Icelandic Birch Polyploids—The Case of a Perfect Fit in Genome Size

Author:

Anamthawat-Jónsson K.1,Thórsson Æ. Th.1,Temsch E. M.2,Greilhuber J.2

Affiliation:

1. Department of Life and Environmental Sciences, School of Engineering and Sciences, University of Iceland, Askja—Sturlugata 7, Reykjavik IS-101, Iceland

2. Department of Systematic and Evolutionary Botany, University of Vienna, Rennweg 14, 1030 Vienna, Austria

Abstract

Two birch species coexist in Iceland, dwarf birch Betula nana and tree birch B. pubescens. Both species are variable morphologically, which has been shown to be due to introgressive hybridization via interspecific hybrids. The aim of this study was to examine if the introgression could be related to genome size. We characterized 42 plants from Bifröst woodland morphologically and cytogenetically. The population consisted of diploid B. nana (38%), tetraploid B. pubescens (55%), and triploid hybrids (7%). Genome size was measured from 12 plants, using Feulgen DNA image densitometry (FDM) on spring leaf buds and flow cytometry (FCM) with dormant winter twigs. The use of winter twigs for FCM is novel. The average 1C-values for diploid, triploid, and tetraploid plants were 448, 666, and 882 Mbp, respectively. Monoploid genome sizes were found to be statistically constant among ploidy levels. This stability is in contrast to the different taxonomic positions of the di- and tetraploids and also contrasts with the frequent occurrence of genome downsizing in polyploids.

Publisher

Hindawi Limited

Subject

Plant Science

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1. Biodiversity Evolution of a Shrub Betula nana L. Populations in the Urals;International Journal of Forestry Research;2024-01

2. The use of ITS markers for identification of birch species from section Apterocaryon;Проблемы ботаники Южной Сибири и Монголии;2023-12-04

3. Genus <i>Betula</i> L.: Species-Specific Population-Genetic Features and Taxonomy Problems;Успехи современной биологии;2023-11-01

4. Betula pubescens (Downy birch);CABI Compendium;2022-01-07

5. The Evolutionary Dynamics of Repetitive DNA and Its Impact on the Genome Diversification in the Genus Sorghum;Frontiers in Plant Science;2021-08-12

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