

FOLLOWUS
1.CAS Key Laboratory of Marine Ecology and Environmental Sciences, Institute of Oceanology, Chinese Academy of Sciences, Qingdao 266071, China
2.Laboratory for Marine Ecology and Environmental Sciences, Pilot National Laboratory for Marine Science and Technology (Qingdao), Qingdao 266237, China
3.Center of Ocean Mega-Science, Chinese Academy of Sciences, Qingdao 266071, China
4.University of Chinese Academy of Sciences, Beijing 100049, China
Rencheng YU, E-mail: rcyu@qdio.ac.cn
收稿:2019-11-18,
录用:2020-1-23,
网络首发:2020-03-02,
纸质出版:2021-02
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Development of high-resolution chloroplast markers for intraspecific phylogeographic studies of
Qingchun ZHANG, Zhuang NIU, Jinxiu WANG, et al. Development of high-resolution chloroplast markers for intraspecific phylogeographic studies of
Development of high-resolution chloroplast markers for intraspecific phylogeographic studies of
Qingchun ZHANG, Zhuang NIU, Jinxiu WANG, et al. Development of high-resolution chloroplast markers for intraspecific phylogeographic studies of
Phaeocystis globosa
is an important harmful algal bloom causative species distributing widely in temperate and tropical coastal waters in the world. The morphological
physiological
and biochemical characteristics are different among geographic strains
which can not be distinguished with nuclear ribosomal DNA markers at present. Therefore
the genetic distance and phylogeographic relationships of nuclear 28S rDNA D1-D2 and ITS regions
and three chloroplast intergenic spacers (
pet
N-t
rn
S1
trn
M1-
psb
A
and
rbc
S-
rpl
27) were analyzed and compared among 13 strains of
P. globosa
isolated from the Pacific Ocean and Atlantic Ocean in this study. In addition
the nucleotide polymorphisms of 28S rDNA D1-D2
ITS
and
rbc
S-
rpl
27 regions were evaluated in two
P. globosa
strains. The various levels of nucleotide polymorphism were in the nuclear 28S rDNA D1-D2 region and ITS region
but no polymorphism was in the chloroplast
rbc
S-
rpl
27 intergenic spacer. A reasonable intraspecific phylogeographic relationship was presented by
rbc
S-
rpl
27 intergenic spacer
which had the strongest distinction to geographic strains compared to those of 28S rDNA D1-D2 and ITS regions. In the phylogenetic tree of
rbc
S-
rpl
27 intergenic spacer
the two strains from the North Sea of the Atlantic Ocean were divided firstly from the species of
P. globosa
and then formed an independent clade
while the other Atlantic strains and all of Pacific strains joined up to build the other clade. It was implied that at least two genetically distant populations of
P. globosa
existed in the Atlantic coastal regions. This study provided a high-resolution chloroplast marker to analyze intraspecific phylogeographic populations of
P. globosa
and preliminarily clarified the genetic relationships of the Pacific and Atlantic strains of
P. globosa
.
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