable
/ rice
/ root
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