1 [4 [(5 Cyclopropyl 1H Pyrazol 3 Yl)Amino]Pyrrolo[2,1 F][1,2,4]Triazin 2 Yl] N (6 Fluoro 3 Pyridinyl) 2 Methyl 2 Pyrrolidinecarboxamide [1] |
1,1 Diphenyl 2 Picrylhydrazyl [1] |
18S [1] |
3 Bromo 5 Tert Butyl 4 Hydroxybenzylidenemalononitrile [1] |
4 Amino 5 (3 Benzyloxyphenyl) 7 [3 (1 Pyrrolidinylmethyl)Cyclobutyl] 7H Pyrrolo[2,3 D]Pyrimidine [1] |
5 (2 chlorobenzylideneamino) 1 benzyl 6,7 dihydro 6 (2 chlorophenyl) 1h pyrazolo[3,4 d]pyrimidin 4 (5h)one [1] |
5 (3 methoxy 4 hydroxybenzylideneamino) 1 benzyl 1h pyrazolo[3,4 d]pyrimidin 4 (5h)one [1] |
5 (4 methoxybenzylideneamino) 1 benzyl 6,7 dihydro 6 (4 methoxyphenyl) 1h pyrazolo[3,4 d]pyrimidin 4 (5h)one [1] |
A549 cell line [1] |
Ab initio calculations [1] |
ABC transporters [1] |
Abiogenesis [1] |
Acclimatize [1] |
Acetylcholine binding protein; Alzheimer's disease [1] |
Acrosiphonia [1] |
Adaptation [3] |
adaptation [1] |
ADO [1] |
AFLP: Amplified Length Polymorphism [1] |
Agar [1] |
Agricultural efficiency [1] |
Agriculture [1] |
Akt/mTOR pathway [1] |
Algae [4] |
Aluminum Toxicity [1] |
Alzheimer’s disease [1] |
Amino acid compositions [1] |
Amino acids [2] |
aminopeptidase B [1] |
Amygdala [1] |
Amyloid beta [1] |
and Pathway alysis [1] |
Androgen [1] |
Androgen Receptor [1] |
Androgen Receptor Antagonist [1] |
Androgen Receptor Antagonists [1] |
Androgen receptor/Estrogen receptor [1] |
Annotation [1] |
annual plant [1] |
Antagonists And Inhibitors [1] |
Anther dehiscence [1] |
Anther development stages [1] |
Anthocyanidin reductase [1] |
Anthocyanidin synthase [1] |
Anthocyanins [2] |
Anti-cancer [1] |
anti-cancer activity [1] |
Anti-oxidant activities [1] |
Anti-tumor activities [1] |
anticancer [1] |
Anticancer activities [1] |
Antineoplastic Activity [1] |
Antineoplastic activity [1] |
Antineoplastic Activity Cancer Cell [1] |
Antineoplastic Activity Cancer Cell Line [1] |
antineoplastic activity cancer cell line [1] |
Antineoplastic Agent [2] |
Antineoplastic agent [1] |
Antioxidant [4] |
Antioxidant Activity [1] |
Antioxidants [3] |
Antiproliferative Activity [1] |
Antiproliferative activity [1] |
APE1 [1] |
APE1/Ref-1 [1] |
Apoptosis [4] |
Apoptosis Biochemical Analysis [1] |
Apoptosis induction [1] |
Arsenic [4] |
arsenic [1] |
Article [1] |
Assortative mating [1] |
atpB [1] |
Banyan [1] |
barcoding [2] |
Basil [1] |
Benthos [1] |
Betulic Acid [1] |
Biibo 22 [1] |
Binding energy [2] |
Bins [1] |
Biochemistry [1] |
Biocompatibility [3] |
Biocontrol [1] |
Biodiversity [2] |
Bioelicitors [1] |
Biofertilizer [1] |
Biofuel [1] |
Biological applications [1] |
Biological model [1] |
Biomarkers [1] |
Biosynthesis [1] |
Blending [1] |
Blood [2] |
Bms 536924 [1] |
Bms 554417 [1] |
Bomass [1] |
Brassica juncea [4] |
Breast cancer [3] |
Breast cancer; Estrogen receptor alpha; Indole-xanthendione hybrids; RT-PCR SERM; Western blotting [1] |
Breast carcinoma cells [1] |
Cadmium [2] |
Calculations [1] |
Calluses [1] |
Camellia Sinensis [1] |
Cancer [18] |
cancer [2] |
Cancer cell lines [1] |
Cancer Immunotherapy [1] |
Cancer phylogenetics [1] |
Cancer [2] |
Carrageenan [2] |
Carrageenans [1] |
caspase [1] |
Caulerpa [2] |
Caulerpa taxifolia [2] |
