Somatic polyploidy examined by flow cytometry in Daphnia

Flow cytometry was used to examine the patterns of somatic polyploidy and to determine the haploid genome sizes in Daphnia. The average proportions of polyploid nuclei among adult animals of D.pulex, D.longispina, D.pulex × D.longispina and D.magna equalled 27, 24, 24 and 24%, respectively. Both int...

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Published inJournal of plankton research Vol. 19; no. 12; pp. 2031 - 2040
Main Authors Korpelainen, Helena, Ketola, Matti, Hietala, Jaana
Format Journal Article
LanguageEnglish
Published Oxford Oxford University Press 01.12.1997
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Abstract Flow cytometry was used to examine the patterns of somatic polyploidy and to determine the haploid genome sizes in Daphnia. The average proportions of polyploid nuclei among adult animals of D.pulex, D.longispina, D.pulex × D.longispina and D.magna equalled 27, 24, 24 and 24%, respectively. Both interclonal and developmentally regulated variation were observed in the level of somatic polyploidy. Adult animals expressed more extensive polyploidy than did juveniles. The estimates of the haploid genome sizes (C values) of D.pulex, D.longispina, D.pulex × D.longispina and D.magna equalled 0.32, 0.27, 0.26 and 0.37 pg, respectively. These are the smallest genomes reported in crustaceans. Apparently, somatic polyploidy compensates for the loss of genetic material and gives rise to genetic plasticity which may contribute to the considerable level of phenotypic plasticity observed in Daphina.
AbstractList Flow cytometry was used to examine the patterns of somatic polyploidy and to determine the haploid genome sizes in Daphnia. The average proportions of polyploid nuclei among adult animals of D.pulex, D.longispina, D.pulex x D.longispina and D.magna equalled 27, 24, 24 and 24%, respectively. Both interclonal and developmentally regulated variation were observed in the level of somatic polyploidy. Adult animals expressed more extensive polyploidy than did juveniles. The estimates of the haploid genome sizes (C values) of D.pulex, D.longispina, D.pulex X D.longispina and D.magna equalled 0.32, 0.27, 0.26 and 0.37 pg, respectively. These are the smallest genomes reported in crustaceans. Apparently, somatic polyploidy compensates for the loss of genetic material and gives rise to genetic plasticity which may contribute to the considerable level of phenotypic plasticity observed in Daphnia.
Flow cytometry was used to examine the patterns of somatic polyploidy and to determine the haploid genome sizes in Daphnia. The average proportions of polyploid nuclei among adult animals of D.pulex, D.longispina, D.pulex × D.longispina and D.magna equalled 27, 24, 24 and 24%, respectively. Both interclonal and developmentally regulated variation were observed in the level of somatic polyploidy. Adult animals expressed more extensive polyploidy than did juveniles. The estimates of the haploid genome sizes (C values) of D.pulex, D.longispina, D.pulex × D.longispina and D.magna equalled 0.32, 0.27, 0.26 and 0.37 pg, respectively. These are the smallest genomes reported in crustaceans. Apparently, somatic polyploidy compensates for the loss of genetic material and gives rise to genetic plasticity which may contribute to the considerable level of phenotypic plasticity observed in Daphina.
Author Hietala, Jaana
Ketola, Matti
Korpelainen, Helena
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  surname: Hietala
  fullname: Hietala, Jaana
  organization: Department of Biology, Laboratory of Ecological Zoology FIN-20014 University of Turku Finland
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Issue 12
Keywords Crustacea
Flow cytometry
Polyploidy
Genetic variability
Investigation method
Arthropoda
Cladocera
Daphnia
Phenotypic plasticity
Invertebrata
Branchiopoda
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Snippet Flow cytometry was used to examine the patterns of somatic polyploidy and to determine the haploid genome sizes in Daphnia. The average proportions of...
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SubjectTerms Biological and medical sciences
Crustacea
Daphnia longispina
Daphnia magna
Daphnia pulex
Freshwater
Fundamental and applied biological sciences. Psychology
Invertebrates
Morphology. Histology. Cytology
Title Somatic polyploidy examined by flow cytometry in Daphnia
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