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NODULE INCEPTION Recruits the Lateral Root Developmental Program for Symbiotic Nodule Organogenesis in Medicago truncatula

To overcome nitrogen deficiencies in the soil, legumes enter symbioses with rhizobial bacteria that convert atmospheric nitrogen into ammonium. Rhizobia are accommodated as endosymbionts within lateral root organs called nodules that initiate from the inner layers of Medicago truncatula roots in res...

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Autores principales: Schiessl, Katharina, Lilley, Jodi L.S., Lee, Tak, Tamvakis, Ioannis, Kohlen, Wouter, Bailey, Paul C., Thomas, Aaron, Luptak, Jakub, Ramakrishnan, Karunakaran, Carpenter, Matthew D., Mysore, Kirankumar S., Wen, Jiangqi, Ahnert, Sebastian, Grieneisen, Veronica A., Oldroyd, Giles E.D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6839406/
https://www.ncbi.nlm.nih.gov/pubmed/31543454
http://dx.doi.org/10.1016/j.cub.2019.09.005
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author Schiessl, Katharina
Lilley, Jodi L.S.
Lee, Tak
Tamvakis, Ioannis
Kohlen, Wouter
Bailey, Paul C.
Thomas, Aaron
Luptak, Jakub
Ramakrishnan, Karunakaran
Carpenter, Matthew D.
Mysore, Kirankumar S.
Wen, Jiangqi
Ahnert, Sebastian
Grieneisen, Veronica A.
Oldroyd, Giles E.D.
author_facet Schiessl, Katharina
Lilley, Jodi L.S.
Lee, Tak
Tamvakis, Ioannis
Kohlen, Wouter
Bailey, Paul C.
Thomas, Aaron
Luptak, Jakub
Ramakrishnan, Karunakaran
Carpenter, Matthew D.
Mysore, Kirankumar S.
Wen, Jiangqi
Ahnert, Sebastian
Grieneisen, Veronica A.
Oldroyd, Giles E.D.
author_sort Schiessl, Katharina
collection PubMed
description To overcome nitrogen deficiencies in the soil, legumes enter symbioses with rhizobial bacteria that convert atmospheric nitrogen into ammonium. Rhizobia are accommodated as endosymbionts within lateral root organs called nodules that initiate from the inner layers of Medicago truncatula roots in response to rhizobial perception. In contrast, lateral roots emerge from predefined founder cells as an adaptive response to environmental stimuli, including water and nutrient availability. CYTOKININ RESPONSE 1 (CRE1)-mediated signaling in the pericycle and in the cortex is necessary and sufficient for nodulation, whereas cytokinin is antagonistic to lateral root development, with cre1 showing increased lateral root emergence and decreased nodulation. To better understand the relatedness between nodule and lateral root development, we undertook a comparative analysis of these two root developmental programs. Here, we demonstrate that despite differential induction, lateral roots and nodules share overlapping developmental programs, with mutants in LOB-DOMAIN PROTEIN 16 (LBD16) showing equivalent defects in nodule and lateral root initiation. The cytokinin-inducible transcription factor NODULE INCEPTION (NIN) allows induction of this program during nodulation through activation of LBD16 that promotes auxin biosynthesis via transcriptional induction of STYLISH (STY) and YUCCAs (YUC). We conclude that cytokinin facilitates local auxin accumulation through NIN promotion of LBD16, which activates a nodule developmental program overlapping with that induced during lateral root initiation.
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spelling pubmed-68394062019-11-12 NODULE INCEPTION Recruits the Lateral Root Developmental Program for Symbiotic Nodule Organogenesis in Medicago truncatula Schiessl, Katharina Lilley, Jodi L.S. Lee, Tak Tamvakis, Ioannis Kohlen, Wouter Bailey, Paul C. Thomas, Aaron Luptak, Jakub Ramakrishnan, Karunakaran Carpenter, Matthew D. Mysore, Kirankumar S. Wen, Jiangqi Ahnert, Sebastian Grieneisen, Veronica A. Oldroyd, Giles E.D. Curr Biol Article To overcome nitrogen deficiencies in the soil, legumes enter symbioses with rhizobial bacteria that convert atmospheric nitrogen into ammonium. Rhizobia are accommodated as endosymbionts within lateral root organs called nodules that initiate from the inner layers of Medicago truncatula roots in response to rhizobial perception. In contrast, lateral roots emerge from predefined founder cells as an adaptive response to environmental stimuli, including water and nutrient availability. CYTOKININ RESPONSE 1 (CRE1)-mediated signaling in the pericycle and in the cortex is necessary and sufficient for nodulation, whereas cytokinin is antagonistic to lateral root development, with cre1 showing increased lateral root emergence and decreased nodulation. To better understand the relatedness between nodule and lateral root development, we undertook a comparative analysis of these two root developmental programs. Here, we demonstrate that despite differential induction, lateral roots and nodules share overlapping developmental programs, with mutants in LOB-DOMAIN PROTEIN 16 (LBD16) showing equivalent defects in nodule and lateral root initiation. The cytokinin-inducible transcription factor NODULE INCEPTION (NIN) allows induction of this program during nodulation through activation of LBD16 that promotes auxin biosynthesis via transcriptional induction of STYLISH (STY) and YUCCAs (YUC). We conclude that cytokinin facilitates local auxin accumulation through NIN promotion of LBD16, which activates a nodule developmental program overlapping with that induced during lateral root initiation. Cell Press 2019-11-04 /pmc/articles/PMC6839406/ /pubmed/31543454 http://dx.doi.org/10.1016/j.cub.2019.09.005 Text en © 2019 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Schiessl, Katharina
Lilley, Jodi L.S.
Lee, Tak
Tamvakis, Ioannis
Kohlen, Wouter
Bailey, Paul C.
Thomas, Aaron
Luptak, Jakub
Ramakrishnan, Karunakaran
Carpenter, Matthew D.
Mysore, Kirankumar S.
Wen, Jiangqi
Ahnert, Sebastian
Grieneisen, Veronica A.
Oldroyd, Giles E.D.
NODULE INCEPTION Recruits the Lateral Root Developmental Program for Symbiotic Nodule Organogenesis in Medicago truncatula
title NODULE INCEPTION Recruits the Lateral Root Developmental Program for Symbiotic Nodule Organogenesis in Medicago truncatula
title_full NODULE INCEPTION Recruits the Lateral Root Developmental Program for Symbiotic Nodule Organogenesis in Medicago truncatula
title_fullStr NODULE INCEPTION Recruits the Lateral Root Developmental Program for Symbiotic Nodule Organogenesis in Medicago truncatula
title_full_unstemmed NODULE INCEPTION Recruits the Lateral Root Developmental Program for Symbiotic Nodule Organogenesis in Medicago truncatula
title_short NODULE INCEPTION Recruits the Lateral Root Developmental Program for Symbiotic Nodule Organogenesis in Medicago truncatula
title_sort nodule inception recruits the lateral root developmental program for symbiotic nodule organogenesis in medicago truncatula
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6839406/
https://www.ncbi.nlm.nih.gov/pubmed/31543454
http://dx.doi.org/10.1016/j.cub.2019.09.005
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