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GO term
leaf vascular tissue pattern formation
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Index of genes with 1 constraints:

GO term parent-child relationships are used in this table.

Page 1 of 11, showing 20 records out of 213 total, starting on record 1, ending on 20

gene_id species description comment go evidence
AT1G13290 ath Encodes a putative zinc finger protein (C2H2 family, type IIIA, subclass A1d) that has a WIP domain. Seedlings with mutations in DOT5 have a misaligned venation defect in their leaves and cotyledons. Additional developmental abnormalities, such as elongated petioles and aberrant phyllotaxy suggest that DOT5 is required for normal shoot and root development.;C2H2-like zinc finger protein transcript=eq;prot=eq; GO:0010305 IMP
AT5G55540 ath Encodes a large plant-specific protein of unknown function, with conserved domains also found in a variety of signaling proteins, In trn mutants, the leaf venation network had a severely reduced complexity: incomplete loops, no tertiary or quaternary veins, and vascular islands. The leaf laminas were asymmetric and narrow because of a severely reduced cell number. TRN1 is required for the maintenance of both the radial pattern of tissue differentiation in the root and for the subsequent circumferential pattern within the epidermis. Double mutant analysis showed that TRN1 and TRN2 act in the same pathway.;tornado 1 transcript=eq;prot=eq; GO:0010305 IMP
AT4G18750 ath Encodes a pentatricopeptide (PPR) protein involved in leaf and root development. dot4 mutants have an aberrant midgap venation pattern in juvenile leaves and cotyledons.;Pentatricopeptide repeat (PPR) superfamily protein transcript=eq;prot=eq; GO:0010305 IMP
AT2G42580 ath Encodes a member of the TTL family and contains a thioredoxin like domain and three tandom TPRs. Interacts physically with BRL2/VH1 and appears to play a role in brassiosteroid and auxin signaling.;tetratricopetide-repeat thioredoxin-like 3 transcript=eq;prot=eq; GO:0010305 IMP
AT4G13750 ath Encodes NO VEIN (NOV), a plant-specific nuclear factor required for leaf vascular development, cellular patterning and stem cell maintenance in the root meristem, as well as for cotyledon outgrowth and separation. nov mutations affect many aspects of auxin-dependent development without directly affecting auxin perception.;Histidine kinase-, DNA gyrase B-, and HSP90-like ATPase family protein transcript=eq;prot=eq; GO:0010305 IMP
AT5G46700 ath Encodes a transmembrane protein of the tetraspanin (TET) family, one of 17 members found in Arabidopsis. Double mutant analysis showed that TRN1 and TRN2 act in the same pathway. Required for the maintenance of both the radial pattern of tissue differentiation in the root and for the subsequent circumferential pattern within the epidermis.;Tetraspanin family protein transcript=eq;prot=eq; GO:0010305 IMP
AT3G63300 ath Encodes a pleckstrin homology domain- and DUF828-containing protein. Mutants have defects in leaf vascular pattering, with vascular bundles that fail to meet distally in both the cotyledons and leaves. Necessary to the formation of the closed leaf vascular pattern characteristic of dicot leaves in response to auxin. Redundant with FKD2. FKD1 may influence PIN1 localization in an auxin dependent manner. proposed to be a key component of the auxin canalization pathway.;FORKED 1 transcript=eq;prot=eq; GO:0010305 IMP
AT1G05470 ath Encodes an inositol polyphosphate 5' phosphatase (5PTase) that is required for the proper recruitment of cells into developing vascular tissue in leaves and cotyledons. It is most similar to Type I 5PTases that are known to cleave a phosphate from IP3 or IP4. cvp2 mutants have elevated levels of IP3 and are hypersensitive to ABA in seed germination assays.;DNAse I-like superfamily protein transcript=eq;prot=eq; GO:0010305 IGI
AT3G44600 ath Cyclophilin71 is a WD40 domain cyclophilin, which functions in gene repression, organogenesis and meristem development. CYP71 physically interacts with histone H3.;cyclophilin71 transcript=eq;prot=eq; GO:0010305 IMP
