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O F: PsbP protein, although not PsbQ protein, is crucial <a
Sachetto-Martins G, Franco LO, de Oliveira DE: Plant purchase Litronesib glycine-rich proteins: a household or simply proteins by using a typical motif? Biochimica Et CS-5299 supplier Biophysica Acta-Gene Construction and Expression 2000, 1492:1-14. fifty three. Streitner C, Danisman S, Wehrle F, Schoning JC, Alfano JR, Staiger D: The modest glycine-rich RNA binding protein AtGRP7 encourages floral transition in Arabidopsis thaliana. Plant J 2008, fifty six:239-250. fifty four. Kim JY, Park SJ, Jang B, Jung CH, Ahn SJ, Goh CH, Cho K, Han O, Kang H: Functional characterization of the glycine-rich RNA-binding protein 2 in Arabidopsis thaliana under abiotic stress circumstances. Plant J 2007, 50:439-451. fifty five. Kim JY, Kim WY, Kwak KJ, Oh SH, Han YS, Kang H: Zinc finger-containing glycine-rich RNA-binding protein in Oryza buy CS-5171 sativa has an RNA chaperone activity under cold anxiety situations. Plant purchase 1297538-32-9 mobile Environ 2010, 33:759-768. fifty six. Kim JS, Jung HJ, Lee HJ, Kim KA, Goh CH, Woo Y, Oh SH, Han YS, Kang H: Glycine-rich RNA-binding protein 7 impacts abiotic tension responses by regulating stomata opening and closing in Arabidopsis thaliana. Plant J 2008, fifty five:455-466. fifty seven. Kim JY, Kim WY, Kwak KJ, Oh SH, Han YS, Kang H: Glycine-rich RNAbinding proteins are functionally conserved in Arabidopsis thaliana and Oryza sativa all through chilly adaptation system. J Exp Bot 2010, sixty one:2317-2325. 58. Yang EJ, Oh YA, Lee ES, Park AR, Cho SK, Yoo YJ, Park Okay: Oxygen-evolving enhancer protein 2 is phosphorylated by glycine-rich protein 3/wallassociated kinase 1 in Arabidopsis. Biochem Biophys Res Commun 2003, 305:862-868. 59. Lorenz WW, Dean JF: SAGE profiling and demonstration of differential gene expression together the axial developmental gradient of lignifying xylem in loblolly pine (Pinus taeda). Tree Physiol 2002, 22:301-310. sixty. Bocca SN, Magioli C, Mangeon A, Junqueira RM, Cardeal V, Margis R, Sachetto-Martins G: Study of glycine-rich proteins (GRPs) from the Eucalyptus expressed sequence tag database (ForEST). Genetics and Molecular Biology 2005, 28:608-624. 61. Paiva JAP, Garnier-G ?PH, Rodrigues JC, Alves A, Santos S, Gra J, Le Provost G, Chaumeil P, Da Silva-Perez D, Bosc A, et al: Plasticity of maritime pine (Pinus pinaster) wood-forming tissues in the course of a growing year. New Phytologist 2008, 179:1180-1194. sixty two. Le Provost G, Paiva J, Pot D, Brach J, Plomion C: Seasonal variation in transcript accumulation in wood-forming tissues of maritime pine (Pinus pinaster Ait.) with emphasis on a mobile wall glycine-rich protein.O F: PsbP protein, but not PsbQ protein, is essential PubMed ID:https://www.ncbi.nlm.nih.gov/pubmed/26581802 to the regulation and stabilization of photosystem II in increased plants. Plant Physiology 2005, 139:1175-1184. fifty. Greenwood MS, Hopper CA, Hutchison KW: Maturation in larch: I. Effect of age on shoot expansion, foliar properties, and DNA methylation. Plant Physiol 1989, 90:406-412. fifty one. Woo HH, Hackett WP, Das A: Differential Expression of a Chlorophyll a/B Binding-Protein Gene and a Proline-Rich Protein Gene in Juvenile and Mature Phase English Ivy (Hedera-Helix).
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