Caulerpenyne [1] |
Ccs [1] |
Celastrol [1] |
Cell Count [1] |
Cell culture [3] |
Cell culture scaffolds [1] |
Cell cycle progression [1] |
Cell death [1] |
Cell engineering [1] |
Cell Line [1] |
cell migration [1] |
Cell Motion [1] |
cell pro [1] |
Cell Proliferation [2] |
Cell Proliferation Assay [1] |
Cell Viability [1] |
Cells [1] |
Cellulose [1] |
Cellulose dissolutions [1] |
Cellulose structures [1] |
Cellulose synthase [1] |
cetuximab [1] |
Chains [1] |
Charge transfer [1] |
Chemical Composition [1] |
Chemical Database [1] |
Chemistry [1] |
Chemokine Receptor Antagonist [1] |
Chemokine Receptor Ccr7 [1] |
Chemokines [1] |
Chickpea [3] |
Chlorophyta [3] |
Chloroplast Dna [1] |
Cicer [1] |
Cicer arietinum [3] |
Cicer bijugum [1] |
Cicer echinospermum [1] |
Cicer judaicum [1] |
Cicer pinnatifidum [1] |
Cicer reticulatum [1] |
Circadian clock [3] |
Cixutumumab [1] |
Cla [1] |
Cladistics [3] |
Classification [1] |
Clinical trials [1] |
Cloning [1] |
Cnidaria [1] |
Coalescence [1] |
Coastal Ecology [1] |
codon usage bias [1] |
coexpression network [1] |
Cognate [1] |
Cold denaturation [2] |
Cold stress [2] |
Cold stress [1] |
cold tolerance [1] |
Collagen [1] |
Colony Formation [1] |
comparative study [1] |
Composite materials [1] |
Computer Model [1] |
Computer Simulation [1] |
Con [1] |
Connective tissues [1] |
Conservation [1] |
Constrained dynamics [2] |
Controlled drug delivery [2] |
Controlled drug delivery systems [1] |
Controlled Study [4] |
Copper Zinc Superoxide Dismutase [1] |
Cotton [2] |
Cotton leaf curl disease [2] |
Cotton leaf curl virus [2] |
Counteracting effect [2] |
CRISPR-Cas9 [2] |
CRISPR–Cas9 [1] |
Crowding agents [4] |
Cryoprotectant [1] |
Cryoprotectant [1] |
Crystal Structure [1] |
Cultivar [1] |
cultivar [1] |
Curcumin [1] |
cyclin dependent kinase 2 [1] |
cyclin dependent kinase 6 [1] |
cytochrome c [1] |
Cytology [1] |
Cytotoxicity [4] |
D [1] |
D Taxonomy [1] |
Dalotuzumab [1] |
De novo assembly [1] |
Density functional theory [1] |
Derived products [1] |
Desi and kabuli [1] |
Development [3] |
developmental stage [1] |
Di Diabody [1] |
diabetes [1] |
Diabetes II [1] |
Dicrocoelium [1] |
Different solvents [1] |
Differential expression [1] |
Differential gene expression [1] |
Dimerization [1] |
Disaccharide units [1] |
Diseases [1] |
Distance Matrix [1] |
DNA [1] |
DNA barcoding [1] |
Dna Barcoding [1] |
Dna Binding [1] |
DNA sequence [1] |
DNA sequences [1] |
DNA topoisomerase [1] |
Dna, Chloroplast [1] |
dopamine [1] |
Down Regulation [1] |
Dpph Radical Scavenging Assay [1] |
DR5 receptor [1] |
Dracunculus [1] |
Dronabinol [1] |
Drought [1] |
drought [1] |
Drug Absorption [1] |
Drug Bioavailability [1] |
Drug Distribution [1] |
Drug Effects [1] |
Drug Excretion [1] |
Drug Identification [1] |
Drug Metabolism [1] |
Drug products [1] |
Drug Screening [1] |
Early Flowering [1] |
Earth [1] |
Effect of temperature [1] |
Electrolyte leakage [2] |
Electrophoresis [1] |
Em 164 [1] |
Endangered species [1] |
Endophyte [2] |
Energy configurations [1] |
ENPP2 [1] |
Enthalpy-entropy plot [2] |
Epidermal Growth Factor [1] |
Epidermal growth factor receptor [1] |
