Difference between revisions of "Os03g0236966"

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* Nearly, 40–45% seed sterility was observed in the OsAPC6 mutant with grain L/B ratio of 4.8 while in Basmati 370, it was 6.0 (Fig. 1c, d, and e).
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* Nearly, 40–45% seed sterility was observed in the OsAPC6 mutant with grain L/B ratio of 4.8 while in Basmati 370, it was 6.0 (Fig. 1c, d, and e). In the longitudinal section (LS) of the second internode, the length of cells in certain layers was reduced to half to that of the wild-type plants (SI, Fig. S1a and b). While the transverse section (TS; SI, Fig. S1c and d) had enhanced number of cell layers in the dwarf mutant (∼17) as compared to Basmati 370 (∼12). Similarly, in TS (SI, Fig. S1e and f), the number of cells in the leaf xylem was found to be more in the dwarf mutant as compared to Basmati 370. Reduction in cell size of OsAPC6 in the vascular bundles of fourth leaves was also observed in TS.
  
 
[[File:Os03g0236966-1.png|center|thumb|400px|Fig. 1 Comparative morphology of Basmati 370 and OsAPC6.'''''' ''<ref name="ref1" />.'']]
 
[[File:Os03g0236966-1.png|center|thumb|400px|Fig. 1 Comparative morphology of Basmati 370 and OsAPC6.'''''' ''<ref name="ref1" />.'']]

Revision as of 09:08, 30 July 2016

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Annotated Information

Function

  • Nearly, 40–45% seed sterility was observed in the OsAPC6 mutant with grain L/B ratio of 4.8 while in Basmati 370, it was 6.0 (Fig. 1c, d, and e). In the longitudinal section (LS) of the second internode, the length of cells in certain layers was reduced to half to that of the wild-type plants (SI, Fig. S1a and b). While the transverse section (TS; SI, Fig. S1c and d) had enhanced number of cell layers in the dwarf mutant (∼17) as compared to Basmati 370 (∼12). Similarly, in TS (SI, Fig. S1e and f), the number of cells in the leaf xylem was found to be more in the dwarf mutant as compared to Basmati 370. Reduction in cell size of OsAPC6 in the vascular bundles of fourth leaves was also observed in TS.
Fig. 1 Comparative morphology of Basmati 370 and OsAPC6.' [1].

Mutation

Expression Pattern

Evolution

Subcellular localization

Labs working on this gene

  • National Research Centre on Plant Biotechnology, Indian Agricultural Research Institute, Pusa Campus, New Delhi 110012, India

References

  1. Kumar M, Basha PO, Puri A, Rajpurohit D, Randhawa GS, Sharma TR, Dhaliwal HS. A candidate gene OsAPC6 of anaphase-promoting complex of rice identified through T-DNA insertion. Funct Integr Genomics. 2010 Aug;10(3):349-58. doi: 10.1007/s10142-009-0155-6. Epub 2010 Jan 21. PubMed PMID: 20091079.

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Structured Information