Pages that link to "Q48081036"
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The following pages link to A novel gene, screened by cDNA-AFLP approach, contributes to lowering the acidity of fruit in apple (Q48081036):
Displaying 26 items.
- Genomic selection for fruit quality traits in apple (Malus×domestica Borkh.) (Q28730113) (← links)
- GOGOT: a method for the identification of differentially expressed fragments from cDNA-AFLP data (Q31114063) (← links)
- Identification of genes differentially expressed during interaction of resistant and susceptible apple cultivars (Malus x domestica) with Erwinia amylovora. (Q33521762) (← links)
- A genome-wide analysis of the LBD (LATERAL ORGAN BOUNDARIES domain) gene family in Malus domestica with a functional characterization of MdLBD11. (Q34611702) (← links)
- Gene expression profiling by cDNA-AFLP reveals potential candidate genes for partial resistance of 'Président Roulin' against Venturia inaequalis. (Q34996423) (← links)
- Advances in molecular marker techniques and their applications in plant sciences (Q37075960) (← links)
- Phenotypic and fine genetic characterization of the D locus controlling fruit acidity in peach (Q37233608) (← links)
- Analysis of manganese-regulated gene expression in the ligninolytic basidiomycete Ceriporiopsis subvermispora. (Q38288040) (← links)
- Microarray analysis of differentially expressed genes engaged in fruit development between table and wine grape (Q38477839) (← links)
- An apple CIPK protein kinase targets a novel residue of AREB transcription factor for ABA-dependent phosphorylation (Q38664155) (← links)
- MdVHP1 encodes an apple vacuolar H -PPase and enhances stress tolerance in transgenic apple callus and tomato (Q38976076) (← links)
- Overexpression of a R2R3 MYB gene MdSIMYB1 increases tolerance to multiple stresses in transgenic tobacco and apples (Q39575558) (← links)
- Molecular cloning and functional characterization of a novel apple MdCIPK6L gene reveals its involvement in multiple abiotic stress tolerance in transgenic plants (Q39575566) (← links)
- The enhancement of tolerance to salt and cold stresses by modifying the redox state and salicylic acid content via the cytosolic malate dehydrogenase gene in transgenic apple plants (Q40355849) (← links)
- MdSOS2L1 phosphorylates MdVHA-B1 to modulate malate accumulation in response to salinity in apple (Q41034142) (← links)
- A natural mutation-led truncation in one of the two aluminum-activated malate transporter-like genes at the Ma locus is associated with low fruit acidity in apple (Q42686379) (← links)
- A new set of differentially expressed signaling genes is early expressed in coffee leaf rust race II incompatible interaction (Q45729617) (← links)
- The functions of an apple cytosolic malate dehydrogenase gene in growth and tolerance to cold and salt stresses (Q48060569) (← links)
- Expression analysis and functional characterization of apple MdVHP1 gene reveals its involvement in Na , malate and soluble sugar accumulation (Q50275622) (← links)
- dHPLC efficiency for semi-automated cDNA-AFLP analyses and fragment collection in the apple scab-resistance gene model. (Q54327689) (← links)
- Molecular cloning and functional characterization of MdSOS2 reveals its involvement in salt tolerance in apple callus and Arabidopsis. (Q54548099) (← links)
- Phosphorylation of a malate transporter Promotes Malate Excretion and Reduces Cadmium Uptake in Apple (Q90140200) (← links)
- Melatonin promotes ripening of grape berry via increasing the levels of ABA, H2O2, and particularly ethylene (Q90791589) (← links)
- The basic helix-loop-helix transcription factor MdbHLH3 modulates leaf senescence in apple via the regulation of dehydratase-enolase-phosphatase complex 1 (Q91643416) (← links)
- Transcriptomic and phosphoproteomic profiling and metabolite analyses reveal the mechanism of NaHCO3-induced organic acid secretion in grapevine roots (Q93082851) (← links)
- BTB-BACK-TAZ domain protein MdBT2-mediated MdMYB73 ubiquitination negatively regulates malate accumulation and vacuolar acidification in apple (Q99565766) (← links)