linkedin post 2019-02-09 07:28:27

Uncategorized
"VERNALIZATION PATHWAYS in different plants converge on related flowering time genes, in particular, the broadly conserved promoter of the floral transition, FLOWERING LOCUS T (FT). FT activity is countered by the related gene TERMINAL FLOWER1 (TFL1) that maintains indeterminate meristems." https://lnkd.in/duazcMZ View in LinkedIn
Read More

linkedin post 2019-02-09 07:30:22

Uncategorized
"A CENTRAL FEATURE of the dormant bud is that symplastic conduits are blocked by callose deposition in plasmodesmata (PD) and these are opened during chilling-induced dormancy release. Whereas CEN1 and FT2 expression peaks are clearly subsequent to dormancy release, FT1 upregulation overlapped with the reopening of PD in controlled environment studies of juvenile trees." https://lnkd.in/duazcMZ View in LinkedIn
Read More

linkedin post 2019-02-09 07:33:00

Uncategorized
PROTECTED MERISTEMS. "The vegetative and reproductive meristems of many perennial plants in temperate climates remain in a non-growing latent state during the cold period of autumn and winter, within buds, which ensure an optimal protection against low temperatures and drought." https://lnkd.in/duD22Cw View in LinkedIn
Read More

linkedin post 2019-02-09 07:34:47

Uncategorized
ENVIRONMENTAL TRIGGERS. "The cessation of meristem growth and bud set are controlled by photoperiod, temperature, or a combination of both in different species; followed by the induction of bud dormancy, which precludes the growth resumption even under favorable environmental conditions." https://lnkd.in/duD22Cw View in LinkedIn
Read More

linkedin post 2019-02-09 07:38:45

Uncategorized
NUMEROUS DORMANCY GENES. "These studies highlight the existence of common and specific gene expression programs affecting cell cycle regulation, light perception, hormonal signaling and stress response, and novel putative regulators of the dormancy stage of buds." https://lnkd.in/duD22Cw View in LinkedIn
Read More