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Two Lotus japonicus symbiosis mutants impaired at distinct steps of arbuscule development.

Identifieur interne : 001C38 ( Main/Corpus ); précédent : 001C37; suivant : 001C39

Two Lotus japonicus symbiosis mutants impaired at distinct steps of arbuscule development.

Auteurs : Martin Groth ; Sonja Kosuta ; Caroline Gutjahr ; Kristina Haage ; Simone Liesel Hardel ; Miriam Schaub ; Andreas Brachmann ; Shusei Sato ; Satoshi Tabata ; Kim Findlay ; Trevor L. Wang ; Martin Parniske

Source :

RBID : pubmed:23627596

English descriptors

Abstract

Arbuscular mycorrhiza (AM) fungi form nutrient-acquiring symbioses with the majority of higher plants. Nutrient exchange occurs via arbuscules, highly branched hyphal structures that are formed within root cortical cells. With a view to identifying host genes involved in AM development, we isolated Lotus japonicus AM-defective mutants via a microscopic screen of an ethyl methanesulfonate-mutagenized population. A standardized mapping procedure was developed that facilitated positioning of the defective loci on the genetic map of L. japonicus, and, in five cases, allowed identification of mutants of known symbiotic genes. Two additional mutants representing independent loci did not form mature arbuscules during symbiosis with two divergent AM fungal species, but exhibited signs of premature arbuscule arrest or senescence. Marker gene expression patterns indicated that the two mutants are affected in distinct steps of arbuscule development. Both mutants formed wild-type-like root nodules upon inoculation with Mesorhizobium loti, indicating that the mutated loci are essential during AM but not during root nodule symbiosis.

