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20 Hits
Search Condition : Filter (MeSH = Lotus* / metabolism)
Species
Resource
RRC ID
Title
Journal
Published
Link
Lotus / Glycine
Gifu B-129
81434
Mapping the molecular landscape of Lotus japonicus nodule organogenesis through spatiotemporal transcriptomics
Nature Communications
2024-7-29
Pubmed
Full text
Lotus / Glycine
MG-20
81429
The enigmatic enzyme ‘amidoxime reducing component’ of
Lotus japonicus
. Characterization, expression, activity in plant tissues, and proposed role as a nitric oxide‐forming nitrite reductase
Physiologia Plantarum
2024-7-1
Pubmed
Full text
Lotus / Glycine
Gifu B-129
81425
Spatially and temporally distinct Ca2+ changes in
Lotus japonicus
roots orient fungal-triggered signalling pathways towards symbiosis or immunity
Journal of Experimental Botany
2024-1-10
Pubmed
Full text
Lotus / Glycine
Gifu B-129
,
Miyakojima MG-20
79466
Aquaporin LjNIP1;5 positively modulates drought tolerance by promoting arbuscular mycorrhizal symbiosis in Lotus japonicus
Plant Science
2024-5-1
Pubmed
Full text
Lotus / Glycine
Gifu B-129
79462
Regulation of nitric oxide by phytoglobins in Lotus japonicus is involved in mycorrhizal symbiosis with Rhizophagus irregularis
Plant Science
2024-3-1
Pubmed
Full text
Lotus / Glycine
Gifu B-129
79451
Long‐ and short‐read sequencing methods discover distinct circular RNA pools in
Lotus japonicus
The Plant Genome
2024-3-1
Pubmed
Full text
Lotus / Glycine
Miyakojima MG-20
78216
Functional characterization of polyol/monosaccharide transporter 1 in Lotus japonicus
Journal of Plant Physiology
2024-1-1
Pubmed
Full text
Lotus / Glycine
MG-20, GifuB-129
78208
Heme catabolism mediated by heme oxygenase in uninfected interstitial cells enables efficient symbiotic nitrogen fixation in
Lotus japonicus
nodules
New Phytologist
2023-9-1
Pubmed
Full text
Lotus / Glycine
Gifu B-129
78207
A glycan receptor kinase facilitates intracellular accommodation of arbuscular mycorrhiza and symbiotic rhizobia in the legume Lotus japonicus
PLOS Biology
2023-5-18
Pubmed
Full text
Lotus / Glycine
Miyakojima MG-20
75619
A transcription factor of the
NAC
family regulates nitrate‐induced legume nodule senescence
New Phytologist
2023-6-1
Pubmed
Full text
Lotus / Glycine
Miyakojima MG-20
75618
Overexpression of LjPLT3 Enhances Salt Tolerance in Lotus japonicus
International Journal of Molecular Sciences
2023-3-8
Pubmed
Full text
Lotus / Glycine
Gifu B-129, MG-20
74002
RPG interacts with E3-ligase CERBERUS to mediate rhizobial infection in Lotus japonicus
PLOS Genetics
2023-2-3
Pubmed
Full text
Lotus / Glycine
Gifu B-129, MG-20
73703
Roles of AGD2a in Plant Development and Microbial Interactions of Lotus japonicus
International Journal of Molecular Sciences
2022-6-20
Pubmed
Full text
Lotus / Glycine
Miyakojima MG-20
,
Gifu B-129
72628
Characterization of zinc uptake and translocation visualized with positron-emitting 65Zn tracer and analysis of transport-related gene expression in two
Lotus japonicus
accessions
Annals of Botany
2022-8-10
Pubmed
Full text
Lotus / Glycine
Miyakojima MG-20
71526
Lotus japonicus HAR1 regulates root morphology locally and systemically under a moderate nitrate condition in the absence of rhizobia.
Planta
2022-3-29
Pubmed
Full text
Lotus / Glycine
Gifu B-129
71524
A CCaMK/Cyclops response element in the promoter of Lotus japonicus calcium-binding protein 1 (CBP1) mediates transcriptional activation in root symbioses.
New Phytol
2022-3-23
Pubmed
Full text
Lotus / Glycine
Miyakojima MG-20
71520
Nitrate transport via NRT2.1 mediates NIN-LIKE PROTEIN-dependent suppression of root nodulation in Lotus japonicus.
Plant Cell
2022-2-11
Pubmed
Full text
Lotus / Glycine
Gifu B-129
71503
CERBERUS is critical for stabilization of VAPYRIN during rhizobial infection in Lotus japonicus.
New Phytol
2021-2-1
Pubmed
Full text
Lotus / Glycine
pUB-GFP
64926
Transcriptional regulation of NIN expression by IPN2 is required for root nodule symbiosis in Lotus japonicus.
New Phytol
2020-3-18
Pubmed
Full text
Lotus / Glycine
RIL
64723
Natural variation identifies a Pxy gene controlling vascular organisation and formation of nodules and lateral roots in Lotus japonicus
New Phytologist
2021-3-23
Pubmed
Full text