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Interestingly, a GA catabolic enzyme encoding gene, OsGA2ox1, implicated in vegetative to floral phase transition in rice, also shows a similar expression pattern (Sakamoto et al. 2001).
From each population, five completely open flowers (third floral phase, i.e. with corolla wide open, stigma receptive and protruding beyond anthers; Mejías et al. 2002) from each of five individual plants were randomly selected for measurement.
Therefore, we cannot conclude with certainty whether the B allele has a direct or an indirect role in the temporal control of the floral phase transitions during bolting in sugar beet.
The early-flowering phenotype of bas1-2 sob7-1 and expression of BAS1-GUS in the shoot apex suggests that BAS1 is involved in regulating BR levels in the shoot apical meristem, which may in turn affect the vegetative to floral phase transition.
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Processes of mate-limitation in male reproductive success or pollen-limitation in female success, as well as flower protogyny and holocrine secretion of nectaries may be involved in nectar variability between floral phases.
High-yielding wheat cultivars are characterized by medium vernalization sensitivity, low photoperiod sensitivity and short length of floral initiation phase.
The floral differentiation phase (FDP) samples were collected from the entire adult plant which had developed floral buds at the base of the pseudobulb.
The results showed that nectar volume, sugar composition and concentration in Helleborus foetidus varied between floral sexual phases, environmental growing conditions, and levels of flower exposure to pollinator visits.
The genes were targeted by differently expressed miRNA between two floral development phases in C. ensifolium.
amiR-atpv42b-1 appeared normal during the vegetative phase, floral transition, and early stages of flower development (data not shown).
MiRNA156 has been shown to be involved in floral development and phase change by targeting members of squamosa promoter binding protein like (SPL) plant-specific transcription factors.
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