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Loose Plant Architecture1 (LPA1) determines lamina joint bending by suppressing auxin signalling that interacts with C-22-hydroxylated and 6-deoxo brassinosteroids in rice

Lamina inclination is a key agronomical character that determines plant architecture and is sensitive to auxin and brassinosteroids (BRs). Loose Plant Architecture1 (LPA1) in rice (Oryza sativa) and its Arabidopsis homologues (SGR5/AtIDD15) have been reported to control plant architecture and auxin...

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Autores principales: Liu, Jing Miao, Park, Soon Ju, Huang, Jin, Lee, Eun Jin, Xuan, Yuan Hu, Je, Byoung Il, Kumar, Vikranth, Priatama, Ryza A., Raj K, Vimal, Kim, Sung Hoon, Min, Myung Ki, Cho, Jun Hyeon, Kim, Tae Ho, Chandran, Anil Kumar Nalini, Jung, Ki Hong, Takatsuto, Suguru, Fujioka, Shozo, Han, Chang-deok
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4783368/
https://www.ncbi.nlm.nih.gov/pubmed/26826218
http://dx.doi.org/10.1093/jxb/erw002
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author Liu, Jing Miao
Park, Soon Ju
Huang, Jin
Lee, Eun Jin
Xuan, Yuan Hu
Je, Byoung Il
Kumar, Vikranth
Priatama, Ryza A.
Raj K, Vimal
Kim, Sung Hoon
Min, Myung Ki
Cho, Jun Hyeon
Kim, Tae Ho
Chandran, Anil Kumar Nalini
Jung, Ki Hong
Takatsuto, Suguru
Fujioka, Shozo
Han, Chang-deok
author_facet Liu, Jing Miao
Park, Soon Ju
Huang, Jin
Lee, Eun Jin
Xuan, Yuan Hu
Je, Byoung Il
Kumar, Vikranth
Priatama, Ryza A.
Raj K, Vimal
Kim, Sung Hoon
Min, Myung Ki
Cho, Jun Hyeon
Kim, Tae Ho
Chandran, Anil Kumar Nalini
Jung, Ki Hong
Takatsuto, Suguru
Fujioka, Shozo
Han, Chang-deok
author_sort Liu, Jing Miao
collection PubMed
description Lamina inclination is a key agronomical character that determines plant architecture and is sensitive to auxin and brassinosteroids (BRs). Loose Plant Architecture1 (LPA1) in rice (Oryza sativa) and its Arabidopsis homologues (SGR5/AtIDD15) have been reported to control plant architecture and auxin homeostasis. This study explores the role of LPA1 in determining lamina inclination in rice. LPA1 acts as a positive regulator to suppress lamina bending. Genetic and biochemical data indicate that LPA1 suppresses the auxin signalling that interacts with C-22-hydroxylated and 6-deoxo BRs, which regulates lamina inclination independently of OsBRI1. Mutant lpa1 plants are hypersensitive to indole-3-acetic acid (IAA) during the lamina inclination response, which is suppressed by the brassinazole (Brz) inhibitor of C-22 hydroxylase involved in BR synthesis. A strong synergic effect is detected between lpa1 and d2 (the defective mutant for catalysis of C-23-hydroxylated BRs) during IAA-mediated lamina inclination. No significant interaction between LPA1 and OsBRI1 was identified. The lpa1 mutant is sensitive to C-22-hydroxylated and 6-deoxo BRs in the d61-1 (rice BRI1 mutant) background. We present evidence verifying that two independent pathways function via either BRs or BRI1 to determine IAA-mediated lamina inclination in rice. RNA sequencing analysis and qRT-PCR indicate that LPA1 influences the expression of three OsPIN genes (OsPIN1a, OsPIN1c and OsPIN3a), which suggests that auxin flux might be an important factor in LPA1-mediated lamina inclination in rice.
