Os03g0752100
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Annotated Information
Function
- The role of phyA in coleoptile inhibition
is also important, but visible only in the absence of phyB.
Mutation
- As shown in Figure 2A, dark-grown seedlings
have long coleoptiles (white arrows) and first leaves (yellow arrows). The most striking feature is the remarkable elongation of second internodes (red arrows), which are hardly measurable in the light-grown seedlings. In principle, light represses the elongation of coleoptiles and first leaves and blocks the internode from elongating (Figures 2B and 2C), but phyA phyB under Rc (Figure 2B), and phyA phyC and phyA phyB double mutants grown under FRc (Figure 2C) showed the typical dark-grown phenotype characterized by the long coleoptiles (white arrows) and the elongated internode (red arrows).
- To quantify the differences, the researchers took comprehensive measurements
of lengths on the seedlings under Rc and FRc, as well as darkness (Figure 3). Under Rc, the coleoptile elongation was severely inhibited in wild-type, phyA, phyC, and phyA phyC mutants. Coleoptiles of phyB and phyB phyC mutants were similarly longer than those of the wild type but were still greatly reduced in length compared with dark-grown seedlings, and no inhibition was observed in phyA phyB double mutants (Figure 3A, Rc). These results indicate that phyB plays a major role in coleoptile inhibition by Rc and that the role of phyA in coleoptile inhibition is also important, but visible only in the absence of phyB. Under FRc, coleoptiles of phyA mutants were longer than those of the wild type but still shorter than those of dark-grown seedlings. The phyB mutation did not affect the coleoptile inhibition. The phyC single mutation also showed no effect, but phyA phyC double mutants had long coleoptiles, as long as those of dark-grown seedlings (Figure 3A, FRc). Therefore, when phyA is functional, phyC function is dispensable, but in the absence of phyA, phyC showed a limited effect by partially inhibiting the coleoptile (the difference between phyA and phyA phyC). No inhibition was detected in phyA phyB double mutants, probably due to a significant reduction in the phyC level of these mutants. First leaves of rice are incomplete and consist mostly of leaf sheaths and poorly developed tiny leaf blades. Thus, the lengths of first leaves represent mostly those of leaf sheaths. The growth of first leaves was also inhibited by Rc and FRc in basically the same manner as observed in coleoptiles (Figure 3B). The inhibitory effects of Rc and FRc appeared less drastic on first leaves than on coleoptiles. The second internodes of phyA phyB double mutants under Rc and those of phyA phyC and phyA phyB under FRc elongated as much as those of dark-grown seedlings. The other mutants had undetectable internodes when grown under FRc or Rc conditions except for the phyA mutants under FRc, which showed slight but measurable elongation (Figure 3C).
Expression
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Evolution
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Labs working on this gene
- Department of Plant Physiology, National Institute of Agrobiological Sciences, Tsukuba, Ibaraki 305-8602, Japan
- Hitachi Central Research Laboratory, Hatoyama, Saitama 350-0395, Japan
- Department of Molecular Genetics, National Institute of Agrobiological Sciences, Tsukuba, Ibaraki 305-8602, Japan
- Institute of Radiation Breeding, National Institute of Agrobiological Sciences, Hitachi-ohmiya, Ibaraki 319-2293, Japan
References
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