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L K Dickinson

Publications and source records attributed to L K Dickinson.

4 recordsLinked to original sources

Genetics of nanos localization in Drosophila.

The Drosophila gene nanos is required for two processes. During oogenesis, nanos function is required for the continued production of egg chambers, and nanos is expressed in the early germarium. During embryogenesis, nanos is required maternally to specify abdominal segmentation. Nanos shares this latter function with nine other genes, collectively known as the posterior group. Of this group, nanos encodes a determinant, and is localized as an RNA to the posterior pole of early embryos. This RNA is translated to form a gradient of nanos protein with highest concentrations at the posterior. Analysis of the distribution of nanos gene products in embryos mutant for posterior group genes shows that eight of these genes are required for localization, but not stability, of the nanos RNA. Embryos mutant for posterior group alleles which produce weak abdominal phenotypes show reduced amounts of localized nanos RNA. This correlation between nanos RNA localization and abdominal phenotype suggests that nanos acts as a localization-dependent posterior determinant. Localization of nanos is not affected by mutations in bicoid or torso, confirming that the three maternal systems of anterior-posterior determination initially act independently.

Alleles

Interactive videodisc and compact disc-interactive for ophthalmic basic science and continuing medical education.

BACKGROUND: The authors designed and implemented a complete curriculum in ophthalmic pathology using IBM- and Macintosh-based interactive videodisc (IVD) technology. They also redesigned a portion of this curriculum for a new television-based platform, compact disc-interactive (CD-I). METHODS: The following issues were addressed: curriculum design, instructional design, the assembly of illustrations and the ownership of such materials, the generation of computer-based medical art and animation, and programming. The issue of academic credit for faculty participating in this effort also was considered. RESULTS: The computer-based IVD program provides the following features: (1) rapid access to thousands of high-quality illustrations with the option of superimposing graphic labels and text directly over pictures; (2) the ability to view enlargements of photographs; (3) an online glossary to view definition of terms coupled with high-quality photographs; and (4) a dynamic introduction to pathophysiology using interactive animation sequences. The authors were able to incorporate the same interactive features into the CD-I version. High-quality medical illustrations can be used effectively on the CD-I platform. CONCLUSIONS: Computer-based multimedia workstations are relatively expensive for personal use but may be useful if the equipment can be shared in a learning center or library. Compared with interactive computer-based solutions, consumer-oriented television-based technology such as CD-I is a relatively inexpensive vehicle for providing continuing medical education programs intended for use in the individual practitioner's office or home.

Compact Disks

Pumilio is essential for function but not for distribution of the Drosophila abdominal determinant Nanos.

The Drosophila gene pumilio is expressed maternally, and its function is essential during early embryogenesis for the formation of abdominal segments. Our molecular analysis reveals that pumilio is a large gene that encodes a protein of 160 kD whose RNA is enriched at the posterior pole of the egg. As with pumilio, the maternal effect gene nanos is specifically required for abdomen formation. The Nanos protein is expressed in a posterior-to-anterior concentration gradient in the developing embryo. Previous experiments demonstrated a genetic interaction between pumilio and nanos, and led to the suggestion that pumilio is required for the proper spatial distribution of the Nanos protein. Here, we show that the expression and distribution of nanos RNA and protein in embryos derived from pumilio mutant females are indistinguishable from wild type. We conclude that abdomen formation depends both on Nanos activity, spreading from the localized posterior source, and on Pumilio activity, present throughout the embryo.

Abdomen

Oskar organizes the germ plasm and directs localization of the posterior determinant nanos.

Oskar is one of seven Drosophila maternal-effect genes that are necessary for germline and abdomen formation. We have cloned oskar and show that oskar RNA is localized to the posterior pole of the oocyte when germ plasm forms. This polar distribution of oskar RNA is established during oogenesis in three phases: accumulation in the oocyte, transport toward the posterior, and finally maintenance at the posterior pole of the oocyte. The colocalization of oskar and nanos in wild-type and bicaudal embryos suggests that oskar directs localization of the posterior determinant nanos. We propose that the pole plasm is assembled stepwise and that continued interaction among its components is required for germ cell determination.

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