Search Items: Arabidopsis thaliana, . hits: 32
** Boonyanan, P; Imsoonthornruksa, S; Seifert, G; Cairns, MK A Model for Pharmaceutical Proteins Production from Arabidopsis Suspension Culture.
CHIANG MAI J SCI. 2022; 49(4): 1028-1039. WoS FullText FullText_BOKU** Jabre, I; Chaudhary, S; Guo, W; Kalyna, M; Reddy, ASN; Chen, W; Zhang, R; Wilson, C; Syed, NH; Differential nucleosome occupancy modulates alternative splicing in Arabidopsis thaliana..
** Rebaque, D; Del Hierro, I; López, G; Bacete, L; Vilaplana, F; Dallabernardina, P; Pfrengle, F; Jordá, L; Sánchez-Vallet, A; Pérez, R; Brunner, F; Molina, A; Mélida, H; Cell wall-derived mixed-linked β-1,3/1,4-glucans trigger immune responses and disease resistance in plants..
** Borassi, C; Dorosz, JG; Ricardi, MM; Sardoy, MC; Fachin, LP; Marzol, E; Mangano, S; Garcia, DRR; Pacheco, JM; Guerrero, YDR; Velasquez, SM; Villavicencio, B; Ciancia, M; Seifert, G; Verli, H; Estevez, JM A cell surface arabinogalactan-peptide influences root hair cell fate.
NEW PHYTOL. 2020; 227(3): 732-743. WoS PubMed FullText FullText_BOKU** Kanno, T; Venhuizen, P; Wu, MT; Chiou, P; Chang, CL; Kalyna, M; Matzke, AJM; Matzke, M; A Collection of Pre-mRNA Splicing Mutants in .
** Melo, JP; Kalyna, M; Duque, P; Current Challenges in Studying Alternative Splicing in Plants: The Case of .
** Soares, A; Niedermaier, S; Faro, R; Loos, A; Manadas, B; Faro, C; Huesgen, PF; Cheung, AY; Simoes, I An atypical aspartic protease modulates lateral root development in Arabidopsis thaliana.
** Kanno, T; Venhuizen, P; Wen, TN; Lin, WD; Chiou, P; Kalyna, M; Matzke, AJM; Matzke, M; PRP4KA, a Putative Spliceosomal Protein Kinase, Is Important for Alternative Splicing and Development in .
** Kohanová, J; Martinka, M; Vaculík, M; White, PJ; Hauser, MT; Lux, A; Root hair abundance impacts cadmium accumulation in Arabidopsis thaliana shoots..
** Yoshinari, A; Korbei, B; Takano, J TOL proteins mediate vacuolar sorting of the borate transporter BOR1 in Arabidopsis thaliana.
SOIL SCI PLANT NUTR. 2018; 64(5): 598-605. WoS FullText FullText_BOKU** Xue, H; Veit, C; Abas, L; Tryfona, T; Maresch, D; Ricardi, MM; Estevez, JM; Strasser, R; Seifert, GJ Arabidopsis thaliana FLA4 functions as a glycan-stabilized soluble factor via its carboxy-proximal Fasciclin 1 domain.
PLANT J. 2017; 91(4): 613-630. WoS PubMed FullText FullText_BOKU** Steiner, A; Rybak, K; Altmann, M; McFarlane, HE; Klaeger, S; Nguyen, N; Facher, E; Ivakov, A; Wanner, G; Kuster, B; Persson, S; Braun, P; Hauser, MT; Assaad, FF Cell cycle-regulated PLEIADE/AtMAP65-3 links membrane and microtubule dynamics during plant cytokinesis.
** Zhang, R; Calixto, CP; Tzioutziou, NA; James, AB; Simpson, CG; Guo, W; Marquez, Y; Kalyna, M; Patro, R; Eyras, E; Barta, A; Nimmo, HG; Brown, JW; AtRTD - a comprehensive reference transcript dataset resource for accurate quantification of transcript-specific expression in Arabidopsis thaliana..
New Phytol. 2015; 208(1):96-101 WoS PubMed FullText FullText_BOKU** Schoberer, J; Liebminger, E; Vavra, U; Veit, C; Castilho, A; Dicker, M; Maresch, D; Altmann, F; Hawes, C; Botchway, SW; Strasser, R; The transmembrane domain of N -acetylglucosaminyltransferase I is the key determinant for its Golgi subcompartmentation..
** Seifert, GJ; Xue, H; Acet, T; The Arabidopsis thaliana FASCICLIN LIKE ARABINOGALACTAN PROTEIN 4 gene acts synergistically with abscisic acid signalling to control root growth..
** Tanaka, H; Nodzynski, T; Kitakura, S; Feraru, MI; Sasabe, M; Ishikawa, T; Kleine-Vehn, J; Kakimoto, T; Friml, J BEX1/ARF1A1C is Required for BFA-Sensitive Recycling of PIN Auxin Transporters and Auxin-Mediated Development in Arabidopsis.
