2015
DOI: 10.1016/j.plantsci.2015.05.008
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Genome-wide analysis of SnRK gene family in Brachypodium distachyon and functional characterization of BdSnRK2.9

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Cited by 56 publications
(51 citation statements)
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“…The number of exons or introns varied in different subfamilies and genes. The FvSnRK1.1 had 10 exons, which was the same as that reported for EgrSnRK1s and BdSnRK1s [25,26]. Most of FvSnRK2s had nine exons or eight introns, except FvSnRK2.4, FvSnRK2.8 and FvSnRK2.9, which are consistent with that of most Arabidopsis, rice, maize, sorghum, tea and grape SnRK2 genes [27][28][29][30], suggesting that most SnRK2s in plants have a conserved structure with nine exons or eight introns.…”
Section: Discussionsupporting
confidence: 82%
See 1 more Smart Citation
“…The number of exons or introns varied in different subfamilies and genes. The FvSnRK1.1 had 10 exons, which was the same as that reported for EgrSnRK1s and BdSnRK1s [25,26]. Most of FvSnRK2s had nine exons or eight introns, except FvSnRK2.4, FvSnRK2.8 and FvSnRK2.9, which are consistent with that of most Arabidopsis, rice, maize, sorghum, tea and grape SnRK2 genes [27][28][29][30], suggesting that most SnRK2s in plants have a conserved structure with nine exons or eight introns.…”
Section: Discussionsupporting
confidence: 82%
“…As the plant has evolved, the subfamilies SnRK2 and SnRK3 have emerged, which are larger and relatively more diverse compared with SnRK1 [8]. Bioinformatic analysis of SnRK family has isolated a total of 39 AtSnRKs including three AtSnRK1s, 10 AtSnRK2s and 26 AtSnRK3s in Arabidopsis [21][22][23][24], 44 BdSnRKs including three BdSnRK1s, 10 BdSnRK2s and 31 BdSnRK3s in Brachypodium distachyon [25], 34 EgrSnRK including two EgrSnRK1s, eight EgrSnRK2s and 24 EgrSnRK3s in Eucalyptus grandis [26]. Here, we identified 26 FvSnRKs composed of one FvSnRK1, nine FvSnRK2s, 16 FvSnRK3s in the wild strawberry (Fragaria vesca).…”
Section: Discussionmentioning
confidence: 99%
“…Therefore, the characterization of B. distachyon genes could provide reference for studies of other species in Pooideae subfamily. Our previous study identified 32 CIPK ( SnRK3 ) genes in the Brachypodium genome (Wang et al, 2015). However, none of these BdCIPKs has been functionally characterized.…”
Section: Introductionmentioning
confidence: 99%
“…Approaches including sequence and domain/motif analysis have been widely used along tree-based sequence clustering for the identification and description of many plant gene families, including the SnRK family. These strategies combined sequence-based methods with the evaluation of the identified sequences expression patterns in order to link them to particular stresses [28,38,39]. Other works [28,40] complemented this approach with the prediction of the proteins associated to the newly identified ones through databases such as STRING containing known relations between the orthologs to these elements.…”
Section: Discussionmentioning
confidence: 99%