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Instead, we demonstrate that Wnt signaling controls the expression of four Gst genes to maintain the reduced redox, thereby promoting ISC maintenance and germ cell differentiation.
Taken together, these results demonstrate that Wnt signaling in ISCs maintains the reduced redox state, which is partly responsible for ISC maintenance and germ cell differentiation.
We also believe that Piwi and Wnt signaling are relevant with each other in controlling ISC maintenance and promoting germ cell differentiation because they have similar mutant phenotypes in ISC maintenance and germ cell differentiation.
Examining this overlapping gene set we were able to identify many conserved factors associated with stem cell maintenance and germ cell development in diverse organisms (Table 1), suggesting this overlap bears biological significance.
c587-driven arm* expression alone does not cause any obvious GSC maintenance and germ cell differentiation defects, but results in severe egg chamber budding defects likely due to defective follicle cell development.
In A – F, broken ovals highlight cap cells and GSCs, whereas arrowheads point to CBs. (A – G ) c587 -directed overexpressing GST2 (A ), CAT (B ), or SOD1 (C ) in ISCs does not affect GSC maintenance and germ cell differentiation, but drastically reduces CBs in the dshKD2 germaria (D – F ). (G ) GSC quantification results.
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These studies have identified a number of genes involved in mitochondrial organization and biogenesis, cell growth and maintenance, and germ-line differentiation, as well as some with sexually dimorphic co-expression in both the gonads and the brains [ 8- 10].
(I ) A schematic diagram showing that autocrine Wnt2 and Wnt4 signals control ISC maintenance and promote germ cell differentiation at least in part by maintaining the reduced redox state and preventing BMP signaling.
To characterize the role of H3K4 demethylases in the maintenance of somatic and germ cells, we examined the impact of rbr-2 deficiency on somatic longevity in adults, as well as in germ cell maintenance as they proliferate over many generations, and in the maintenance of nondividing germ cells in long-lived dauer larvae.
This may lead to less rigorous basic hygiene maintenance, and thus more germ buildup.
Genes identified mainly from the Drosophila melanogaster literature as functioning early for the maintenance and division of germ-line and ovarian somatic stem cells.
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