PLANT CELL PHYSIOL. 2014; 55(4): 737-749. WoS FullText FullText_BOKU** Ali, MA; Plattner, S; Radakovic, Z; Wieczorek, K; Elashry, A; Grundler, FM; Ammelburg, M; Siddique, S; Bohlmann, H An Arabidopsis ATPase gene involved in nematode-induced syncytium development and abiotic stress responses..
** Pabst, M; Fischl, RM; Brecker, L; Morelle, W; Fauland, A; Kofeler, H; Altmann, F; Leonard, R Rhamnogalacturonan II structure shows variation in the side chains monosaccharide composition and methylation status within and across different plant species.
PLANT J. 2013; 76(1): 61-72. WoS FullText FullText_BOKU** Liebminger, E; Grass, J; Jez, J; Neumann, L; Altmann, F; Strasser, R; Myrosinases TGG1 and TGG2 from Arabidopsis thaliana contain exclusively oligomannosidic N-glycans..
** Fischl, RM; Stadlmann, J; Grass, J; Altmann, F; Léonard, R; The two endo-β-N-acetylglucosaminidase genes from Arabidopsis thaliana encode cytoplasmic enzymes controlling free N-glycan levels..
Plant Mol Biol. 2011; 77(3):275-284 WoS PubMed FullText FullText_BOKU** Abas, L; Luschnig, C; Maximum yields of microsomal-type membranes from small amounts of plant material without requiring ultracentrifugation..
** Léonard, R; Pabst, M; Bondili, JS; Chambat, G; Veit, C; Strasser, R; Altmann, F; Identification of an Arabidopsis gene encoding a GH95 alpha1,2-fucosidase active on xyloglucan oligo- and polysaccharides..
Phytochemistry. 2008; 69(10):1983-1988 WoS PubMed FullText FullText_BOKU** Szakasits, D; Siddique, S; Bohlmann, H An improved pPZP vector for Agrobacterium-mediated plant transformation.
PL MOL BIOL REP. 2007; 25(3-4): 115-120. WoS FullText FullText_BOKU** Berthiller, F; Werner, U; Sulyok, M; Krska, R; Hauser, MT; Schuhmacher, R Liquid chromatography coupled to tandem mass spectrometry (LC-MS/MS) determination of phase II metabolites of the mycotoxin zearalenone in the model plant Arabidopsis thaliana..
** Strasser, R; Schoberer, J; Jin, C; Glössl, J; Mach, L; Steinkellner, H; Molecular cloning and characterization of Arabidopsis thaliana Golgi alpha-mannosidase II, a key enzyme in the formation of complex N-glycans in plants..
Plant J. 2006; 45(5):789-803 WoS PubMed FullText FullText_BOKU** Strasser, R; Stadlmann, J; Svoboda, B; Altmann, F; Glössl, J; Mach, L Molecular basis of N-acetylglucosaminyltransferase I deficiency in Arabidopsis thaliana plants lacking complex N-glycans..
** Strasser, R; Altmann, F; Mach, L; Glössl, J; Steinkellner, H; Generation of Arabidopsis thaliana plants with complex N-glycans lacking beta1,2-linked xylose and core alpha1,3-linked fucose..
** Takeda, S; Tadele, Z; Hofmann, I; Probst, AV; Angelis, KJ; Kaya, H; Araki, T; Mengiste, T; Scheid, OM; Shibahara, K; Scheel, D; Paszkowski, J BRU1, a novel link between responses to DNA damage and epigenetic gene silencing in Arabidopsis.
GENE DEVELOP. 2004; 18(7): 782-793. WoS FullText FullText_BOKU** Torres Acosta, JA; de Almeida Engler, J; Raes, J; Magyar, Z; De Groodt, R; Inzé, D; De Veylder, L Molecular characterization of Arabidopsis PHO80-like proteins, a novel class of CDKA;1-interacting cyclins..
Cell Mol Life Sci. 2004; 61(12):1485-1497 WoS PubMed FullText FullText_BOKU** Hauser, MT; Harr, B; Schlötterer, C Trichome distribution in Arabidopsis thaliana and its close relative Arabidopsis lyrata: molecular analysis of the candidate gene GLABROUS1..
** Hauser, M.-T., Bauer, E. Histochemical analysis of root meristem activity in Arabidopsis thaliana using a cyclin:GUS (ß-glucuronidase) marker line..
Plant and Soil, 226, 1-10 WoS** Strasser, R., Steinkellner, H., Borén, M., Altmann, F., Mach, L., Glössl, J., Mucha, J. Molecular cloning of cDNA encoding N-acetylglucosaminyltransferase II from Arabidopsis thaliana..
Glycoconjugate J., 16, 787-791 WoS FullText