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Abstract
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Jordan, an active Volvox transposable element similar to higher plant transposons.

S M Miller, R Schmitt, D L Kirk
S M Miller
Department of Biology, Washington University, St. Louis, Missouri 63130.
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R Schmitt
Department of Biology, Washington University, St. Louis, Missouri 63130.
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D L Kirk
Department of Biology, Washington University, St. Louis, Missouri 63130.
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Published September 1993. DOI: https://doi.org/10.1105/tpc.5.9.1125

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Abstract

We have isolated a 1595-bp transposable element from the multicellular green alga Volvox carteri following its insertion into the nitrate reductase (nitA) locus. This element, which we have named Jordan, has short (12-bp) terminal inverted repeats and creates a 3-bp target site duplication, like some higher plant transposons of the classic type. Contained within the first 200 bp of one end of the element are 55-bp inverted repeats, one of which begins with the terminal inverted repeat. Revertants of the transposon insertion into the nitA locus were obtained at a rate of approximately 10(-4) per Volvox embryo per generation. In each revertant examined, all transposon sequences were completely excised, but footprints containing both sets of duplicated bases, in addition to three to nine extra bases, were left behind. Jordan contains no significant open reading frames and so appears to be nonautonomous. DNA gel blot analysis indicates that Jordan is a member of a large family of homologous elements in the Volvox genome. We have isolated and characterized several of these homologs and found that they contain terminal very similar to those of Jordan. Efforts to utilize Jordan and its homologs as tools to tag and clone developmentally interesting genes of Volvox are discussed.

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Jordan, an active Volvox transposable element similar to higher plant transposons.
S M Miller, R Schmitt, D L Kirk
The Plant Cell Sep 1993, 5 (9) 1125-1138; DOI: 10.1105/tpc.5.9.1125

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Jordan, an active Volvox transposable element similar to higher plant transposons.
S M Miller, R Schmitt, D L Kirk
The Plant Cell Sep 1993, 5 (9) 1125-1138; DOI: 10.1105/tpc.5.9.1125
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Vol. 5, Issue 9
Sep 1993
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