AT5G16780 ath Encodes a protein belonging to SART-1 family. The gene is expressed in the basal region of the developing embryo during heart stage. Phenotypic analyses of dot2 mutants suggest that this protein plays a role in root, shoot, and flower development. dot2 mutants are dwarved plants that display an aberrant spurred leaf venation pattern and fail to flower. In the roots DOT2 appears to be require for normal meristem organization and maintenance and the proper expression of PIN and PLT genes.;SART-1 family transcript=eq;prot=eq; GO:0010305 IMP
AT5G10250 ath Encodes a protein with an N-terminal BTB/POZ domain and a C-terminal NPH3 family domain. dot3 mutants have defects in shoot and primary root growth and produce an aberrant parallel venation pattern in juvenile leaves.;Phototropic-responsive NPH3 family protein transcript=eq;prot=eq; GO:0010305 IMP
AT2G01950 ath Encodes a leucine rich repeat receptor kinase and associated with provascular/procambial cells. Similar to BRI, brassinosteroid receptor protein.;BRI1-like 2 transcript=eq;prot=eq; GO:0010305 IMP
AT1G48920 ath Encodes ATNUC-L1 (NUCLEOLIN LIKE 1), the predominant form of the two nucleolin proteins found in Arabidopsis. This protein is involved in rRNA processing, ribosome biosynthesis, and vascular pattern formation. PARL1 localizes to the nucleolus and parl1 mutants accumulate elevated levels of the unspliced 35S pre-rRNA. parl1 mutants also have defects in cotyledon, leaf, sepal, and petal vein patterning and have reduced stature, reduced fertility, increased bushiness, and reduced root length. The sugar-induced expression of ribosome proteins is also reduced in parl1 mutants.;nucleolin like 1 transcript=eq;prot=eq; GO:0010305 IMP
AT1G19850 ath Encodes a transcription factor (IAA24) mediating embryo axis formation and vascular development. Similar to AUXIN RESPONSIVE FACTOR 1 (ARF1) shown to bind to auxin responsive elements (AREs), and to the maize transcriptional activator VIVIPAROUS 1( VP1). In situ hybridization shows expression in provascular tissue of embryos, the emerging shoot primordia, then is restricted to provascular tissue, and in the root central vascular cylinder.;Transcriptional factor B3 family protein / auxin-responsive factor AUX/IAA-related transcript=eq;prot=eq; GO:0010305 IGI
AT3G54720 ath Encodes glutamate carboxypeptidase. Various alleles show-increased cotyledon number and rate of leaf initiation, show transformation of leaves to cotyledons, altered flowering time and photomorphogenesis and an increased level of cytokinin biosynthesis. Involved in ethylene enhanced hypocotyl elongation in the light. Strong genetic interaction between TGH and AMP1.;Peptidase M28 family protein transcript=eq;prot=eq; GO:0010305 IGI
AT3G52770 ath ZPR3 is a small-leucine zipper containing protein that is involved in the establishment of leaf polarity.;protein binding transcript=eq;prot=eq; GO:0010305 IMP
AT1G14000 ath Encodes a protein with similarity to members of the C1 subgroup of MAP kinase kinase kinases. Interacts physically with the receptor kinase BRL2/VH1 and appears to be involved in auxin and brassinosteriod signaling.;VH1-interacting kinase transcript=eq;prot=eq; GO:0010305 IMP
AT2G36120 ath Encodes a glycine rich protein that is involved in leaf vascular patterning. dot1 mutants have an aberrant open-class venation pattern in leaves and cotyledons, as well as several other leaf development defects.;Glycine-rich protein family transcript=eq;prot=eq; GO:0010305 IMP
AT1G65620 ath required for formation of a symmetric flat leaf lamina, encodes a member of a family of proteins characterized by cysteine repeats and a leucine zipper; involved in KNOX gene regulation. Acts together with ASL1 in proximal-distal symmetry determination. Forms a complex with AS1 that binds to the BP promoter and leads to silencing of BP.;Lateral organ boundaries (LOB) domain family protein transcript=eq;prot=eq; GO:0010305 IEP
AT2G32010 ath Encodes an inositol polyphosphate 5’-phosphatase (5PTase). Mediating phosphoinositide signaling. Involved in establishment of foliar vein patterns.;CVP2 like 1 transcript=eq;prot=eq; GO:0010305 IGI
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