Genetic factors affecting normal growth of testes inDrosophila hydei
Author:
Publisher
Springer Science and Business Media LLC
Subject
Developmental Biology,Genetics,Developmental Biology
Link
http://link.springer.com/content/pdf/10.1007/BF00848313.pdf
Reference39 articles.
1. Church RB, Robertson FW (1966a) A biochemical study of the growth ofDrosophila melanogaster. J Exp Zool 162:337?352
2. Church RB, Robertson FW (1966b) Biochemical analysis of genetic differences in the growth ofDrosophila. Genet Res Camb 7:383?407
3. Cooper KW (1950) Normal spermatogenesis inDrosophila. In: Demerec M (ed) Biology of Drosophila. Hafner, New York, pp 1?61
4. Franz G, Kunz W (1981) Intervening sequences in ribosomal RNA genes andbobbed phenotype inDrosophila hydei. Nature 292:638?640
5. Gl�tzer KH, Meyer GF (1981) Morphological aspects of the genetic activity in primary spermatocyte nuclei ofDrosophila hydei. Biol Cell 41:165?172
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1. Genetic basis of sperm and testis length differences and epistatic effect on hybrid inviability and sperm motility between Drosophila simulans and D-sechellia;HEREDITY;1997
2. Genetic basis of sperm and testis length differences and epistatic effect on hybrid inviability and sperm motility between Drosophila simulans and D. sechellia;Heredity;1997-04
3. The Drosophila micropia retrotransposon encodes a testis-specific antisense RNA complementary to reverse transcriptase.;Molecular and Cellular Biology;1994-03
4. The Drosophila micropia retrotransposon encodes a testis-specific antisense RNA complementary to reverse transcriptase;Molecular and Cellular Biology;1994-03
5. A group of non-Y encoded Drosophila hydei primary spermatocyte nuclear glycoproteins exhibits epitopes depending on formation of Y chromosomal giant lampbrush loops;Chromosoma;1989-08
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