2018
DOI: 10.1093/jxb/ery076
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BIFURCATE FLOWER TRUSS: a novel locus controlling inflorescence branching in tomato contains a defective MAP kinase gene

Abstract: The bifurcate flower truss (bif) gene, originating from Solanum galapagense, increases tomato inflorescence branching and flower number. A gene encoding a truncated MAP kinase is a strong candidate for bif.

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Cited by 6 publications
(4 citation statements)
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“…Genomic DNA was extracted from young cotyledons/leaves, and the KASP/KBD assays were performed as described (Silva Ferreira et al 2018 ). KBD assays were developed by LGC (Teddington, UK) based on the provided SNP and flanking sequence data (Table S1 ).…”
Section: Methodsmentioning
confidence: 99%
“…Genomic DNA was extracted from young cotyledons/leaves, and the KASP/KBD assays were performed as described (Silva Ferreira et al 2018 ). KBD assays were developed by LGC (Teddington, UK) based on the provided SNP and flanking sequence data (Table S1 ).…”
Section: Methodsmentioning
confidence: 99%
“…Before germination, all seeds were sterilised in 0.45% w/v sodium hypochlorite for 30 min and then rinsed in tap water to avoid seed-borne viral transmission. Seed were germinated as described (Silva Ferreira et al, 2018 ) before transplanting into 8 L pots of Sinclair multipurpose compost (LBS Horticulture, Colne, UK). Pots were irrigated according to demand and were fed twice a week with Hoagland solution (5 mM K 2 SO 4 ; 1 mM H 3 PO 4 ; 5 mM Ca (NO 3 ) 2 ; 2 mM MgSO 4; 100 μM EDTA Fe-Na; 42.2 μM H 3 BO 3 ; 9.1 μM MnCl 2 ; 0.76 μM ZnSO 4 and 0.32 μM CuSO 4 , pH 5.8 adjusted with H 3 PO 4 ), at half strength before flowering and full strength after flowering.…”
Section: Methodsmentioning
confidence: 99%
“…Genomic DNA extraction from young leaves and the KASP/KBD assays were performed as described (Silva Ferreira et al, 2018 ). All KBD assays were developed by LGC (Teddington, UK) based on the provided nucleotide polymorphism and flanking sequence data (Table S1 ).…”
Section: Methodsmentioning
confidence: 99%
“…In addition, the transcription factor SlZFP2 and protein kinase SlMAPK1 could also regulate branching in tomato. Overexpression of SlZFP2 gene increased the length of lateral branches and the SlMAPK1 mutation increased the number of lateral branches (Weng et al, 2016;Silva et al, 2018).…”
Section: Introductionmentioning
confidence: 99%