Intense proliferation of rDNA sites and heterochromatic bands in two distantly related Cuscuta species (Convolvulaceae) with very large genomes and symmetric karyotypes
Author:
Affiliation:
1. Universidade Federal de Pernambuco, Brazil
2. University of Toronto Mississauga, Canada; Royal Botanic Gardens Kew, United Kingdom
3. Wilfrid Laurier University, Canada
4. University of Toronto Mississauga, Canada
Publisher
FapUNIFESP (SciELO)
Subject
Genetics,Molecular Biology
Link
http://www.scielo.br/pdf/gmb/v43n3/1415-4757-GMB-43-3-e20190068.pdf
Reference60 articles.
1. Does the chromosomal position of 35S rDNA sites influence their transcription? A survey on Nothoscordum species (Amaryllidaceae);Báez M;Genet Mol Biol,2020
2. The ITS region of nuclear ribosomal DNA: a valuable source of evidence on angiosperm phylogeny;Baldwin BG;Ann Mo Bot Gard,1995
3. The meaning of DAPI bands observed after C-banding and FISH procedures;Barros e Silva A;Biotech Histochem,2010
4. Nuclear DNA amounts in angiosperms: targets, trends and tomorrow;Bennett MD;Ann Bot,2011
5. The 5S rDNA in two Abracris grasshoppers (Ommatolampidinae: Acrididae): molecular and chromosomal organization;Bueno D;Mol Genet Genomics,2016
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2. Chromosome number, genome size and heterochromatin evolution in diploid species of Ipomoea and related genera (Convolvulaceae: Convolvuloideae);Acta Botanica Brasilica;2023
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