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25 results for uniprot:O64682Drop in citationmapping

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Arabidopsis thaliana (L.) Heynh. as a model object for studying genetic control of morphogenesis.

Ezhova T.A.

Genetika 35:1522-1537(1999) TAIR At2g34650 · Mapped (5)

LEUNIG has multiple functions in gynoecium development in Arabidopsis.

Chen C., Wang S., Huang H.

Genesis 26:42-54(2000) TAIR At2g34650 · Mapped (3)

BIG: a calossin-like protein required for polar auxin transport in Arabidopsis.

Gil P., Dewey E., Friml J., Zhao Y., Snowden K.C., Putterill J., Palme K., Estelle M., Chory J.

Genes Dev. 15:1985-1997(2001) TAIR At2g34650 · UniProtKB (1) · Mapped (3)

The PINOID protein kinase regulates organ development in Arabidopsis by enhancing polar auxin transport.

Benjamins R., Quint A., Weijers D., Hooykaas P., Offringa R.

Development 128:4057-4067(2001) TAIR At2g34650 · Mapped (2)
response to auxin stimulus, protein serine/threonine kinase activity TAIR At2g34650

Growth signalling pathways in Arabidopsis and the AGC protein kinases.

Bogre L., Okresz L., Henriques R., Anthony R.G.

Trends Plant Sci. 8:424-431(2003) TAIR At2g34650 · Mapped (39)
kinase activity TAIR At2g34650

PETAL LOSS, a trihelix transcription factor gene, regulates perianth architecture in the Arabidopsis flower.

Brewer P.B., Howles P.A., Dorian K., Griffith M.E., Ishida T., Kaplan-Levy R.N., Kilinc A., Smyth D.R.

Development 131:4035-4045(2004) TAIR At2g34650 · UniProtKB (1) · Mapped (3)

The role of SEUSS in auxin response and floral organ patterning.

Pfluger J., Zambryski P.

Development 131:4697-4707(2004) TAIR At2g34650 · Mapped (4)

PIN-FORMED1 and PINOID regulate boundary formation and cotyledon development in Arabidopsis embryogenesis.

Furutani M., Vernoux T., Traas J., Kato T., Tasaka M., Aida M.

Development 131:5021-5030(2004) TAIR At2g34650 GeneRIF 818030 · Mapped (5)
role in establishment of bilateral symmetry as well as in the promotion of cotyledon outgrowth GeneRIF 818030

Effect of the ABRUPTUS/PINOID gene on expression of the LEAFY gene in Arabidopsis thaliana.

Lebedeva O.V., Ondar U.N., Penin A.A., Ezhova T.A.

Genetika 41:559-565(2005) TAIR At2g34650 · Mapped (2)

The gene ENHANCER OF PINOID controls cotyledon development in the Arabidopsis embryo.

Treml B.S., Winderl S., Radykewicz R., Herz M., Schweizer G., Hutzler P., Glawischnig E., Ruiz R.A.

Development 132:4063-4074(2005) TAIR At2g34650 · Mapped (4)
cotyledon development TAIR At2g34650

Phosphorylation and activation of PINOID by the phospholipid signaling kinase 3-phosphoinositide-dependent protein kinase 1 (PDK1) in Arabidopsis.

Zegzouti H., Anthony R.G., Jahchan N., Bogre L., Christensen S.K.

Proc. Natl. Acad. Sci. U.S.A. 103:6404-6409(2006) TAIR At2g34650 GeneRIF 818030 · Mapped (3)
PDK1 is a potent enhancer of PID activity. GeneRIF 818030 protein kinase activity TAIR At2g34650

SCARFACE encodes an ARF-GAP that is required for normal auxin efflux and vein patterning in Arabidopsis.

Sieburth L.E., Muday G.K., King E.J., Benton G., Kim S., Metcalf K.E., Meyers L., Seamen E., Van Norman J.M.

Plant Cell 18:1396-1411(2006) TAIR At2g34650 · UniProtKB (4) · Mapped (14)

PINOID positively regulates auxin efflux in Arabidopsis root hair cells and tobacco cells.

Lee S.H., Cho H.T.

Plant Cell 18:1604-1616(2006) TAIR At2g34650 GeneRIF 818030 · Mapped (5)
Results suggest that PINOID positively regulates cellular auxin efflux most likely by modulating the trafficking of PIN and/or some other molecular partners involved in auxin efflux. GeneRIF 818030 cell surface, root hair elongation, root hair initiation, auxin polar transport TAIR At2g34650

STY1 regulates auxin homeostasis and affects apical-basal patterning of the Arabidopsis gynoecium.