Epigallocatechin Gallate [1] |
Epigallocatechol [1] |
epigenetic remodeling [1] |
Epiphyte [2] |
Estrogen Receptor [1] |
Estuarine [1] |
Ethanol [1] |
Etoposide [1] |
Evolution [4] |
Excluded volume effect [2] |
Exel 2280 [1] |
Exobiology [1] |
Experimental approaches [1] |
Explants [1] |
Expression patterns [1] |
Extracellular Superoxide Dismutase [1] |
FAD2 and small heat shock proteins [1] |
Fatty acid desaturases [1] |
Female reproductive traits [1] |
Fiber optic sensors [1] |
Figitumumab [1] |
First-principles calculation [1] |
Flavan-3-ols [1] |
Flavonoid [1] |
Flavonoids [3] |
Flower developmentstages [1] |
Flowering [1] |
flowering [1] |
Flowering regulation [1] |
Food industries [1] |
Forestry [1] |
Forming properties [1] |
Fourier transform infrared [1] |
Fourier transform infrared spectroscopy [1] |
Frost [1] |
Fruiting Body [1] |
Fucales [1] |
Fuel cells [1] |
Functional polymers [1] |
Fungus [1] |
Ganges river [1] |
Ganoderic Acid [3] |
Ganoderic acid [4] |
ganoderic acid [1] |
Ganoderic acid (GA) [1] |
Ganoderic Acid A [1] |
Ganoderic Acid Alpha [1] |
Ganoderic Acid G [1] |
Ganoderic Acid J [1] |
Ganoderic Acid K [1] |
Ganoderic Acid Theta [1] |
Ganoderic Acid X [1] |
Ganoderic acids [1] |
Ganoderic acid [1] |
Ganoderiol A [1] |
Ganoderiol B [1] |
Ganoderiol F [1] |
Ganoderma Lucidum [2] |
Ganoderma lucidum [2] |
Ganoderma Lucidum Extract [1] |
Ganoderma lucidum extract [1] |
Ganodermanontriol [1] |
Ganodermatriol [1] |
GBM [1] |
GC–MS [1] |
Gelatin [1] |
gelatinase A [1] |
gelatinase B [1] |
Gene Expression [2] |
Gene expression [2] |
gene expression [1] |
Gene expression analysis [1] |
Gene Expression Regulation [1] |
Gene location [1] |
Gene regulation [2] |
Gene tree [1] |
Genes [1] |
Genetic Diversity [1] |
Genetic diversity [1] |
Genetic Heterogeneity [1] |
Genetic heterogeneity [1] |
Genetic polymorphism [1] |
genetic resource [1] |
Genetic screening [1] |
Genetic Variability [1] |
genetic variation [1] |
Genetics [2] |
Genome editing [3] |
Geographic distribution [1] |
Geographical distribution [1] |
germination [1] |
germplasm [1] |
Ginkgo biloba [1] |
Glottochronology [1] |
Glottoclock [1] |
Glyceraldehyde 3 Phosphate Dehydrogenase [1] |
Gold [1] |
Green alga [2] |
Green tide [1] |
Growth [2] |
GSE79719 [1] |
GSE79720 [1] |
haiku [1] |
Haplotypes [1] |
He: Expected Hetrozygosity [1] |
Heavy metals [2] |
Hemolysis [1] |
High resolution transmission electron microscopy [1] |
High Throughput Screening [1] |
High-throughput sequencing [1] |
Historical linguistics [1] |
hitoegusa [1] |
Ho: Observed Heterozygosity [1] |
Homogamy [1] |
Host resistance [1] |
Human [4] |
Human Cell [3] |
Hybridization [1] |
Hydrogels [3] |
Hydrogen Bond [1] |
Hyperglycemic Agent [1] |
Hyperinsulinaemia [1] |
Imc A 14 [1] |
Imc A14 [1] |
Imine pyrazolopyrimidinone [1] |
immunoglobulin enhancer binding protein [1] |
Immunostimulatory activities [1] |
In Silico [1] |
In Vitro [1] |
In vitro [2] |
In Vitro Study [2] |
India [4] |
Indian [1] |
Indian Ocean [2] |
Induced systemic resistance [1] |
inducible nitric oxide synthase [1] |
Inductively Coupled Plasma Mass Spectrometry [1] |
inf luenza [1] |
Insulin [4] |
