Exact(1)
The findings we obtained in the current study indicate that PHYA-mediated photoperesponsesonses may regulate seed maturation directly or indirectly via an as yet unknown factor: only when two phyA genes were dysfunctional did seed maturation after flowering under LD proceed without any marked delay.
Similar(7)
It has been suggested that some common mechanisms may regulate both seed and bud dormancy [ 20].
A recent study in Arabidopsis demonstrated that cold stress induced seed transcripts in dry, mature seeds were associated with genes that regulate seed dormancy and germination timing [ 35].
Other WRKY genes may regulate embryogenesis [ 35], seed size [ 36], seed coat and trichome development [ 32, 37], and senescence [ 38- 40].
Thus, it appears that different mechanisms may regulate immature and mature seed germination at supraoptimal temperature.
The known and new miRNAs identified in this study may regulate expression of these target genes to control seed development and energy storage in soybeans.
Results suggest that water deficit treatment may regulate the production of bioactive compounds in cumin seeds, influencing their nutritional and industrial values.
The corresponding miRNAs may regulate the expression of these target genes during different seed developmental stages in soybean through affecting various transcription factors that induce or shut off specific metabolic networks during the course of seed development.
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