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「"Radutoiu S "[Author]」の検索結果

37件中 1件~20件表示    検索結果をPubMedで見る PubMedで見る

Microbial associations enabling nitrogen acquisition in plants.

A combination of chitooligosaccharide and lipochitooligosaccharide recognition promotes arbuscular mycorrhizal associations in Medicago truncatula.

Symbiosis Genes Impact Microbial Interactions between Symbionts and Multikingdom Commensal Communities.

A cytoplasmic kinase connects Nod factor perception by the NFR5 LysM receptor to nodulation.

Characterising standard genetic parts and establishing common principles for engineering legume and cereal roots.

Dissection of Ramularia Leaf Spot Disease by Integrated Analysis of Barley and Ramularia collo-cygni Transcriptome Responses.

A Lotus japonicus E3 ligase interacts with the Nod Factor Receptor 5 and positively regulates nodulation.

A plant chitinase controls cortical infection thread progression and nitrogen-fixing symbiosis.

Epidermal LysM receptor ensures robust symbiotic signalling in .

Regulation of Nod factor biosynthesis by alternative NodD proteins at distinct stages of symbiosis provides additional compatibility scrutiny.

LYS12 LysM receptor decelerates Phytophthora palmivora disease progression in Lotus japonicus.

Receptor-mediated chitin perception in legume roots is functionally separable from Nod factor perception.

Legume LysM receptors mediate symbiotic and pathogenic signalling.

N-glycan maturation mutants in Lotus japonicus for basic and applied glycoprotein research.

Differential regulation of the Epr3 receptor coordinates membrane-restricted rhizobial colonization of root nodule primordia.

Root nodule symbiosis in Lotus japonicus drives the establishment of distinctive rhizosphere, root, and nodule bacterial communities.

Intraradical colonization by arbuscular mycorrhizal fungi triggers induction of a lipochitooligosaccharide receptor.

Receptor-mediated exopolysaccharide perception controls bacterial infection.

A legume genetic framework controls infection of nodules by symbiotic and endophytic bacteria.

Expression of major photosynthetic and salt-resistance genes in invasive reed lineages grown under elevated CO2 and temperature.

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