Insulin Receptor [1] |
Insulin receptor [1] |
Integrated circuits [1] |
InterBioScreen Library [1] |
InterBioScreen natural compound library [1] |
interleukin 2 [1] |
Internal transcribed spacer 1 [1] |
Internal transcribed spacer 2 [1] |
Intertidal environment [1] |
Ionic liquids [1] |
Isoprotein [1] |
ITS [2] |
ITS1 [1] |
Killer alga [2] |
Kuroshio Current [1] |
lanostanoid [1] |
Laurencia [1] |
Laurencia Thyrsifera [1] |
Leaf rust [1] |
Leftism [1] |
legume [1] |
Legume lectins [1] |
Lethal [1] |
Lethal [1] |
Life [1] |
Ligand [1] |
Linguistics [1] |
Linsitinib [1] |
Lipid peroxidation [1] |
Lipid peroxidation [1] |
Lipids [1] |
Lipinski’s Rule of Five [1] |
lipocortin 5 [1] |
Liver Cell Carcin [1] |
Lung Cancer [1] |
Lupinus angustifolius [1] |
Machinery [1] |
macro-algae [1] |
Macronutrient [1] |
Maestro 9.3 [2] |
Maestro 9.3 (Schrodinger 2012) [1] |
Maestro 9.6 [5] |
Male gametogenesis [1] |
Manganese Superoxide Dismutase [1] |
Marine alga [2] |
Marine algae [1] |
Maximum likelihood [1] |
Maximum likelihood analysis [1] |
Maximum Likelihood Method [1] |
Meats [1] |
Medicinal chemistry [1] |
Melia azedarach [1] |
Messenger Rna [3] |
Metabolic engineering [1] |
Metabolism [1] |
Metabolites [1] |
Metabolites estimation [1] |
Metabolome [2] |
Metabonomics [1] |
Metal nanoparticles [1] |
Metformin [3] |
Microalga [1] |
Microgametogenesis [1] |
Micronutrient Pseudomonas [1] |
Micropropagation [1] |
MicroR [1] |
MicroR profiling [1] |
MicroRNA [2] |
MicroRNA 1 [1] |
MicroRNA 101 [1] |
MicroRNA 133 [1] |
MicroRNA 141 [1] |
MicroRNA 143 [1] |
MicroRNA 145 [1] |
MicroRNA 146a [1] |
MicroRNA 15a 16 [1] |
MicroRNA 185 [1] |
MicroRNA 188 5p [1] |
MicroRNA 200a [1] |
MicroRNA 200b [1] |
MicroRNA 200c [1] |
MicroRNA 205 [1] |
MicroRNA 208 [1] |
MicroRNA 218 [1] |
MicroRNA 222 [1] |
MicroRNA 296 [1] |
MicroRNA 29b [1] |
MicroRNA 31 [1] |
MicroRNA 330 [1] |
MicroRNA 331 3p [1] |
MicroRNA 342 [1] |
MicroRNA 34b [1] |
MicroRNA 34c [1] |
MicroRNA 449a [1] |
MicroRNA profiles [2] |
MicroRNA34a [1] |
Microsatellite marker [1] |
Microsatellite markers [1] |
Microsporogenesis [1] |
Minimum inhibitory concentrations (MIC) [1] |
Mitochondria [1] |
mitogen activated protein kinase [1] |
Model Selection [1] |
Molecular Docking [4] |
Molecular docking [3] |
Molecular docking [1] |
Molecular dynamics [1] |
Molecular Evolution [1] |
Molecular evolution [1] |
Molecular markers [1] |
Molecular orbitals [1] |
Molecular phylogeny [1] |
Molecular studies [1] |
Molten-globule state [2] |
Monoclonal Antibody [1] |
Monostroma kuroshiensis [1] |
Monostromataceae [1] |
Morin [1] |
Morphology [1] |
Mtt Assay [1] |
Multidrug resistance [1] |
Multidrug resistance modulators [1] |
Multiple Sequence Alignment [1] |
Municipal wastewater treatment plants [1] |
Musculoskeletal system [1] |
Mutation [1] |
mutation [1] |
Myc protein [1] |
Myricetin [2] |
Nanoparticles [2] |
Natural and marine compounds [1] |
Natural Compound [1] |
Natural compound [1] |
Natural compounds [2] |
Natural Product [2] |
Natural product compounds [2] |
Natural products [1] |
NEMO-IKK domain [1] |
New record [1] |
nicotinamide adenine dinucleotide adenosine diphosphate ribosyltransferase [1] |
