Chromosome banding in the genus Pinus V. Fluorescent banding patterns in 16 diploxylon pines
Author:
Affiliation:
1. Faculty of Education, Ehime University, Matsuyama, Ehime 790-8577, Japan
2. Research Institute of Evolutionary Biology, Setagaya, Tokyo 158-0098, Japan
Publisher
International Society of Chromosome Botany
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/iscb/11/4/11_77/_pdf
Reference53 articles.
1. Bautista, R., Villalobos, D. P., Díaz-Moreno, S., Cantón, F. R., Cánovas, F. M. and Claros, M. G. 2007. Toward a Pinus pinaster bacterial artificial chromosome library. Ann. For. Sci. 64: 855-864.
2. Borzan, Z. and Papeš, D. 1978. Borzan, Z. and Papeš, D. 1978. Karyotype analysis in Pinus: A contribution to the standardization of the karyotype analysis and review of some applied techniques. Silvae Genet. 27: 144-150.. Silvae Genet. 27: 144-150.
3. Bogunić, F., Muratovic, E., and Siljak-Yakovlev, S. 2006. Chromosomal differentiation between Pinus heldreichii and Pinus nigra. Annals Forest Sci. 63(3): 267-274.
4. Bogunić, F., Siljak-Yakovlev, S., Muratović, E. and Ballian, D. 2011a. Different karyotype patterns among allopatric Pinus nigra (Pinaceae) populations revealed by molecular cytogenetics. Plant Biol. 13: 194-200.
5. Bogunić, F., Siljak-Yakovlev, S., Muratović, E., Pustahija, F. and Medjedović, S. 2011b. Molecular cytogenetics and flow cytometry reveal conserved genome organization in Pinus mugo and P. uncinata. Ann. For. Sci. 68: 179-187.
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