*恭喜浙江省农业科学院俞老师在SCI期刊 Environmental Science and Pollution Research(IF:2.914)上成功发表
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*恭喜复旦大学辛博士在SCI期刊 FEBS LETTERS(IF2.675)上成功发表
*恭喜中南大学陈博士在THIN-WALLED STRUCTURESSCI期刊(IF3.488)上成功发表
*恭喜湖南工学院郭老师在SCI期刊SIMULATION MODELLING PRACTICE AND THEORY(IF2.42)上成功发表
*恭喜东华大学闫老师在SCI期刊Advanced Functional Materials(IF 15.621)上成功发表
*恭喜安徽医科大学肖老师在SCI期刊BMC CELL BIOLOGY(IF 3.485)上成功发表
*恭喜四川大学华西医院谢医生在SCI期刊European Heart Journal: Acute Cardiovascular Care(IF 3.734)上成功发表

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2021年最新SCI期刊影响因子查询系统

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CONSERVATION GENETICS 期刊详细信息

基本信息
期刊名称 CONSERVATION GENETICS
CONSERVATION GENETICS
期刊ISSN 1566-0621
期刊官方网站 http://www.springer.com/life+sciences/ecology/journal/10592?changeHeader
是否OA
出版商 Springer Netherlands
出版周期 Quarterly
始发年份 2000
年文章数 116
最新影响因子 3.092(2021)
中科院SCI期刊分区
大类学科 小类学科 Top 综述
环境科学与生态学4区 BIODIVERSITY CONSERVATION 生物多样性保护3区
GENETICS & HEREDITY 遗传学4区
CiteScore
CiteScore排名 CiteScore SJR SNIP
学科 排名 百分位 2.15 0.912 0.894
Agricultural and Biological Sciences
Ecology, Evolution, Behavior and Systematics
160 / 591 72%
Biochemistry, Genetics and Molecular Biology
Genetics
171 / 318 46%
补充信息
自引率 6.10%
H-index 61
SCI收录状况 Science Citation Index Expanded
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网友分享审稿时间 数据统计中,敬请期待。
PubMed Central (PML) http://www.ncbi.nlm.nih.gov/nlmcatalog?term=1566-0621%5BISSN%5D
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期刊投稿网址 http://www.editorialmanager.com/coge/
收稿范围
Conservation Genetics promotes the conservation of genetic diversity by providing a forum where data and ideas can be presented, facilitating the further development of this field of study. Contributions come from researchers in a variety of fields including population genetics, molecular ecology and biology, evolutionary biology, and systematics, to name just a few. Conservation issues are multifaceted and incorporate diverse disciplines. This journal will focus on genetic and evolutionary applications to the problems of conservation, while reflecting the diversity of concerns that are relevant to conservation biology. Papers are accepted in the following categories: original research, short communications, review papers and perspectives. Topics may include, but are not restricted to:
The taxonomic identification and phylogenetic classification of species and populations, and measures of phylogenetic diversity and uniqueness.
The identification of hybrid species, hybridization in native populations, and assessing the history and extent of introgression between species.
Population genetic structure of natural and managed populations including the identification of `evolutionary significant units' and `management units' for conservation, and integration with studies in large-scale ecology (e.g. using GIS and related technologies).
The assessment of levels of genetic variation within a species or population, including small or endangered populations, and the estimation of measures such as effective population size (e.g. through the application of coalescence models to estimate demographic variables).
Studies on the impact of inbreeding and outbreeding depression, and on the relationship between heterozygosity and measures of fitness.
Assessments of mate choice and reproductive strategy (e.g. when the natural pattern of behaviour is thought to have been disrupted).
Forensic applications, especially for the control of trade in endangered species.
Practical methods for maximising genetic diversity during captive breeding programs and re-introduction schemes, including mathematical models and case studies.
Conservation issues related to the introduction of GM plants and animals.
The direct interaction between environmental contaminants and the biology and health of an organism. This could include studies on the effect of anthropogenic factors on mutation rates, evolutionary adaptation to local changes in the environment (such as industrial melanism), and studies on specific genetic systems that are affected by changes in the environment (such as evidence for the immunosuppressive effects of some contaminants, or an impact on the frequency of specific MHC haplotypes).
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