Nonhuman [4] |
Nordihydroguaiaretic Acid [1] |
North-Western Plains of India [1] |
Notch-1 [3] |
Nuclear Factor Erythroid 2 �Related Factor 2 Signaling [1] |
Nucleotide [1] |
Nucleotide Sequence [1] |
Nucleotide sequence [1] |
Nutraceutical products [1] |
Nutrient Content [1] |
Ocimum Basilicum [1] |
Ocimum Tenuiflorum [1] |
Optical properties [1] |
Organic solvents [1] |
Ovule viability [1] |
Oxidative Stress [3] |
Oxidative stress [2] |
Paclitaxel [1] |
Parsimony [1] |
Partial density of state [1] |
Pastid Genome [1] |
Pathway analysis [2] |
pathway analysis [1] |
Personalized Medicine [1] |
Phaeophyceae [1] |
Pharmacogenomics [1] |
Pharmacoproteomics [1] |
Phenetics [2] |
Phenolics [1] |
Phosphate transporter [1] |
Phosphoinositide-3 kinase [2] |
Photographic films [1] |
Phylogenetic analysis [1] |
Phylogenetics [2] |
phylogenetics [1] |
Phylogeny [4] |
phylogeny [2] |
Phylogeny Reconstruction [1] |
Phylogeography [3] |
phylogeography [1] |
Physico-chemical parameter [1] |
Physio-chemical properties [1] |
Phytoremediation [4] |
phytoremediation [1] |
PI3K/ [1] |
PIC: Polymorphism Information Content [1] |
Pioneer species [1] |
PKM2 [1] |
Plant [1] |
Plant chromosome [1] |
Plant development and abiotic stress [1] |
Plant Dna [1] |
plant extract [1] |
Plant gene [1] |
Plant Genome [1] |
Plant Growth Promoting Bacteria [1] |
Plant growth promoting bacteria [1] |
Plant growth promoting rhizobacteria [1] |
Plant immunity [1] |
Plant Medicinal Product [1] |
Plants [2] |
Plants (botany) [1] |
Politics [1] |
pollen [1] |
Polyp [1] |
Polysphincta [1] |
Population structures [1] |
Preclinical Study [1] |
Preconditioning [2] |
Pristimerin [1] |
prostate Cancer [1] |
Protein Bax [1] |
protein Bax [1] |
protein bcl 2 [1] |
protein bcl xl [1] |
Protein Expression [1] |
Protein Inhibitor Of Activated Stat [1] |
Protein Interaction [1] |
protein p53 [1] |
Protein Sh2 [1] |
Protein Structure [1] |
protein tyrosine kinase [1] |
Proteins [2] |
Proteomics [1] |
Pseudomonas [1] |
Public [1] |
Pucciniam triticina [1] |
Pyrimidinone derivative [1] |
Quercetin [1] |
rbcl [1] |
reactive oxygen met [1] |
Reactive Oxygen Metabolite [3] |
Reactive oxygen species [2] |
Receptor Tyrosine Kinase [1] |
Receptor tyrosine kinase [1] |
Receptor tyrosine kinases [2] |
Red alga [1] |
Red algae [1] |
Red seaweeds [1] |
Reforestation [1] |
Religion [1] |
reproductive biology [1] |
Reverse Transcription Polymerase Chain Reaction [1] |
Rhizosphere [1] |
Rhododendron [3] |
Rhododendron arboreum [2] |
Rhodophyta [1] |
Rightism [1] |
RNA [1] |
RNA sequencing [1] |
RNAseq [1] |
Robust RNAi [1] |
ROS [4] |
Rosette [1] |
S961 [1] |
Salvadora oleoides [1] |
Sargassaceae [1] |
Sargassum [1] |
Scaffolds [1] |
Scaffolds (biology) [1] |
schizophrenia [1] |
Seaweed [2] |
seaweed] [1] |
Secondary metabolites [1] |
Secondary silencing [1] |
seed size/weight [1] |
selection [1] |
Sensing applications [1] |
Sequence alignment [1] |
Sequence similarity search [1] |
Sere [1] |
sgRNA [1] |
Signal peptide [1] |
Signaling [2] |
Small RNA [1] |
Small RNA sequencing [2] |
Sociology of science [1] |
Software [1] |
Soil moisture [1] |
