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Molecular Biology and Evolution, ISSN 0737-4038, 12/2009, Volume 26, Issue 12, pp. 2775 - 2794
The full complement of homeobox transcription factor sequences, including genes and pseudogenes, was determined from the analysis of 10 complete genomes from... 
Homeobox | Plant | Transcription factor | Homeodomain | HD-ZIP | transcription factor | BIOCHEMISTRY & MOLECULAR BIOLOGY | HOMEODOMAIN PROTEINS | homeobox | LEUCINE ZIPPER GENES | REPLICATION FOCI | MOSS PHYSCOMITRELLA-PATENS | EXPRESSION PATTERNS | LAND PLANTS | EVOLUTIONARY BIOLOGY | homeodomain | SEQUENCE ALIGNMENT | plant | GENETICS & HEREDITY | SECONDARY STRUCTURE | Protein Structure, Tertiary | Amino Acid Sequence | Introns - genetics | Homeodomain Proteins - classification | Molecular Sequence Data | Genes, Homeobox - genetics | Phylogeny | Homeodomain Proteins - chemistry | Homeodomain Proteins - genetics | Leucine Zippers - genetics | Likelihood Functions | Sequence Alignment | Plants - genetics | Genes, Plant - genetics | Zinc Fingers - genetics | Models, Genetic | Amino Acid Motifs - genetics | Evolution, Molecular | HD ZIP III gene | WOX gene | plant genome | HD ZIP I gene | plant gene | vascular plant | green alga | Biochemistry and Molecular Biology | Tracheophyta | Rhodophyta | Biological Sciences | DDT gene | Tertiary | Plants | article | moss | Naturvetenskap | sequence homology | Chlorophyta | phylogeny | Magnoliophyta | nonhuman | zinc finger motif | Models | HD ZIP II gene | Selaginella | PINTOX gene | red alga | Genes | Leucine Zippers | Genetic | gene identification | Molecular | BEL gene | Evolution | Natural Sciences | PLINC gene | Viridiplantae | last common ancestor | Zinc Fingers | Introns | gene sequence | SAWADEE gene | Bryophyta | LD gene | Protein Structure | homeodomain protein | molecular evolution | Amino Acid Motifs | NDX gene | PHD gene | intron | Biokemi och molekylärbiologi | Homeodomain Proteins | Biologiska vetenskaper | HD ZIP IV gene | KNOX gene | exon
Journal Article
The Plant Journal, ISSN 0960-7412, 06/2018, Volume 94, Issue 6, pp. 1126 - 1140
Summary Chloroplast development and chlorophyll(Chl)metabolism in unripe tomato contribute to the growth and quality of the fruit, however these mechanisms are... 
chlorophyll accumulation | transcription factor | tomato fruit | BEL1‐LIKE HOMEODOMAIN11 | virus‐induced gene silencing | BEL1-LIKE HOMEODOMAIN11 | virus-induced gene silencing | TRANSCRIPTION FACTORS | MUTANT | PHENOTYPE | KNOX GENES | HOMOLOG | PLANT SCIENCES | INTERACT | REPRESSION | RESPONSE-FACTOR | ACCUMULATION | EXPRESSION | Lycopersicon esculentum - metabolism | Transcription Factors - physiology | Plant Proteins - physiology | Homeodomain Proteins - metabolism | Chlorophyll - metabolism | Phylogeny | Transcription Factors - genetics | Genes, Plant - physiology | Chloroplasts - metabolism | Homeodomain Proteins - genetics | Transcription Factors - metabolism | Plant Proteins - genetics | Genes, Plant - genetics | Plants, Genetically Modified | Gene Expression Regulation, Plant | Lycopersicon esculentum - genetics | Plant Proteins - metabolism | Homeodomain Proteins - physiology | Fruit - metabolism | RNA sequencing | Chlorophyll | Chromatin | RNA | Analysis | Phytochemistry | Genes | Genetic engineering | DNA binding proteins | Genetic transcription | Photosynthesis | Protein binding | Transcription factors | Immunoprecipitation | Transgenic | Protochlorophyllide | Viruses | Biosynthesis | Fruits | Gene sequencing | Homeobox | Proteins | Chloroplasts | Tomatoes | Magnesium | Chain mobility | Protochlorophyllide reductase | RNA-mediated interference | Metabolism | Gene expression | Polymerase chain reaction | Ripening | Oxygenase | Gene silencing | Ribonucleic acids | Electrophoretic mobility | Binding sites | Reductase
Journal Article
Journal Article
Journal Article
The Plant Journal, ISSN 0960-7412, 07/2012, Volume 71, Issue 1, pp. 99 - 107
Summary Leaf organogenesis occurs within the peripheral zone of the shoot apical meristem (SAM). The initiation and subsequent development of a leaf requires... 
transcription | Arabidopsis | ASYMMETRIC LEAVES 2 | class‐I KNOX genes | TCP transcription factor | leaf development | class-I KNOX genes | ASYMMETRIC LEAVES 2 | LEUCINE-ZIPPER | POLARITY | TRANSGENIC PLANTS | ESTABLISHMENT | LATERAL ORGANS | PLANT SCIENCES | ASYMMETRIC LEAVES1 | SHOOT APICAL MERISTEM | DIFFERENTIATION | HOMEOBOX GENE | EXPRESSION | Promoter Regions, Genetic | Arabidopsis Proteins - genetics | Arabidopsis - growth & development | Homeodomain Proteins - metabolism | RNA, Plant - genetics | Transcription Factors - genetics | Homeodomain Proteins - genetics | Arabidopsis - metabolism | Arabidopsis - genetics | Arabidopsis Proteins - metabolism | Transcription Factors - metabolism | Gene Expression Regulation, Plant | MicroRNAs - genetics | Proteins | Plant biology | Leaves | Mutation | Plant growth | Homeobox | Meristems | Chromatin | Transcription factors | Immunoprecipitation | miRNA | Shoots | Promoters | Organogenesis | Arabidopsis/metabolism | MicroRNAs/genetics | Arabidopsis Proteins/genetics | Arabidopsis/growth & development | Homeodomain Proteins/metabolism | RNA, Plant/genetics | Biochemistry, Molecular Biology | Arabidopsis/genetics | Transcription Factors/genetics | Cellular Biology | Life Sciences | Transcription Factors/metabolism | Homeodomain Proteins/genetics | Molecular biology | Arabidopsis Proteins/metabolism
Journal Article
Journal of Plant Physiology, ISSN 0176-1617, 2008, Volume 165, Issue 16, pp. 1726 - 1735
As a first step in clarifying the involvement of class I -like homeobox ( ) genes in the storage root development of sweetpotato ( ), we isolated three genes,... 
Ipomoea batatas | Sweet potato | Knotted1-like homeobox | Storage root | KNOX | TRANSGENIC TOBACCO | GROWTH-REGULATORS | KNOX GENES | HORMONE-LEVELS | PLANT SCIENCES | CYTOKININ BIOSYNTHESIS | SEQUENCE ALIGNMENT | SHOOT APICAL MERISTEM | ECTOPIC EXPRESSION | Knottedl-like homeobox | TUBEROUS ROOTS | ABSCISIC-ACID | Genetic research
Journal Article
Journal Article
Journal Article