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div. section text # proj. length # Ann.
0 TIAB Jasmonate signalling pathway in strawberry: Genome-wide identification, molecular characterization a 1 2041 0 show
1 Introduction Jasmonates (JAs) regulate development, metabolism and tolerance against biotic and abiotic stresses 1 4936 0 show
2 Materials and methods Identification and characterization of JA signalling-related genes in F. vesca Arabidopsis sequences 1 665 0 show
3 Materials and methods Mapping, duplication and synteny analysis of JAZ and MYC genes in F. vesca and Arabidopsis thaliana 1 588 0 show
4 Materials and methods Gene structure, protein sequence and phylogenetic analyses Exon-intron organizations of JAZ and MYC 1 1102 0 show
5 Materials and methods Plant material and JA treatment Strawberry (F. × ananassa cv. Aromas) flowers and fruit were collect 1 1517 0 show
6 Materials and methods Gene expression analysis Total RNA was isolated using the CTAB method [39] and mini-columns for RNA 1 1528 0 show
7 Materials and methods Determination of anthocyanins and proanthocyanidins (PAs) contents Five grams of frozen fruit skin t 1 1041 0 show
8 Results Identification, chromosomal location and synteny of JAZ and MYC genes in F. vesca In order to identi 1 3156 0 show
9 Results Exon-intron structure analysis for JAZ and MYC genes in F. vesca In order to gain insights into the 1 1190 0 show
10 Results Conserved domains of JAZ and MYC proteins in F. vesca To confirm evolutionary relationships and gain 1 2758 0 show
11 Results Phylogenetic analysis of F. vesca JAZ and MYC2-like proteins Unrooted phylogenetic trees were genera 1 2787 0 show
12 Results Expression of FaJAZ and FaMYC genes during development and ripening of F. × ananassa fruit To determ 1 2068 0 show
13 Results Expression of other JA signalling-related genes during development and ripening in F. × ananassa fru 1 1030 0 show
14 Results Expression of FaJAZ1, FaJAZ8.1 and FaMYC2 under JA treatment To gain insights into the expression re 1 1148 0 show
15 Results Molecular characterization and expression of PPDs in strawberry To gain insights into the existence 1 1561 0 show
16 Discussion FvJAZ, FvMYC2 and FvMYC2-like genes conserve synteny in F. vesca genome JAZ and MYC along with COI1 1 3341 0 show
17 Discussion FvJAZ proteins show conserved TIFY and Jas domains To gain further insights in the primary protein s 1 3286 0 show
18 Discussion FvMYC2 and FvMYC2-like proteins showed high conservation in JID and bHLH domains In Arabidopsis, MYC 1 1237 0 show
19 Discussion FaMYC2, FaJAZ1 and FaJAZ8.1 are downregulated during development and ripening in F. × ananassa fruit 1 2271 0 show
20 Discussion Other JA-signalling genes are downregulated during development and ripening of F. × ananassa fruits 1 1709 0 show
21 Discussion FaJAZ1, FaJAZ8.1 and FaMYC2 are JA-responsive genes in F. × ananassa fruit JAZ and MYC2 genes are JA 1 1646 0 show
22 Conclusions Overall, we identified and characterized 12 JAZ and two MYC genes in F. vesca genome, encoding for k 1 1671 0 show
23 Caption-Fig 1 Genome distribution and synteny of JAZ and MYC genes in Fragaria vesca and Arabidopsis chromosomes. 1 380 0 show
24 Caption-Fig 2 Exon-intron structures of the Fragaria vesca and Arabidopsis JAZ and MYC genes. Exon-intron organiza 1 376 0 show
25 Caption-Fig 3 Distribution of JAZ and MYC protein domains and motifs in Fragaria vesca and Arabidopsis. Comparativ 1 558 0 show
26 Caption-Fig 4 Multiple alignment of JAZ and MYC protein domains in Fragaria vesca and Arabidopsis. Multiple sequen 1 543 0 show
27 Caption-Fig 5 Logo sequences for FvJAZ and FvMYC proteins. Logo sequences for TIFY (A), and Jas (B) domains of FvJ 1 250 0 show
28 Caption-Fig 6 Phylogenetic analysis of Fragaria vesca JAZ and MYC proteins. Phylogenetic tree of JAZ (A) and MYC-l 1 601 0 show
29 Caption-Fig 7 Expression heatmaps of Fragaria × ananassa JA signalling-related genes during fruit development and 1 886 0 show
30 Caption-Fig 8 Expression of FaJAZ1, FaJAZ8.1 and FaMYC2 under MeJA treatment in Fragaria × ananassa fruit. Changes 1 617 0 show
31 Caption-Table 1 Genomic data of JAZ and MYC gene family in woodland strawberry (Fragaria vesca) and Arabidopsis, and 1 145 0 show