Results 31 to 40 of about 31,045 (243)

The complete chloroplast genome of Potentilla centigrana Maxim. (Rosaceae)

open access: yesMitochondrial DNA. Part B. Resources, 2019
Potentilla centigrana Maxim. is one of species in core Potentilla group. To clarify phylogenetic position of P. centigrana, we sequenced the complete chloroplast genome which is 156,392 bp long and has four subregions: 85,479 bp of large single copy (LSC)
Jongsun Park   +3 more
doaj   +1 more source

Заметки о лапчатках (Potentilla, Rosaceae) Алтая. 8. Новый вид с дизъюнктивным ареалом для флоры Казахстана

open access: yesTurczaninowia, 2021
Впервые для флоры Казахстана и Алтайской горной страны приводится Potentilla laciniosa с указанием конкретного местонахождения. После большой дизъюнкции ареала вид был обнаружен в горах Кызылбельтау Урджарского района на юго-западной части хребта ...
Алексей Анатольевич Кечайкин   +3 more
doaj   +1 more source

Potentilla asterotricha (Rosaceae) is a mysterious narrowly local endemic of China from Gansu province

open access: yesActa Biologica Sibirica
This study provides new data on Potentilla asterotricha, a species endemic to China. The species was described in Gansu province without specific information on locations, collectors, or date of collection. It is not given in “Flora of China”. Additional
Alexey Kechaykin   +2 more
doaj   +1 more source

The complete chloroplast genome of Potentilla Freyniana Bornm. (Rosaceae)

open access: yesMitochondrial DNA. Part B. Resources, 2019
Potentilla freyniana Bornm. has radical leaves with petioles and trifoliolate distinguished from Potentilla fragarioides and Duchesnea indica. In this study, we presented first complete chloroplast genome of P.
Jongsun Park   +3 more
doaj   +1 more source

Additions to the flora of Crimean Peninsula

open access: yesTurczaninowia, 2018
For the first time for the flora of the Crimean Peninsula, Cystopteris alpina and Dryopteris expansa, as well as specific locations of Duchesnea indica and Potentilla thuringiaca are indicated. New habitat points are given for Potentilla pindicola. After
A.A. Kechaykin   +4 more
doaj   +1 more source

Characterization and phylogenetic relationship of the complete chloroplast genome of a Chinese traditional medicinal plant Potentilla anserina L

open access: yesMitochondrial DNA. Part B. Resources, 2022
Potentilla anserina L. is an important traditional Chinese medicinal herb and edible plant with a long usage history. As an indispensable sustainable resource, it has various pharmacological functions and active ingredients.
Chuyu Tang   +5 more
doaj   +1 more source

Antioxidant Capacity of Potentilla paradoxa Nutt. and Its Beneficial Effects Related to Anti-Aging in HaCaT and B16F10 Cells

open access: yesPlants, 2022
Skin aging is a natural process influenced by intrinsic and extrinsic factors, and many skin anti-aging strategies have been developed. Plants from the genus Potentilla has been used in Europe and Asia to treat various diseases. Potentilla paradoxa Nutt.
Hwa Pyoung Lee   +8 more
doaj   +1 more source

The complete chloroplast genome of Potentilla stolonifera var. quelpaertensis Nakai

open access: yesMitochondrial DNA. Part B. Resources, 2019
Potentilla stolonifera var. quelpaertensis Nakai has developed stolon in comparison to Potentilla fragarioides var. major. To uncover phylogenetic relations of two species, we presented complete chloroplast genome of P. stolonifera var.
Kyeong-In Heo   +3 more
doaj   +1 more source

Новые находки сосудистых растений на Западном Алтае

open access: yesTurczaninowia, 2021
В статье представлены новые данные о распространении на территории Западного Алтая 20 видов сосудистых растений из семействAsteraceae, Betulaceae, Boraginaceae, Crassulaceae, Huperziaceae, Grossulariaceae, Lamiaceae, Onagraceae, Orchidaceae, Papaveraceae,
Сергей Владимирович Смирнов   +4 more
doaj   +1 more source

Continual decision‐making dynamics across biological organisms

open access: yesBiological Reviews, EarlyView.
ABSTRACT Decision‐making is a central function of adaptive behaviour in biological agents. However, strategies for adaptive decision‐making can vary substantially across species. Here, we aim to extend the comparative scope of decision‐making analyses to phylogenetically diverse organisms.
Liberty Severs, Qiuran Wang
wiley   +1 more source

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