Sohlberg J.J., Myrenas M., Kuusk S., Lagercrantz U., Kowalczyk M., Sandberg G., Sundberg E.

Plant J. 47:112-123(2006) TAIR At2g34650 · Mapped (7)

Characterization of OsPID, the rice ortholog of PINOID, and its possible involvement in the control of polar auxin transport.

Morita Y., Kyozuka J.

Plant Cell Physiol. 48:540-549(2007) TAIR At2g34650 · Mapped (1)

barren inflorescence2 Encodes a co-ortholog of the PINOID serine/threonine kinase and is required for organogenesis during inflorescence and vegetative development in maize.

McSteen P., Malcomber S., Skirpan A., Lunde C., Wu X., Kellogg E., Hake S.

Plant Physiol. 144:1000-1011(2007) TAIR At2g34650 · UniProtKB (8) · Mapped (1)

NPY1, a BTB-NPH3-like protein, plays a critical role in auxin-regulated organogenesis in Arabidopsis.

Cheng Y., Qin G., Dai X., Zhao Y.

Proc. Natl. Acad. Sci. U.S.A. 104:18825-18829(2007) TAIR At2g34650 · Mapped (10)
phyllome development, cotyledon development TAIR At2g34650

Genetic and physical interaction suggest that BARREN STALK 1 is a target of BARREN INFLORESCENCE2 in maize inflorescence development.

Skirpan A., Wu X., McSteen P.

Plant J. 55:787-797(2008) TAIR At2g34650 · Mapped (1)

NPY genes and AGC kinases define two key steps in auxin-mediated organogenesis in Arabidopsis.

Cheng Y., Qin G., Dai X., Zhao Y.

Proc. Natl. Acad. Sci. U.S.A. 105:21017-21022(2008) TAIR At2g34650 · Mapped (9)
cotyledon development TAIR At2g34650

BARREN INFLORESCENCE2 interaction with ZmPIN1a suggests a role in auxin transport during maize inflorescence development.

Skirpan A., Culler A.H., Gallavotti A., Jackson D., Cohen J.D., McSteen P.

Plant Cell Physiol. 50:652-657(2009) TAIR At2g34650 · Mapped (2)

Natural variation in maize architecture is mediated by allelic differences at the PINOID co-ortholog barren inflorescence2.

Pressoir G., Brown P.J., Zhu W., Upadyayula N., Rocheford T., Buckler E.S., Kresovich S.

Plant J. 58:618-628(2009) TAIR At2g34650 · Mapped (1)

PINOID kinase regulates root gravitropism through modulation of PIN2-dependent basipetal auxin transport in Arabidopsis.

Sukumar P., Edwards K.S., Rahman A., Delong A., Muday G.K.

Plant Physiol. 150:722-735(2009) TAIR At2g34650 GeneRIF 818030 · Mapped (4)
Reduced PID kinase function inhibits gravitropism and basipetal indole-3-acetic acid transport. GeneRIF 818030 auxin polar transport, positive gravitropism TAIR At2g34650

A PINOID-dependent binary switch in apical-basal PIN polar targeting directs auxin efflux.

Friml J., Yang X., Michniewicz M., Weijers D., Quint A., Tietz O., Benjamins R., Ouwerkerk P.B., Ljung K., Sandberg G. et al.

Science 306:862-865(2004) GeneRIF 818030 TAIR At2g34650 · Mapped (2)
results show that a PINOID-dependent binary switch controls PIN polarity and mediates changes in auxin flow to create local gradients for patterning processes GeneRIF 818030

Antagonistic regulation of PIN phosphorylation by PP2A and PINOID directs auxin flux.

Michniewicz M., Zago M.K., Abas L., Weijers D., Schweighofer A., Meskiene I., Heisler M.G., Ohno C., Zhang J., Huang F. et al.

Cell 130:1044-1056(2007) GeneRIF 818030 · Mapped (6)
PP2A and PINOID both partially colocalize with PINs and act antagonistically on the phosphorylation state of their central hydrophilic loop hence mediating PIN apical-basal polar targeting. GeneRIF 818030

The gene MACCHI-BOU 4/ENHANCER OF PINOID encodes a NPH3-like protein and reveals similarities between organogenesis and phototropism at the molecular level.

Furutani M., Kajiwara T., Kato T., Treml B.S., Stockum C., Torres-Ruiz R.A., Tasaka M.

Development 134:3849-3859(2007) GeneRIF 818030 TAIR At2g34650 · Mapped (7)
MAB4/ENHANCER OF PINOID is involved in polar auxin transport in organogenesis GeneRIF 818030

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