Two-way migration of Lychnis wilfordii caused by the circular landform of Japan-Korea-northeast China-Russian Far East region and its suggestion for conservation in northeast Asia

Двунаправленная миграция Lychnis wilfordii, обусловленная кольцеобразным расположением суши в регионе Япония–Корея–Северо-Восточный Китай–Дальний Восток России, и ее значение для охраны природы в Северо-Восточной Азии
Saya Tamura, Myounghai Kwak, Goro Kokubugata, Chan‐Ho Park, Byoung‐Yoon Lee, Tomoko Fukuda, Ekaterina A. Petrunenko, И. М. Кокшеева, Elena A. Pimenova, Pavel V. Krestov, Svetlana Bondarchuk, Jinshuang Ma, Hai-Cheng Zhou, Hayato Tsuboi, Yoko Nishikawa, Takashi Shimamura, Hiroko Fujita, Koh Nakamura
2019-11-27

Lychnis wilfordiiQuaternary migrationevolutionarily significant unitsmolecular datingpopulation genetic structure
ABSTRACT In northeast Asia, substantial portion of the floras, including endangered species, are shared among its component countries in the continental, peninsula, and island parts largely through Quaternary migration. To effectively conserve nationally endangered plants in Northeast Asia, transnational conservation studies are vitally needed. Lychnis wilfordii (Caryophyllaceae) has disjunct distribution in Russian Far East (Primorsky Krai), northeast China (Jilin), Korea (Gangwon-do) and Japan (Hokkaido, Aomori, Nagano), surrounding the sea, and this is designated as an endangered species in Japan and Korea. Population genetic and molecular dating analyses were conducted 1) to elucidate geographic genetic structure covering the species range, 2) to test possible scenarios of migration, and 3) to develop logical plans for effective conservation. Population genetic analyses indicated the continent and peninsula parts (north and south Primorsky Krai, Jilin, and Gangwon-do) had higher genetic diversity compared to those in the Japanese Archipelago (Hokkaido and Nagano). Five genetically distinct groups were recognized, namely, Nagano, Gangwon-do, Jilin, north and south Primorsky Krai plus Aomori, and Hokkaido. Genetic distance between Hokkaido and Nagano was larger than between Hokkaido and north Primorsky Krai, and between Nagano and Gangwon-do, crossing national borders and the natural barrier of the sea. Considering these results, L. wilfordii likely migrated from the Asian continent to the Japanese Archipelago using two routes: north route from Russian Far East to Hokkaido and Aomori, and south route from the Korean Peninsula to Nagano. Based on molecular dating, migration from the continent to the islands likely occurred from the middle Pleistocene to the Holocene. For effective conservation of L. wilfordii , Hokkaido and Nagano populations should be distinguished as different evolutionary significant units, although these two regions belong to the same country, because Hokkaido and Nagano populations are at the different ends of the two migratory routes based on the migration scenario.
1
Continental and Korean populations showed higher genetic diversity than Japanese Archipelago populations, and five genetically distinct groups were identified.
2
Genetic-distance patterns support two migration routes to Japan: a northern route from the Russian Far East to Hokkaido and Aomori, and a southern route from Korea to Nagano.
3
Hokkaido and Nagano populations should be conserved as separate evolutionary significant units despite belonging to the same country, requiring transnational conservation planning.
4
Lychnis wilfordii exhibits a disjunct distribution across the Russian Far East, northeast China, Korea, and Japan, with populations sharing a Quaternary migration history.
5
Molecular dating indicates that continental-to-island migration likely occurred from the middle Pleistocene through the Holocene.

Lychnis wilfordii populations across the Russian Far East, northeast China, Korea, and the Japanese Archipelago

Geographic genetic structure, Quaternary migration routes and evolutionary conservation units of Lychnis wilfordii

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2019-11-27
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Saya Tamura
Myounghai Kwak
Goro Kokubugata
Chan‐Ho Park
Byoung‐Yoon Lee
Tomoko Fukuda
Ekaterina A. Petrunenko
И. М. Кокшеева
Elena A. Pimenova
Pavel V. Krestov
Svetlana Bondarchuk
Jinshuang Ma
Hai-Cheng Zhou
Hayato Tsuboi
Yoko Nishikawa
Takashi Shimamura
Hiroko Fujita
Koh Nakamura
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