Solutions [1] |
Spacer DNA [1] |
Spacer Dna [1] |
Speciation [1] |
Spodoptera Litura [1] |
Src kinase [1] |
SSR [1] |
St [1] |
Stabilizing properties [1] |
Stat3 Protein [1] |
Structural organization [1] |
Sulphation [1] |
Superoxide dismutase [2] |
Synapomorphy [2] |
Systematics [1] |
systematics [1] |
Taxaceae and Cephalotaxaceae are the two economically important conifer families. Over the years there has been much controversy over the issue of merging these families. The position of Amentotaxus and Torreya is also ambiguous. Some authors consider them closer to Taxaceae while others deemed them to fit within Cephalotaxaceae. Still, others prefer to raise them to their own tribe. Different morphological, anatomical, embryological and phylogenetic evidence supports one or the other view, making the precise delineation between them unresolved. Here we used an RNAseq?based approach to obtain orthologous genes across the selected species to reconstruct a more robust phylogeny of these families. A total of 233.123 million raw reads were de novo assembled to generate nine different transcript assemblies for the corresponding species. Of the 940 191 assembled transcripts across nine species, we generated 409 734 unigenes, which were clustered into orthologous groups. A total of 331 single?copy complete orthologous groups were selected for phylogenetic analysis. Maximum?likelihood, maximum?parsimony and Bayesian phylogenetic trees showed a sister relationship between Taxaceae and Cephalotaxaceae. Our analysis supports their distinctiveness at the family level and also shows that Amentotaxus and Torreya fit within Cephalotaxaceae. [1] |
Taxonomy [1] |
Taxus contorta [1] |
temperature profile [1] |
Tentacles [1] |
Terpenoids [1] |
testosterone [1] |
Tetrahydrocannabinol [1] |
Theoretical approach [1] |
Therapeutics [1] |
Thermal stability [2] |
Thermodynamic stability [2] |
Thermodynamics [1] |
Time dependent density functional theory [1] |
Tissue [3] |
Tissue engineering [3] |
Total amino acids [1] |
Toxoplasma [1] |
transcriptional modules [1] |
Transcriptome [5] |
transcriptome [1] |
transcriptome dynamics [1] |
Transgenic tobacco [1] |
Transitive RNAi [1] |
Transitivity [1] |
Transmission electron microscopy [1] |
Tree of life [1] |
Trentepohlia annulata [1] |
Trentepohlialean [1] |
Triterpenes [1] |
Triticum aestivum [1] |
tufA [1] |
TUGMS: Tea Unigene Micro Satellite [1] |
Tumor Cell Line [1] |
Tumor protein; [1] |
Turbinaria (Phaeophyceae) [1] |
Turbinaria Ornata [1] |
tyrosine hydrolase [1] |
Ulotrichales [1] |
Ultraviolet visible spectroscopy [1] |
Ulvales [1] |
Ulvella [1] |
Ulvella leptochaete [1] |
Ulvellaceae [1] |
Ulvophyceae [1] |
Unclassified Drug [1] |
Unclassified drug [2] |
Unindexed drug [1] |
UV visible spectroscopy [1] |
viability [1] |
Vitex negundo [1] |
waka [1] |
Wastewater [1] |
Web tools [1] |
wild population [1] |
Winter adaptation [1] |
Wnt signaling [1] |
Wound dressings [1] |
X ray diffraction [1] |
Zinc [1] |
Zinc oxide [1] |
Zinc oxide nanoparticles [1] |
Zinc oxide nanostruc [1] |
Zoanthids [1] |
Zoanthus pulchellus [1] |
Polysaccharides [1] |
TNF [1] |
β-catenin [1] |