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The spatial pattern of RNA in fully grown oocytes of an amphibian,Xenopus laevis

✍ Scribed by Capco, David G.


Publisher
John Wiley and Sons
Year
1982
Tongue
English
Weight
631 KB
Volume
219
Category
Article
ISSN
0022-104X

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✦ Synopsis


Abstract

The possibility that maternal RNA may be localized in specific oocyte regions was examined in fully grown oocytes of Xenopus laevis. These oocytes were subdivided into six regions perpendicular to their animal‐vegetal axis. Each region was analyzed to determine the amount of total cellular RNA, poly(A)^+^RNA, and newly synthesized ribosomal RNA. As would be expected from current evidence, total cellular RNA was found to exist in a gradient‐like fashion, highest at the animal pole and lowest at the vegetal pole. However, poly(A)^+^RNA and newly synthesized ribosomal RNA had significantly different spatial patterns from each other and from total cellular RNA. In addition, evidence suggests that newly synthesized ribosomal RNA requires two to three days before it is uniformly distributed within the oocyte. These results suggest that a mechanism may exist to create different spatial patterns for different classes of RNA.


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## Abstract Early development in the frog model, __Xenopus laevis__, is governed by RNAs, localized to the vegetal cortex of the oocyte. These RNAs include __Xdazl__ RNA, which is involved in primordial germ cell formation, and __VegT__ RNA, which specifies the mesoderm and endoderm. In order to de