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kw.\*:("Lotus corniculatus")

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Transgenic superroots of Lotus corniculatus can be regenerated from superroot-derived leaves following Agrobacterium-mediated transformationTANAKA, Hidenori; TOYAMA, Jun; HASHIGUCHI, Masatsugu et al.Journal of plant physiology. 2008, Vol 165, Num 12, pp 1313-1316, issn 0176-1617, 4 p.Article

Tissue-Specific Transcriptome Analysis in Nodules of Lotus japonicusTAKANASHI, Kojiro; TAKAHASHI, Hirokazu; SAKURAI, Nozomu et al.Molecular plant-microbe interactions. 2012, Vol 25, Num 7, pp 869-876, issn 0894-0282, 8 p.Article

The β-Glucosidases Responsible for Bioactivation of Hydroxynitrile Glucosides in Lotus japonicusMORANT, Anne Vinther; BJARNHOLT, Nanna; BAK, Søren et al.Plant physiology (Bethesda). 2008, Vol 147, Num 3, pp 1072-1091, issn 0032-0889, 20 p.Article

Evolution and Regulation of the Lotus japonicus LysM Receptor Gene FamilyLOHMANN, Gitte Vestergaard; SHIMODA, Yoshikazu; SATO, Shusei et al.Molecular plant-microbe interactions. 2010, Vol 23, Num 4, pp 510-521, issn 0894-0282, 12 p.Article

AN INVESTIGATION INTO THE MECHANISM FOR REDUCED SEED YIELD IN LOTUS CORNICULATUSDOBROFSKY S; GRANT WF.1980; THEOR. APPL. GENET.; DEU; DA. 1980; VOL. 57; NO 4; PP. 157-160; BIBL. 11 REF.Article

Generation and Characterization of Interspecific Hybrids of Lotus uliginosus × Lotus corniculatusCASTILLO, A; REBUFFO, M; RIZZA, M. Dalla et al.Crop science. 2012, Vol 52, Num 4, pp 1572-1582, issn 0011-183X, 11 p.Article

A Positive Regulatory Role for LjERFl in the Nodulation Process Is Revealed by Systematic Analysis of Nodule-Associated Transcription Factors of Lotus japonicusASAMIZU, Erika; SHIMODA, Yoshikazu; KOUCHI, Hiroshi et al.Plant physiology (Bethesda). 2008, Vol 147, Num 4, pp 2030-2040, issn 0032-0889, 11 p.Article

Recurrent selection for glyphosate tolerance in birdsfoot trefoilBOERBOOM, C. M; EHLKE, N. J; WYSE, D. L et al.Crop science. 1991, Vol 31, Num 5, pp 1124-1129, issn 0011-183XArticle

Inheritance of tannins in birdsfoot trefoilDALRYMPLE, E. J; GOPLEN, B. P; HOWARTH, R. E et al.Crop science. 1984, Vol 24, Num 5, pp 921-923, issn 0011-183XArticle

The Small GTPase ROP6 Interacts with NFR5 and Is Involved in Nodule Formation in Lotus japonicusDANXIA KE; QING FANG; ZHONGMING ZHANG et al.Plant physiology (Bethesda). 2012, Vol 159, Num 1, pp 131-143, issn 0032-0889, 13 p.Article

Characterization of a Developmental Root Response Caused by External Ammonium Supply in Lotus japonicusROGATO, Alessandra; D'APUZZO, Enrica; BARBULOVA, Ani et al.Plant physiology (Bethesda). 2010, Vol 154, Num 2, pp 784-795, issn 0032-0889, 12 p.Article

The Mesorhizobium loti purB gene is involved in infection thread formation and nodule development in Lotus japonicusOKAZAKI, Shin; HATTORI, Yoshiyuki; SAEKI, Kazuhiko et al.Journal of bacteriology. 2007, Vol 189, Num 22, pp 8347-8352, issn 0021-9193, 6 p.Article

