Species determination and phylogenetic relationships of the genus Betula inferred from multiple chloroplast and nuclear regions reveal the high methyl salicylate-producing ability of the ancestor

Author:

Singewar Kiran,Moschner Christian R.,Hartung Eberhard,Fladung MatthiasORCID

Abstract

Abstract Key message The investigation provides initial knowledge on the distribution and evolution of the high and low methyl salicylate-producing trait in the Betula genus. Mislabelled birch species could be identified and removed. Abstract The genus Betula is the largest group of ecologically and economically dominant perennial woody plants in subalpine forests. The taxonomy of Betula is complex due to an extensive history of hybridization and periodic introgression events among the species. Although almost all land plants including birches produce methyl salicylate (MeSA) as a signaling molecule and in response to stress (“low MeSA producer”), some birch species produce high amounts of MeSA in the leaves and bark (“high MeSA producer”). Unfortunately, the evolution of high levels of MeSA production in the genus Betula remains unclear. The salicylic acid-binding protein 2 (SABP2) and salicylic acid methyltransferase (SAMT) genes involved in MeSA biosynthesis were incorporated into this study to examine the interspecific relationship of high and low MeSA-producing birches. Additionally, eight chloroplast and three nuclear regions were included to evaluate their potential application in species determination. The analysis resulted in 25 and 61 nucleotide variations, respectively, which allowed for a visualization of the genetic architecture in the 18 Betula species investigated. The high MeSA-producing B. lenta, B. grossa, and B. alleghaniensis formed the basal clade in the phylogenetic analysis, thus revealing their ancestral status, and the network analysis postulates that the diploid B. lenta is one of the ancestors of the genus Betula. The results indicate that the ability to produce high levels of MeSA that were initially present in the genus has been lost several times during its evolution. Placing species of the subgenus Acuminata alongside the subgenus Betula, together with a fragrance analysis, questions their ability to produce high levels of MeSA.

Funder

Energiewende und Umweltinnovationen: state program for economy; the Ministry of Energy Transition, Agriculture, Environment and Rural Areas of Schleswig-Holstein, Germany

Publisher

Springer Science and Business Media LLC

Subject

Plant Science,Ecology,Physiology,Forestry

Reference67 articles.

1. Angmo K, Adhikari BS, Rawat GS (2012) Changing aspects of traditional healthcare system in western Ladakh, India. J Ethnopharmacol. https://doi.org/10.1016/j.jep.2012.07.017

2. Ashburner K, McAllister HA (2013) The genus Betula: a taxonomic revision of birches. Kew Publishing, London

3. Bandelt HJ, Peter F, Arne R (1999) Median-joining networks for inferring intraspecific phylogenies. Mol Biol Evol. https://doi.org/10.1093/oxfordjournals.molbev.a026036

4. Baser KHC, Demirci B (2007) Studies on Betula essential oils. ARKIVOC. https://doi.org/10.3998/ark.5550190.0008.730

5. Baum D (2008) Trait evolution on a phylogenetic tree: relatedness, similarity, and the myth of evolutionary advancement; Nature Education. https://www.nature.com/scitable/topicpage/trait-evolution-on-a-phylogenetic-tree-relatedness-41936/. Accessed 15 Jun 2019

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