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spelling pubmed-47833682016-03-10 Loose Plant Architecture1 (LPA1) determines lamina joint bending by suppressing auxin signalling that interacts with C-22-hydroxylated and 6-deoxo brassinosteroids in rice Liu, Jing Miao Park, Soon Ju Huang, Jin Lee, Eun Jin Xuan, Yuan Hu Je, Byoung Il Kumar, Vikranth Priatama, Ryza A. Raj K, Vimal Kim, Sung Hoon Min, Myung Ki Cho, Jun Hyeon Kim, Tae Ho Chandran, Anil Kumar Nalini Jung, Ki Hong Takatsuto, Suguru Fujioka, Shozo Han, Chang-deok J Exp Bot Research Paper Lamina inclination is a key agronomical character that determines plant architecture and is sensitive to auxin and brassinosteroids (BRs). Loose Plant Architecture1 (LPA1) in rice (Oryza sativa) and its Arabidopsis homologues (SGR5/AtIDD15) have been reported to control plant architecture and auxin homeostasis. This study explores the role of LPA1 in determining lamina inclination in rice. LPA1 acts as a positive regulator to suppress lamina bending. Genetic and biochemical data indicate that LPA1 suppresses the auxin signalling that interacts with C-22-hydroxylated and 6-deoxo BRs, which regulates lamina inclination independently of OsBRI1. Mutant lpa1 plants are hypersensitive to indole-3-acetic acid (IAA) during the lamina inclination response, which is suppressed by the brassinazole (Brz) inhibitor of C-22 hydroxylase involved in BR synthesis. A strong synergic effect is detected between lpa1 and d2 (the defective mutant for catalysis of C-23-hydroxylated BRs) during IAA-mediated lamina inclination. No significant interaction between LPA1 and OsBRI1 was identified. The lpa1 mutant is sensitive to C-22-hydroxylated and 6-deoxo BRs in the d61-1 (rice BRI1 mutant) background. We present evidence verifying that two independent pathways function via either BRs or BRI1 to determine IAA-mediated lamina inclination in rice. RNA sequencing analysis and qRT-PCR indicate that LPA1 influences the expression of three OsPIN genes (OsPIN1a, OsPIN1c and OsPIN3a), which suggests that auxin flux might be an important factor in LPA1-mediated lamina inclination in rice. Oxford University Press 2016-04 2016-01-29 /pmc/articles/PMC4783368/ /pubmed/26826218 http://dx.doi.org/10.1093/jxb/erw002 Text en © The Author 2016. Published by Oxford University Press on behalf of the Society for Experimental Biology. http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Liu, Jing Miao
Park, Soon Ju
Huang, Jin
Lee, Eun Jin
Xuan, Yuan Hu
Je, Byoung Il
Kumar, Vikranth
Priatama, Ryza A.
Raj K, Vimal
Kim, Sung Hoon
Min, Myung Ki
Cho, Jun Hyeon
Kim, Tae Ho
Chandran, Anil Kumar Nalini
Jung, Ki Hong
Takatsuto, Suguru
Fujioka, Shozo
Han, Chang-deok
Loose Plant Architecture1 (LPA1) determines lamina joint bending by suppressing auxin signalling that interacts with C-22-hydroxylated and 6-deoxo brassinosteroids in rice
title Loose Plant Architecture1 (LPA1) determines lamina joint bending by suppressing auxin signalling that interacts with C-22-hydroxylated and 6-deoxo brassinosteroids in rice
title_full Loose Plant Architecture1 (LPA1) determines lamina joint bending by suppressing auxin signalling that interacts with C-22-hydroxylated and 6-deoxo brassinosteroids in rice
title_fullStr Loose Plant Architecture1 (LPA1) determines lamina joint bending by suppressing auxin signalling that interacts with C-22-hydroxylated and 6-deoxo brassinosteroids in rice
title_full_unstemmed Loose Plant Architecture1 (LPA1) determines lamina joint bending by suppressing auxin signalling that interacts with C-22-hydroxylated and 6-deoxo brassinosteroids in rice
title_short Loose Plant Architecture1 (LPA1) determines lamina joint bending by suppressing auxin signalling that interacts with C-22-hydroxylated and 6-deoxo brassinosteroids in rice
title_sort loose plant architecture1 (lpa1) determines lamina joint bending by suppressing auxin signalling that interacts with c-22-hydroxylated and 6-deoxo brassinosteroids in rice
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4783368/
https://www.ncbi.nlm.nih.gov/pubmed/26826218
http://dx.doi.org/10.1093/jxb/erw002
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