DOI: 10.1111/tpj.12220
PubMed: 23627596

Links to Exploration step

pubmed:23627596

Le document en format XML

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<term>Chromosome Mapping (MeSH)</term>
<term>Ethyl Methanesulfonate (pharmacology)</term>
<term>Fungi (growth & development)</term>
<term>Fungi (physiology)</term>
<term>Fungi (ultrastructure)</term>
<term>Gene Expression Regulation, Plant (MeSH)</term>
<term>Genetic Loci (MeSH)</term>
<term>Hyphae (MeSH)</term>
<term>Lotus (genetics)</term>
<term>Lotus (growth & development)</term>
<term>Lotus (microbiology)</term>
<term>Lotus (ultrastructure)</term>
<term>Mesorhizobium (physiology)</term>
<term>Mutation (MeSH)</term>
<term>Mycorrhizae (genetics)</term>
<term>Mycorrhizae (growth & development)</term>
<term>Mycorrhizae (ultrastructure)</term>
<term>Phenotype (MeSH)</term>
<term>Plant Proteins (genetics)</term>
<term>Plant Proteins (metabolism)</term>
<term>Plant Root Nodulation (MeSH)</term>
<term>Plant Roots (genetics)</term>
<term>Plant Roots (microbiology)</term>
<term>Plant Roots (ultrastructure)</term>
<term>Root Nodules, Plant (MeSH)</term>
<term>Sequence Analysis, DNA (MeSH)</term>
<term>Symbiosis (MeSH)</term>
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<term>Plant Proteins</term>
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<term>Plant Proteins</term>
</keywords>
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<term>Ethyl Methanesulfonate</term>
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<keywords scheme="MESH" qualifier="genetics" xml:lang="en">
<term>Lotus</term>
<term>Mycorrhizae</term>
<term>Plant Roots</term>
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<keywords scheme="MESH" qualifier="growth & development" xml:lang="en">
<term>Fungi</term>
<term>Lotus</term>
<term>Mycorrhizae</term>
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<keywords scheme="MESH" qualifier="microbiology" xml:lang="en">
<term>Lotus</term>
<term>Plant Roots</term>
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<term>Mesorhizobium</term>
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<term>Lotus</term>
<term>Mycorrhizae</term>
<term>Plant Roots</term>
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<term>Chromosome Mapping</term>
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<term>Genetic Loci</term>
<term>Hyphae</term>
<term>Mutation</term>
<term>Phenotype</term>
<term>Plant Root Nodulation</term>
<term>Root Nodules, Plant</term>
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<div type="abstract" xml:lang="en">Arbuscular mycorrhiza (AM) fungi form nutrient-acquiring symbioses with the majority of higher plants. Nutrient exchange occurs via arbuscules, highly branched hyphal structures that are formed within root cortical cells. With a view to identifying host genes involved in AM development, we isolated Lotus japonicus AM-defective mutants via a microscopic screen of an ethyl methanesulfonate-mutagenized population. A standardized mapping procedure was developed that facilitated positioning of the defective loci on the genetic map of L. japonicus, and, in five cases, allowed identification of mutants of known symbiotic genes. Two additional mutants representing independent loci did not form mature arbuscules during symbiosis with two divergent AM fungal species, but exhibited signs of premature arbuscule arrest or senescence. Marker gene expression patterns indicated that the two mutants are affected in distinct steps of arbuscule development. Both mutants formed wild-type-like root nodules upon inoculation with Mesorhizobium loti, indicating that the mutated loci are essential during AM but not during root nodule symbiosis.</div>
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<AbstractText>Arbuscular mycorrhiza (AM) fungi form nutrient-acquiring symbioses with the majority of higher plants. Nutrient exchange occurs via arbuscules, highly branched hyphal structures that are formed within root cortical cells. With a view to identifying host genes involved in AM development, we isolated Lotus japonicus AM-defective mutants via a microscopic screen of an ethyl methanesulfonate-mutagenized population. A standardized mapping procedure was developed that facilitated positioning of the defective loci on the genetic map of L. japonicus, and, in five cases, allowed identification of mutants of known symbiotic genes. Two additional mutants representing independent loci did not form mature arbuscules during symbiosis with two divergent AM fungal species, but exhibited signs of premature arbuscule arrest or senescence. Marker gene expression patterns indicated that the two mutants are affected in distinct steps of arbuscule development. Both mutants formed wild-type-like root nodules upon inoculation with Mesorhizobium loti, indicating that the mutated loci are essential during AM but not during root nodule symbiosis.</AbstractText>
<CopyrightInformation>© 2013 The Authors The Plant Journal © 2013 John Wiley & Sons Ltd.</CopyrightInformation>
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<GrantID>BBS/E/J/00000150</GrantID>
<Agency>Biotechnology and Biological Sciences Research Council</Agency>
<Country>United Kingdom</Country>
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<Grant>
<GrantID>83/D15167</GrantID>
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<Country>United Kingdom</Country>
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<MedlineTA>Plant J</MedlineTA>
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<DescriptorName UI="D005020" MajorTopicYN="N">Ethyl Methanesulfonate</DescriptorName>
<QualifierName UI="Q000494" MajorTopicYN="N">pharmacology</QualifierName>
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<MeshHeading>
<DescriptorName UI="D005658" MajorTopicYN="N">Fungi</DescriptorName>
<QualifierName UI="Q000254" MajorTopicYN="N">growth & development</QualifierName>
<QualifierName UI="Q000502" MajorTopicYN="Y">physiology</QualifierName>
<QualifierName UI="Q000648" MajorTopicYN="N">ultrastructure</QualifierName>
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<MeshHeading>
<DescriptorName UI="D018506" MajorTopicYN="Y">Gene Expression Regulation, Plant</DescriptorName>
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<DescriptorName UI="D056426" MajorTopicYN="N">Genetic Loci</DescriptorName>
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<DescriptorName UI="D025301" MajorTopicYN="N">Hyphae</DescriptorName>
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<MeshHeading>
<DescriptorName UI="D000070116" MajorTopicYN="N">Lotus</DescriptorName>
<QualifierName UI="Q000235" MajorTopicYN="Y">genetics</QualifierName>
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<QualifierName UI="Q000382" MajorTopicYN="N">microbiology</QualifierName>
<QualifierName UI="Q000648" MajorTopicYN="N">ultrastructure</QualifierName>
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