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1 SC) and their differentiated daughter cells (cystoblasts).
2 asymmetrically, producing another GSC and a cystoblast.
3 tem cell produces a daughter stem cell and a cystoblast.
4 ifferentiation of the stem cell progeny, the cystoblast.
5 ct regulator of the switch from stem cell to cystoblast.
6 ach other in reciprocal patterns in GSCs and cystoblasts.
7 -contacting PGCs directly differentiate into cystoblasts.
8 differentiation of immediate GSC daughters, cystoblasts.
9 m cells and the immediate descendents called cystoblasts.
10 ary regulators of bam expression in GSCs and cystoblasts.
11 ls, apparently by inducing them to divide as cystoblasts.
12 lls and high levels of Nanos in the dividing cystoblasts.
14 rosomes that anchor the spindles of dividing cystoblasts, and at the nuclear rim of the developing oo
15 ling, one GSC daughter differentiates into a cystoblast (CB) and this fate is stabilised by Brain tum
18 at fusome biogenesis is an obligate step for cystoblast cell fate and that Bam is the limiting factor
19 ndicate that, like bam, bgcn is required for cystoblast development and that germ cells lacking bgcn
21 est that Bam and Bgcn cooperatively regulate cystoblast differentiation by controlling localization o
22 n of TER94 is Bam-dependent, suggesting that cystoblast differentiation may be linked to fusome retic
24 sion of SXL, which in turn causes defects in cystoblast differentiation similar to the Bruno mutant p
26 he relationship between fusome cisternae and cystoblast differentiation, we have begun to identify ot
31 dicates that bam expression is necessary for cystoblast differentiation; bam mutant germ cells fail t
32 produced eggs, indicating that stem-cell and cystoblast divisions in the female germline do not requi
33 arbles (bam) gene as an intrinsic factor for cystoblast fate in Drosophila germline cells and shown t
36 ion that germ cells lacking bgcn cannot form cystoblasts is that bgcn stem cells resist genetic ablat
37 SC) to its differentiated daughter cell, the cystoblast, is controlled by both niche signals and intr
44 some, a cytoplasmic structure that spans the cystoblast's progeny that develop to form a germline cys
46 invariably divide asymmetrically to produce cystoblasts that proceed normally through oogenesis-rema
47 Bruno is required for the differentiation of cystoblasts, the committed daughters of germline stem ce
48 asymmetrically to produce daughter GSCs and cystoblasts, the latter of which develop into germline c
50 es in a 16-cell syncytium that arises from a cystoblast which undergoes 4 synchronous divisions with
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