De novo alanine synthesis by bacteroids of Mesorhizobium loti is not required for nitrogen transfer in the determinate nodules of Lotus corniculatusKUMAR, Shalini; BOURDES, Alexandre; POOLE, Philip et al.Journal of bacteriology. 2005, Vol 187, Num 15, pp 5493-5495, issn 0021-9193, 3 p.Article

Cytokinin Induction of Root Nodule Primordia in Lotus japonicus Is Regulated by a Mechanism Operating in the Root CortexHECKMANN, Anne Birgitte; SANDAL, Niels; BEK, Anita Sondergaard et al.Molecular plant-microbe interactions. 2011, Vol 24, Num 11, pp 1385-1395, issn 0894-0282, 11 p.Article

The effect of provenance on the establishment and performance of Lotus corniculatus L. in a re-creation environmentSMITH, Barbara Maria; DIAZ, Anita; WINDER, Linton et al.Biological conservation. 2005, Vol 125, Num 1, pp 37-46, issn 0006-3207, 10 p.Article

Activation of a Lotus japonicus Subtilase Gene During Arbuscular Mycorrhiza Is Dependent on the Common Symbiosis Genes and Two cis-Active Promoter RegionsTAKEDA, Naoya; HAAGE, Kristina; SATO, Shusei et al.Molecular plant-microbe interactions. 2011, Vol 24, Num 6, pp 662-670, issn 0894-0282, 9 p.Article

Phosphoproteome Analysis of Lotus japonicus Roots Reveals Shared and Distinct Components of Symbiosis and DefenseSERNA-SANZ, Antonio; PARNISKE, Martin; PECK, Scott C et al.Molecular plant-microbe interactions. 2011, Vol 24, Num 8, pp 932-937, issn 0894-0282, 6 p.Article

A Suite of Lotus japonicus Starch Mutants Reveals Both Conserved and Novel Features of Starch MetabolismVRIET, Cécile; WELHAM, Tracey; WANG, Trevor L et al.Plant physiology (Bethesda). 2010, Vol 154, Num 2, pp 643-655, issn 0032-0889, 13 p.Article

A two-component nodule-specific enhancer in the soybean N23 gene promoterJØRGENSEN, J.-E; STOUGAARD, J; MARCKER, K. A et al.(The) Plant cell. 1991, Vol 3, Num 8, pp 819-827Article

A Novel Interaction between CCaMK and a Protein Containing the Scythe_N Ubiquitin-Like Domain in Lotus japonicusHENG KANG; HUI ZHU; XIAOJIE CHU et al.Plant physiology (Bethesda). 2011, Vol 155, Num 3, pp 1312-1324, issn 0032-0889, 13 p.Article

Molecular and Biochemical Characterization of the Parvulin-Type PPIases in Lotus japonicusKOURI, Evangelia D; LABROU, Nikolaos E; GARBIS, Spiros D et al.Plant physiology (Bethesda). 2009, Vol 150, Num 3, pp 1160-1173, issn 0032-0889, 14 p.Article

Proanthocyanidins from Lotus corniculatusFOO, L. Y; NEWMAN, R; WAGHORN, G et al.Phytochemistry. 1996, Vol 41, Num 2, pp 617-624, issn 0031-9422Article

High regeneration potential of root segments of Lotus corniculatus L. seedlings on hormone free mediaRYBCZYNSKI, J. J; BADZIAN, T.Plant science (Limerick). 1987, Vol 51, Num 2-3, pp 239-244, issn 0168-9452Article

Variation among plants regenerated from tissue culture of Lotus corniculatus LDAMIANI, F; MARIOTTI, D; PEZZOTTI, M et al.Zeitschrift für Pflanzenzüchtung. 1985, Vol 94, Num 4, pp 332-339, issn 0044-3298Article

TOO MUCH LOVE, a Root Regulator Associated with the Long-Distance Control of Nodulation in Lotus japonicusMAGORI, Shimpei; OKA-KIRA, Erika; SHIBATA, Satoshi et al.Molecular plant-microbe interactions. 2009, Vol 22, Num 3, pp 259-268, issn 0894-0282, 10 p.Article

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