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ADP1 Affects Plant Architecture by Regulating Local Auxin Biosynthesis

Plant architecture is one of the key factors that affect plant survival and productivity. Plant body structure is established through the iterative initiation and outgrowth of lateral organs, which are derived from the shoot apical meristem and root apical meristem, after embryogenesis. Here we repo...

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Autores principales: Li, Ruixi, Li, Jieru, Li, Shibai, Qin, Genji, Novák, Ondřej, Pěnčík, Aleš, Ljung, Karin, Aoyama, Takashi, Liu, Jingjing, Murphy, Angus, Gu, Hongya, Tsuge, Tomohiko, Qu, Li-Jia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3879159/
https://www.ncbi.nlm.nih.gov/pubmed/24391508
http://dx.doi.org/10.1371/journal.pgen.1003954
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author Li, Ruixi
Li, Jieru
Li, Shibai
Qin, Genji
Novák, Ondřej
Pěnčík, Aleš
Ljung, Karin
Aoyama, Takashi
Liu, Jingjing
Murphy, Angus
Gu, Hongya
Tsuge, Tomohiko
Qu, Li-Jia
author_facet Li, Ruixi
Li, Jieru
Li, Shibai
Qin, Genji
Novák, Ondřej
Pěnčík, Aleš
Ljung, Karin
Aoyama, Takashi
Liu, Jingjing
Murphy, Angus
Gu, Hongya
Tsuge, Tomohiko
Qu, Li-Jia
author_sort Li, Ruixi
collection PubMed
description Plant architecture is one of the key factors that affect plant survival and productivity. Plant body structure is established through the iterative initiation and outgrowth of lateral organs, which are derived from the shoot apical meristem and root apical meristem, after embryogenesis. Here we report that ADP1, a putative MATE (multidrug and toxic compound extrusion) transporter, plays an essential role in regulating lateral organ outgrowth, and thus in maintaining normal architecture of Arabidopsis. Elevated expression levels of ADP1 resulted in accelerated plant growth rate, and increased the numbers of axillary branches and flowers. Our molecular and genetic evidence demonstrated that the phenotypes of plants over-expressing ADP1 were caused by reduction of local auxin levels in the meristematic regions. We further discovered that this reduction was probably due to decreased levels of auxin biosynthesis in the local meristematic regions based on the measured reduction in IAA levels and the gene expression data. Simultaneous inactivation of ADP1 and its three closest homologs led to growth retardation, relative reduction of lateral organ number and slightly elevated auxin level. Our results indicated that ADP1-mediated regulation of the local auxin level in meristematic regions is an essential determinant for plant architecture maintenance by restraining the outgrowth of lateral organs.
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spelling pubmed-38791592014-01-03 ADP1 Affects Plant Architecture by Regulating Local Auxin Biosynthesis Li, Ruixi Li, Jieru Li, Shibai Qin, Genji Novák, Ondřej Pěnčík, Aleš Ljung, Karin Aoyama, Takashi Liu, Jingjing Murphy, Angus Gu, Hongya Tsuge, Tomohiko Qu, Li-Jia PLoS Genet Research Article Plant architecture is one of the key factors that affect plant survival and productivity. Plant body structure is established through the iterative initiation and outgrowth of lateral organs, which are derived from the shoot apical meristem and root apical meristem, after embryogenesis. Here we report that ADP1, a putative MATE (multidrug and toxic compound extrusion) transporter, plays an essential role in regulating lateral organ outgrowth, and thus in maintaining normal architecture of Arabidopsis. Elevated expression levels of ADP1 resulted in accelerated plant growth rate, and increased the numbers of axillary branches and flowers. Our molecular and genetic evidence demonstrated that the phenotypes of plants over-expressing ADP1 were caused by reduction of local auxin levels in the meristematic regions. We further discovered that this reduction was probably due to decreased levels of auxin biosynthesis in the local meristematic regions based on the measured reduction in IAA levels and the gene expression data. Simultaneous inactivation of ADP1 and its three closest homologs led to growth retardation, relative reduction of lateral organ number and slightly elevated auxin level. Our results indicated that ADP1-mediated regulation of the local auxin level in meristematic regions is an essential determinant for plant architecture maintenance by restraining the outgrowth of lateral organs. Public Library of Science 2014-01-02 /pmc/articles/PMC3879159/ /pubmed/24391508 http://dx.doi.org/10.1371/journal.pgen.1003954 Text en © 2014 Li et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Li, Ruixi
Li, Jieru
Li, Shibai
Qin, Genji
Novák, Ondřej
Pěnčík, Aleš
Ljung, Karin
Aoyama, Takashi
Liu, Jingjing
Murphy, Angus
Gu, Hongya
Tsuge, Tomohiko
Qu, Li-Jia
ADP1 Affects Plant Architecture by Regulating Local Auxin Biosynthesis
title ADP1 Affects Plant Architecture by Regulating Local Auxin Biosynthesis
title_full ADP1 Affects Plant Architecture by Regulating Local Auxin Biosynthesis
title_fullStr ADP1 Affects Plant Architecture by Regulating Local Auxin Biosynthesis
title_full_unstemmed ADP1 Affects Plant Architecture by Regulating Local Auxin Biosynthesis
title_short ADP1 Affects Plant Architecture by Regulating Local Auxin Biosynthesis
title_sort adp1 affects plant architecture by regulating local auxin biosynthesis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3879159/
https://www.ncbi.nlm.nih.gov/pubmed/24391508
http://dx.doi.org/10.1371/journal.pgen.1003954
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