Genetic Structure, Differentiation and Originality of Pinus sylvestris L. Populations in the East of the East European Plain

被引:11
作者
Vasilyeva, Yulia [1 ]
Chertov, Nikita [1 ]
Nechaeva, Yulia [1 ]
Sboeva, Yana [1 ]
Pystogova, Nina [1 ]
Boronnikova, Svetlana [1 ]
Kalendar, Ruslan [2 ,3 ]
机构
[1] Perm State Univ, Fac Biol, Perm 614990, Russia
[2] Univ Helsinki, Helsinki Inst Life Sci HiLIFE, Bioctr 3,Viikinkaari 1, FI-00014 Helsinki, Finland
[3] Nazarbayev Univ, Natl Lab Astana, Nur Sultan 010000, Kazakhstan
关键词
Inter Simple Sequence Repeats (ISSR); genetic diversity; genetic structure; genetic originality coefficient; Pinus sylvestris L; PLEISTOCENE REFUGIA; ABIETIC ACID; DNA; DIVERSITY; PHYLOGEOGRAPHY; HISTORY; NUCLEAR; SYSTEM; REMAP; IRAP;
D O I
10.3390/f12080999
中图分类号
S7 [林业];
学科分类号
0829 ; 0907 ;
摘要
In order to carry out activities aimed at conservation and rational use of forest resources; it is necessary to study the main forest-forming plant species in detail. Scots pine (Pinus sylvestris L., Pinaceae) is mainly found in the boreal forests of Eurasia and is not so often encountered in the east of the East European Plain. The aim of the study was to study the genetic diversity, structure and differentiation of Scots pine populations in the east of the East European Plain. We studied ten populations of P. sylvestris using the Inter Simple Sequence Repeats (ISSR)-based DNA polymorphism detection method. Natural populations are demonstrated by relatively high rates of genetic diversity (He = 0.167; n(e) = 1.279; I = 0.253). At the same time, there is a tendency for a decrease in the genetic diversity of the studied populations of P. sylvestris from west to east. Analysis of the genetic structure shows that the studied populations are highly differentiated (G(ST) = 0.439), the intrapopulation component accounts for about 56% of the genetic diversity. Using various algorithms for determining the spatial genetic structure, it is found that the studied populations form two groups of populations in accordance with geographic location. With the help of a genetic originality coefficient, populations with specific and typical gene pools are identified. They are recommended as sources of genetic diversity and reserves for the conservation of genetic resources of the species.
引用
收藏
页数:11
相关论文
共 50 条
[31]   Genetic diversity and structure in the northern populations of European hazelnut (Corylus avellana L.) [J].
Tanhuanpaa, Pirjo ;
Heinonen, Maarit ;
Bitz, Lidija ;
Rokka, Veli-Matti .
GENOME, 2019, 62 (08) :537-548
[32]   Evaluation of genetic diversity of Portuguese Pinus sylvestris L. populations based on molecular data and inferences about the future use of this germplasm [J].
Cipriano, J. ;
Carvalho, A. ;
Fernandes, C. ;
Gaspar, M. J. ;
Pires, J. ;
Bento, J. ;
Roxo, L. ;
Louzada, J. ;
Lima-Brito, J. .
JOURNAL OF GENETICS, 2016, 93 :E41-E48
[33]   Spatial Genetic Structure Within Two Contrasting Stands of Scots Pine (Pinus sylvestris L.) [J].
Chybicki, I. J. ;
Dzialuk, A. ;
Trojankiewicz, M. ;
Slawski, M. ;
Burczyk, J. .
SILVAE GENETICA, 2008, 57 (4-5) :193-202
[34]   Genetic Diversity of Isolated Populations of Indonesian Landraces of Rice (Oryza sativa L.) Collected in East Kalimantan on the Island of Borneo [J].
Thomson, Michael J. ;
Polato, Nicholas R. ;
Prasetiyono, Joko ;
Trijatmiko, Kurniawan R. ;
Silitonga, Tiur S. ;
McCouch, Susan R. .
RICE, 2009, 2 (01) :80-92
[35]   Molecular genetic diversity and differentiation of Nile tilapia (Oreochromis niloticus, L. 1758) in East African natural and stocked populations [J].
Tibihika, Papius Dias ;
Curto, Manuel ;
Alemayehu, Esayas ;
Waidbacher, Herwig ;
Masembe, Charles ;
Akoll, Peter ;
Meimberg, Harald .
BMC EVOLUTIONARY BIOLOGY, 2020, 20 (01)
[36]   Molecular genetic diversity and differentiation of Nile tilapia (Oreochromis niloticus, L. 1758) in East African natural and stocked populations [J].
Papius Dias Tibihika ;
Manuel Curto ;
Esayas Alemayehu ;
Herwig Waidbacher ;
Charles Masembe ;
Peter Akoll ;
Harald Meimberg .
BMC Evolutionary Biology, 20
[37]   Preliminary evidence of two potentialy native populations of Pinus sylvestris L. in Portugal based on nuclear and chloroplast SSR markers [J].
Pavia, Ivo ;
Mengl, Michael ;
Gaspar, Maria Joao ;
Carvalho, Ana ;
Heinze, Berthold ;
Lima-Brito, Jose .
AUSTRIAN JOURNAL OF FOREST SCIENCE, 2014, 131 (01) :1-22
[38]   Individual-tree growth and mortality models for Scots pine (Pinus sylvestris L.) in north-east Spain [J].
Palahí, M ;
Pukkala, T ;
Miina, J ;
Montero, G .
ANNALS OF FOREST SCIENCE, 2003, 60 (01) :1-10
[39]   New Insight into Genetic Structure and Diversity of Scots Pine (Pinus sylvestris L.) Populations in Lithuania Based on Nuclear, Chloroplast and Mitochondrial DNA Markers [J].
Kavaliauskas, Darius ;
Danusevicius, Darius ;
Baliuckas, Virgilijus .
FORESTS, 2022, 13 (08)
[40]   Genetic structure of wild boar (Sus scrofa) populations from East Asia based on microsatellite loci analyses [J].
Choi, Sung Kyoung ;
Lee, Ji-Eun ;
Kim, Young-Jun ;
Min, Mi-Sook ;
Voloshina, Inna ;
Myslenkov, Alexander ;
Oh, Jang Geun ;
Kim, Tae-Hun ;
Markov, Nickolay ;
Seryodkin, Ivan ;
Ishiguro, Naotaka ;
Yu, Li ;
Zhang, Ya-Ping ;
Lee, Hang ;
Kim, Kyung Seok .
BMC GENETICS, 2014, 15