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1 ) and a cell type that has a cell wall (the "sporangium").
2 he mother cell compartment of the developing sporangium.
3 ein localization in both compartments of the sporangium.
4 f the forespore across the short axis of the sporangium.
5 eplication anchored at opposite poles of the sporangium.
6 otential cell division near both ends of the sporangium.
7  the forespore compartment of the developing sporangium.
8 es growth in the formation of a reproductive sporangium [1].
9 IIM and SpoIIP function at both poles of the sporangium, a GFP--SpoIIM fusion localized to the membra
10  of MciZ, the mother-cell compartment of the sporangium aberrantly formed a Z-ring at a time in devel
11 ynthesized in the mother cell chamber of the sporangium, assembled into a spherical shell around the
12 mation by Bacillus subtilis takes place in a sporangium consisting of two chambers, the forespore and
13     This expression is maintained throughout sporangium development in lycophytes and ferns and indic
14 and indicates an ancestral role of C3HDZs in sporangium development.
15 theses for the origin of the seed, where the sporangium developmental network was likely co-opted and
16 orespore and mother cell compartments of the sporangium during spore formation.
17 s produced in the mother cell chamber of the sporangium during the process of sporulation in Bacillus
18 Normally, SpoIIE rapidly disappears from the sporangium, first from the mother-cell pole and then fro
19 romycin did not inhibit growth on rye media, sporangium formation, zoospore release, cyst formation,
20 the physical dimensions of the B. megaterium sporangium, in conjunction with wide-field deconvolution
21 ess called "encystation."(5-7) The resulting sporangium increases in volume by two or three orders of
22 rmation of a polar septum, which divides the sporangium into a mother cell and a forespore.
23  cell-specific transcription factor when the sporangium is divided into a mother cell and forespore.
24                         In the predivisional sporangium, pro-sigmaE was found to be associated with t
25 by the spore-releasing mechanism of the fern sporangium-relies on the capillary deformation of an arc
26 ow a potential mechanism for stress-assisted sporangium rupture.
27  is a deep homology of all leaves and that a sporangium-specific developmental program was coopted in
28  of the two adjacent cells of the developing sporangium, the mother cell and forespore.
29  in different cells of the Bacillus subtilis sporangium, the mother cell protein SpoIIIAH and the for
30 ferentiation of the two cells comprising the sporangium: the forespore, which becomes the dormant spo
31                                          The sporangium then cellurizes by dividing its cytoplasm int
32                            After exiting the sporangium through a discharge tube onto the amphibian s
33 ession in the mother-cell compartment of the sporangium triggers the activation of sigma(G) in the fo
34 ruited to the polar septum shortly after the sporangium undergoes asymmetric division and that the fu
35 mation of a septum near one pole divides the sporangium unequally into a forespore (the smaller compa
36  that SpoIIE is present in the predivisional sporangium, where it often localizes near both cell pole