Rice actin binding protein RMD controls crown root angle in response to external phosphate

10.1038/s41467-018-04710-x

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Main Authors: Huang, G, Liang, W, Sturrock, C.J, Pandey, B.K, Giri, J, Mairhofer, S, Wang, D, Muller, L, Tan, H, York, L.M, Yang, J, Song, Y, Kim, Y.-J, Qiao, Y, Xu, J, Kepinski, S, Bennett, M.J, Zhang, D
Other Authors: BIOLOGICAL SCIENCES
Format: Article
Published: Nature Publishing Group 2020
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Online Access:https://scholarbank.nus.edu.sg/handle/10635/178406
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spelling sg-nus-scholar.10635-1784062024-04-03T10:35:13Z Rice actin binding protein RMD controls crown root angle in response to external phosphate Huang, G Liang, W Sturrock, C.J Pandey, B.K Giri, J Mairhofer, S Wang, D Muller, L Tan, H York, L.M Yang, J Song, Y Kim, Y.-J Qiao, Y Xu, J Kepinski, S Bennett, M.J Zhang, D BIOLOGICAL SCIENCES actin binding protein complementary DNA F actin phosphate rice morphology determinant protein unclassified drug actin actin binding protein green fluorescent protein indoleacetic acid derivative plant protein gene expression growth phosphate plant breeding protein root system statolith topsoil actin filament Article cell organelle controlled study gravitropism nonhuman plant root cap rice root cell root growth root system sedimentation surface property chemistry gravitropism gravity sensing metabolism micro-computed tomography mutation Oryza physiology plant breeding plant root plant seed temperature upregulation Actin Cytoskeleton Actins Gravitropism Gravity Sensing Green Fluorescent Proteins Indoleacetic Acids Microfilament Proteins Mutation Oryza Phosphates Plant Breeding Plant Proteins Plant Roots Seeds Temperature Up-Regulation X-Ray Microtomography 10.1038/s41467-018-04710-x Nature Communications 9 1 2346 2020-10-20T09:47:05Z 2020-10-20T09:47:05Z 2018 Article Huang, G, Liang, W, Sturrock, C.J, Pandey, B.K, Giri, J, Mairhofer, S, Wang, D, Muller, L, Tan, H, York, L.M, Yang, J, Song, Y, Kim, Y.-J, Qiao, Y, Xu, J, Kepinski, S, Bennett, M.J, Zhang, D (2018). Rice actin binding protein RMD controls crown root angle in response to external phosphate. Nature Communications 9 (1) : 2346. ScholarBank@NUS Repository. https://doi.org/10.1038/s41467-018-04710-x 2041-1723 https://scholarbank.nus.edu.sg/handle/10635/178406 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Nature Publishing Group Unpaywall 20201031
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
topic actin binding protein
complementary DNA
F actin
phosphate
rice morphology determinant protein
unclassified drug
actin
actin binding protein
green fluorescent protein
indoleacetic acid derivative
plant protein
gene expression
growth
phosphate
plant breeding
protein
root system
statolith
topsoil
actin filament
Article
cell organelle
controlled study
gravitropism
nonhuman
plant root cap
rice
root cell
root growth
root system
sedimentation
surface property
chemistry
gravitropism
gravity sensing
metabolism
micro-computed tomography
mutation
Oryza
physiology
plant breeding
plant root
plant seed
temperature
upregulation
Actin Cytoskeleton
Actins
Gravitropism
Gravity Sensing
Green Fluorescent Proteins
Indoleacetic Acids
Microfilament Proteins
Mutation
Oryza
Phosphates
Plant Breeding
Plant Proteins
Plant Roots
Seeds
Temperature
Up-Regulation
X-Ray Microtomography
spellingShingle actin binding protein
complementary DNA
F actin
phosphate
rice morphology determinant protein
unclassified drug
actin
actin binding protein
green fluorescent protein
indoleacetic acid derivative
plant protein
gene expression
growth
phosphate
plant breeding
protein
root system
statolith
topsoil
actin filament
Article
cell organelle
controlled study
gravitropism
nonhuman
plant root cap
rice
root cell
root growth
root system
sedimentation
surface property
chemistry
gravitropism
gravity sensing
metabolism
micro-computed tomography
mutation
Oryza
physiology
plant breeding
plant root
plant seed
temperature
upregulation
Actin Cytoskeleton
Actins
Gravitropism
Gravity Sensing
Green Fluorescent Proteins
Indoleacetic Acids
Microfilament Proteins
Mutation
Oryza
Phosphates
Plant Breeding
Plant Proteins
Plant Roots
Seeds
Temperature
Up-Regulation
X-Ray Microtomography
Huang, G
Liang, W
Sturrock, C.J
Pandey, B.K
Giri, J
Mairhofer, S
Wang, D
Muller, L
Tan, H
York, L.M
Yang, J
Song, Y
Kim, Y.-J
Qiao, Y
Xu, J
Kepinski, S
Bennett, M.J
Zhang, D
Rice actin binding protein RMD controls crown root angle in response to external phosphate
description 10.1038/s41467-018-04710-x
author2 BIOLOGICAL SCIENCES
author_facet BIOLOGICAL SCIENCES
Huang, G
Liang, W
Sturrock, C.J
Pandey, B.K
Giri, J
Mairhofer, S
Wang, D
Muller, L
Tan, H
York, L.M
Yang, J
Song, Y
Kim, Y.-J
Qiao, Y
Xu, J
Kepinski, S
Bennett, M.J
Zhang, D
format Article
author Huang, G
Liang, W
Sturrock, C.J
Pandey, B.K
Giri, J
Mairhofer, S
Wang, D
Muller, L
Tan, H
York, L.M
Yang, J
Song, Y
Kim, Y.-J
Qiao, Y
Xu, J
Kepinski, S
Bennett, M.J
Zhang, D
author_sort Huang, G
title Rice actin binding protein RMD controls crown root angle in response to external phosphate
title_short Rice actin binding protein RMD controls crown root angle in response to external phosphate
title_full Rice actin binding protein RMD controls crown root angle in response to external phosphate
title_fullStr Rice actin binding protein RMD controls crown root angle in response to external phosphate
title_full_unstemmed Rice actin binding protein RMD controls crown root angle in response to external phosphate
title_sort rice actin binding protein rmd controls crown root angle in response to external phosphate
publisher Nature Publishing Group
publishDate 2020
url https://scholarbank.nus.edu.sg/handle/10635/178406
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