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Tailless terminates the neural stem cell temporal cascade in both the optic lobe and central brain.

Temporal patterning is an evolutionarily conserved mechanism to produce neuronal and glial diversity from common cells of origin during neurodevelopment. This process is controlled by a series of temporal transcription factors that are transiently expressed and drive the sequential production of specific progeny subtypes. Intermediate neural progenitors (INPs) and optic lobe neural stem cells (OL NSCs) share striking similarities in temporal factor expression despite divergent cells of origin. Tailless (Tll) is a terminal temporal factor in the visual system in OL NSCs. Its expression coincides with the termination of neurogenesis and onset of gliogenesis. Here, we report that Tll also acts as a terminal factor in Drosophila INPs, demonstrating functional conservation. Tll expression is activated by the preceding temporal factor Scarecrow, and represses odd-paired and hamlet. tll also plays a partial role in promoting gliogenesis in gliogenic NSCs. We performed genome-wide binding analysis of Tll in the OL NSCs and INPs by Targeted DamID, revealing both conserved and divergent targets, reflecting differences in regulatory outcomes. We show that temporal patterning mechanisms are conserved between different brain regions, whilst facilitating lineage-specific outputs.

Animals

Malformations and the Manx syndrome in cats.

Breeding experiments were conducted on cats with congenital taillessness, to test the dissemination pattern of taillessness in their offspring. Clinical evaluation, radiographic analysis of the vertebral column and histological studies of the digestive tract and central nervous tissue were conducted to determine the association of malformations of these systems in cats born with different degrees of taillessness noted in the rumpy and stumpy cats. The mode of transmission of the tailless (Manx) condition assumed to be through an autosomal dominant factor (M) was confirmed by this investigation. It is hypothesized that the problems associated with the tailless condition such as spina bifida, urinary and faecal incontinence and locomotor disturbances of the pelvic limbs may all be related to a disturbance affecting the development of the central nervous system in the early embryonic life.

Animals

Factors affecting surface changes in intact cercariae and cercarial bodies of Schistosoma mansoni.

The effect of different incubation media and of temperature on the induction of water sensitivity has been investigated in intact and tailless Schistosoma mansoni cercariae. Removal of the cercarial tail by vortex stirring and elevation of the temperature of the medium from 27 to 37 degrees C resulted in the rapid onset of permeability changes in the larvae. The rate of change was greater in water than in TC-199 or Hanks' BSS media. Lowering the pH of the medium or increasing the concentration of Ca2+ ions decreased the rate of permeability change: raising the pH of the medium or the addition of 10(-5) M EDTA enhanced the rate. Raising the temperature of the medium also increased the rate of permeability change in intact cercariae although the rates obtained varied with the different media tested, being greatest in TC-199. It is concluded that both temperature elevation and loss of the cercarial tail influence the onset and rate of permeability changes in cercarial bodies during the transformation to schistosomula.

Calcium Chloride

Isolation of bacteriophage-like particles from uninduced Clostridium tetani cultures.

The isolation of hexagonal-headed, tailless, bacteriophage-like particles from uninduced cultures of Clostridium tetani is described. Clear, round, 1--3 mm diameter plaques were noted on Clostrisel agar plates, which were overlaid with soft agar inoculated with 7--14 day broth cultures. Particles were detected by transmission electron microscopy from broth cultures seeded with scrapings from the plaques. Both electron dense and electron lucent heads were noted. An electron dense head was observed attached to the surface of a dividing bacterium.

Bacteriophages