Уважаемые коллеги, доброго времени суток! Представляем вам британское научное издание BMC Genomics. Журнал имеет первый квартиль, издаётся в BioMed Central Ltd., находится в откртом доступе, его SJR за 2019 г. равен 1,629, пятилетний импакт-фактор - 4,093, печатный ISSN - 1471-2164, предметные области - Генетика, Биотехнологии. Вот так выглядит обложка:
Редактором является Клейр Мак Фадден, контактные данные - bmcgenomics@biomedcentral.com, ORSupport@springernature.com, s1267689@sms.ed.ac.uk
https://www.researchgate.net/profile/Clare-Mc-Fadden
Это рецензируемое издание открытого доступа, в котором рассматриваются статьи по всем аспектам геномного анализа, функциональной геномики и протеомики.
Пример статьи, название - Genome-wide miRNA analysis and integrated network for flavonoid biosynthesis in Osmanthus fragrans. Заголовок (Abstract) -
Background
Osmanthus fragrans is an important economical plant containing multiple secondary metabolites including flavonoids and anthocyanins. During the past years, the roles of miRNAs in regulating the biosynthesis of secondary metabolites in plants have been widely investigated. However, few studies on miRNA expression profiles and the potential roles in regulating flavonoid biosynthesis have been reported in O. fragrans.
Results
In this study, we used high-throughput sequencing technology to analyze the expression profiles of miRNAs in leaf and flower tissues of O. fragrans . As a result, 106 conserved miRNAs distributed in 47 families and 88 novel miRNAs were identified. Further analysis showed there were 133 miRNAs differentially expressed in leaves and flowers. Additionally, the potential target genes of miRNAs as well as the related metabolic pathways were predicted. In the end, flavonoid content was measured in flower and leaf tissues and potential role of miR858 in regulating flavonoid synthesis was illustrated in O. fragrans .
Conclusions
This study not only provided the genome-wide miRNA profiles in the flower and leaf tissue of O. fragrans , but also investigated the potential regulatory role of miR858a in flavonoid synthesis in O. fragrans . The results specifically indicated the connection of miRNAs to the regulation of secondary metabolite biosynthesis in non-model economical plant.
Keywords: Osmanthus fragrans; MicroRNAs; Deep sequencing; qRT-PCR; Target genes