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Fig. 6 Effects of Gluconobacter cerinus strain CDF1 on bananas and fly development.
Related sites Chess home page with descriptions of research Information about fruit fly development.
These results may indicate that the Gluconobacter bacterial communities can cause rot in guava and were beneficial for fly development.
These results may indicate that symbiotic bacteria in eggs are important to fly development and intensify fruit rot.
These results verified the function of Gluconobacter sp. strain CDF1 in enhancing fly development and fruit rot.
These researchers insightfully argued that "the in vivo proteolytic activity and the in vivo substrate specificity of the proteasome may be regulated by modification of its subunit composition during fly development" (Haass and Kloetzel, 1989).
Moreover, the results of LEfSe analyses indicated that Gluconobacter increased significantly as the ovary getting mature and was the key factor differentiating the mature ovaries (Fig. 1d), which may indicate that Gluconobacter is a key factor affecting fly development.
We find that EF-G1 is essential during fly development, but its function is not required in every tissue.
The MYC proto-oncogene is an essential gene whose function is required for normal mouse and fly development [1] [3].
Sans mutants are viable, fertile, and mutant follicle cells appear to form microvilli, indicating that Sans is dispensable for fly development and microvilli morphogenesis in the follicle epithelium.
This transgene silencing was observed in all the cells examined and throughout fly development, including in embryos, larvae, and adult flies.
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