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Hemoglobin LjGlb1-1 is involved in nodulation and regulates the level of nitric oxide in the Lotus japonicus–Mesorhizobium loti symbiosis

Leghemoglobins transport and deliver O(2) to the symbiosomes inside legume nodules and are essential for nitrogen fixation. However, the roles of other hemoglobins (Hbs) in the rhizobia–legume symbiosis are unclear. Several Lotus japonicus mutants affecting LjGlb1-1, a non-symbiotic class 1 Hb, have...

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Autores principales: Fukudome, Mitsutaka, Calvo-Begueria, Laura, Kado, Tomohiro, Osuki, Ken-ichi, Rubio, Maria Carmen, Murakami, Ei-ichi, Nagata, Maki, Kucho, Ken-ichi, Sandal, Niels, Stougaard, Jens, Becana, Manuel, Uchiumi, Toshiki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5014168/
https://www.ncbi.nlm.nih.gov/pubmed/27443280
http://dx.doi.org/10.1093/jxb/erw290
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author Fukudome, Mitsutaka
Calvo-Begueria, Laura
Kado, Tomohiro
Osuki, Ken-ichi
Rubio, Maria Carmen
Murakami, Ei-ichi
Nagata, Maki
Kucho, Ken-ichi
Sandal, Niels
Stougaard, Jens
Becana, Manuel
Uchiumi, Toshiki
author_facet Fukudome, Mitsutaka
Calvo-Begueria, Laura
Kado, Tomohiro
Osuki, Ken-ichi
Rubio, Maria Carmen
Murakami, Ei-ichi
Nagata, Maki
Kucho, Ken-ichi
Sandal, Niels
Stougaard, Jens
Becana, Manuel
Uchiumi, Toshiki
author_sort Fukudome, Mitsutaka
collection PubMed
description Leghemoglobins transport and deliver O(2) to the symbiosomes inside legume nodules and are essential for nitrogen fixation. However, the roles of other hemoglobins (Hbs) in the rhizobia–legume symbiosis are unclear. Several Lotus japonicus mutants affecting LjGlb1-1, a non-symbiotic class 1 Hb, have been used to study the function of this protein in symbiosis. Two TILLING alleles with single amino acid substitutions (A102V and E127K) and a LORE1 null allele with a retrotransposon insertion in the 5′-untranslated region (96642) were selected for phenotyping nodulation. Plants of all three mutant lines showed a decrease in long infection threads and nodules, and an increase in incipient infection threads. About 4h after inoculation, the roots of mutant plants exhibited a greater transient accumulation of nitric oxide (NO) than did the wild-type roots; nevertheless, in vitro NO dioxygenase activities of the wild-type, A102V, and E127K proteins were similar, suggesting that the mutated proteins are not fully functional in vivo. The expression of LjGlb1-1, but not of the other class 1 Hb of L. japonicus (LjGlb1-2), was affected during infection of wild-type roots, further supporting a specific role for LjGlb1-1. In conclusion, the LjGlb1-1 mutants reveal that this protein is required during rhizobial infection and regulates NO levels.
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spelling pubmed-50141682016-09-09 Hemoglobin LjGlb1-1 is involved in nodulation and regulates the level of nitric oxide in the Lotus japonicus–Mesorhizobium loti symbiosis Fukudome, Mitsutaka Calvo-Begueria, Laura Kado, Tomohiro Osuki, Ken-ichi Rubio, Maria Carmen Murakami, Ei-ichi Nagata, Maki Kucho, Ken-ichi Sandal, Niels Stougaard, Jens Becana, Manuel Uchiumi, Toshiki J Exp Bot Research Paper Leghemoglobins transport and deliver O(2) to the symbiosomes inside legume nodules and are essential for nitrogen fixation. However, the roles of other hemoglobins (Hbs) in the rhizobia–legume symbiosis are unclear. Several Lotus japonicus mutants affecting LjGlb1-1, a non-symbiotic class 1 Hb, have been used to study the function of this protein in symbiosis. Two TILLING alleles with single amino acid substitutions (A102V and E127K) and a LORE1 null allele with a retrotransposon insertion in the 5′-untranslated region (96642) were selected for phenotyping nodulation. Plants of all three mutant lines showed a decrease in long infection threads and nodules, and an increase in incipient infection threads. About 4h after inoculation, the roots of mutant plants exhibited a greater transient accumulation of nitric oxide (NO) than did the wild-type roots; nevertheless, in vitro NO dioxygenase activities of the wild-type, A102V, and E127K proteins were similar, suggesting that the mutated proteins are not fully functional in vivo. The expression of LjGlb1-1, but not of the other class 1 Hb of L. japonicus (LjGlb1-2), was affected during infection of wild-type roots, further supporting a specific role for LjGlb1-1. In conclusion, the LjGlb1-1 mutants reveal that this protein is required during rhizobial infection and regulates NO levels. Oxford University Press 2016-09 2016-07-21 /pmc/articles/PMC5014168/ /pubmed/27443280 http://dx.doi.org/10.1093/jxb/erw290 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
Fukudome, Mitsutaka
Calvo-Begueria, Laura
Kado, Tomohiro
Osuki, Ken-ichi
Rubio, Maria Carmen
Murakami, Ei-ichi
Nagata, Maki
Kucho, Ken-ichi
Sandal, Niels
Stougaard, Jens
Becana, Manuel
Uchiumi, Toshiki
Hemoglobin LjGlb1-1 is involved in nodulation and regulates the level of nitric oxide in the Lotus japonicus–Mesorhizobium loti symbiosis
title Hemoglobin LjGlb1-1 is involved in nodulation and regulates the level of nitric oxide in the Lotus japonicus–Mesorhizobium loti symbiosis
title_full Hemoglobin LjGlb1-1 is involved in nodulation and regulates the level of nitric oxide in the Lotus japonicus–Mesorhizobium loti symbiosis
title_fullStr Hemoglobin LjGlb1-1 is involved in nodulation and regulates the level of nitric oxide in the Lotus japonicus–Mesorhizobium loti symbiosis
title_full_unstemmed Hemoglobin LjGlb1-1 is involved in nodulation and regulates the level of nitric oxide in the Lotus japonicus–Mesorhizobium loti symbiosis
title_short Hemoglobin LjGlb1-1 is involved in nodulation and regulates the level of nitric oxide in the Lotus japonicus–Mesorhizobium loti symbiosis
title_sort hemoglobin ljglb1-1 is involved in nodulation and regulates the level of nitric oxide in the lotus japonicus–mesorhizobium loti symbiosis
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5014168/
https://www.ncbi.nlm.nih.gov/pubmed/27443280
http://dx.doi.org/10.1093/jxb/erw290
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