Pradeep Kumar Divakar Indian botanist, lichenologist, evolutionary biologist and taxnomist
Divakar, Pradeep K.
Divakar, P.K
VIAF ID: 311300577 (Personal)
Permalink: http://viaf.org/viaf/311300577
Preferred Forms
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- 100 1 _ ‡a Divakar, Pradeep K
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- 100 0 _ ‡a Pradeep Kumar Divakar ‡c Indian botanist, lichenologist, evolutionary biologist and taxnomist
4xx's: Alternate Name Forms (9)
Works
Title | Sources |
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Biodiversity Patterns and Ecological Preferences of the Photobionts Associated With the Lichen-Forming Genus <i>Parmelia</i> | |
The cetrarioid core group revisited (Lecanorales: Parmeliaceae) | |
Characterization of fungus-specific microsatellite markers in the lichen-forming fungus Parmelina carporrhizans (Parmeliaceae). | |
Circumscription of the genus Lepra, a recently resurrected genus to accommodate the "Variolaria"-group of Pertusaria sensu lato (Pertusariales, Ascomycota) | |
Coalescent-based species delimitation approach uncovers high cryptic diversity in the cosmopolitan lichen-forming fungal genus Protoparmelia (Lecanorales, Ascomycota) | |
Considerations and consequences of allowing DNA sequence data as types of fungal taxa | |
Conundrums in species concepts: the discovery of a new cryptic species segregated from Parmelina tiliacea (Ascomycota: Parmeliaceae) | |
Dibenzofurans from Lichens – A Pharmacological Overview | |
Diversification of the newly recognized lichen-forming fungal lineage Montanelia (Parmeliaceae, Ascomycota) and its relation to key geological and climatic events | |
Diversity and composition of plants species along elevational gradient: research trends | |
DNA barcode identification of lichen-forming fungal species in the Rhizoplaca melanophthalma species-complex (Lecanorales, Lecanoraceae), including five new species | |
DNA barcoding of brown Parmeliae (Parmeliaceae) species: a molecular approach for accurate specimen identification, emphasizing species in Greenland | |
DNA-Based Authentication and Metabolomics Analysis of Medicinal Plants Samples by DNA Barcoding and Ultra-High-Performance Liquid Chromatography/Triple Quadrupole Mass Spectrometry (UHPLC-MS) | |
Environment and host identity structure communities of green algal symbionts in lichens. | |
Eva Barreno Rodríguez at 70: the person and the professional | |
Evaluation of the Antioxidant Capacities and Cytotoxic Effects of Ten Parmeliaceae Lichen Species | |
Evolution of complex symbiotic relationships in a morphologically derived family of lichen-forming fungi | |
A Festschrift for David L. Hawksworth. | |
Finding needles in haystacks: linking scientific names, reference specimens and molecular data for Fungi | |
Fungal-algal association patterns in lichen symbiosis linked to macroclimate. | |
Fungal Taxa Responsible for Mucormycosis/“Black Fungus” among COVID-19 Patients in India | |
Genetic distances within and among species in monophyletic lineages of Parmeliaceae (Ascomycota) as a tool for taxon delimitation | |
Genome-Wide Analysis of Biosynthetic Gene Cluster Reveals Correlated Gene Loss with Absence of Usnic Acid in Lichen-Forming Fungi | |
The Genus s. str.-A Review of Its Botany, Phytochemistry, Traditional Uses and Pharmacology | |
Hypotrachyna penduliloba and Remototrachyna pandani, two new species in the hyperdiverse lichen family Parmeliaceae from Réunion in the Mascarene Archipelago | |
IMA Genome - F13: Draft genome sequences of Ambrosiella cleistominuta, Cercospora brassicicola, C. citrullina, Physcia stellaris, and Teratosphaeria pseudoeucalypti | |
In vitro neuroprotective potential of lichen metabolite fumarprotocetraric acid via intracellular redox modulation | |
Insights into intrathalline genetic diversity of the cosmopolitan lichen symbiotic green alga Trebouxia decolorans Ahmadjian using microsatellite markers | |
Lichen Depsides and Tridepsides: Progress in Pharmacological Approaches | |
Lichen Depsidones with Biological Interest | |
Lichen Extracts from Cetrarioid Clade Provide Neuroprotection against Hydrogen Peroxide-Induced Oxidative Stress | |
lichen genus parmotrema in South Korea | |
Metabolomic Profiling, Antioxidant and Enzyme Inhibition Properties and Molecular Docking Analysis of Antarctic Lichens | |
Metagenomic data reveal diverse fungal and algal communities associated with the lichen symbiosis | |
Modulation of Cellular Circadian Rhythms by Secondary Metabolites of Lichens | |
Molecular data show thatHypotrachyna sorocheila | |
Molecular phylogenetic studies reveal an undescribed species within the North American concept of Melanelixia glabra (Parmeliaceae) | |
Molecular studies on Punctelia species of the Iberian Peninsula, with an emphasis on specimens newly colonizing Madrid | |
The monotypic genusBulborrhizinabelongs toBulbothrixsensu lato (Parmeliaceae, Ascomycota) | |
Neoprotoparmelia gen. nov. and Maronina (Lecanorales, Protoparmelioideae): species description and generic delimitation using DNA barcodes and phenotypical characters | |
Neuroprotective activity and cytotoxic potential of two Parmeliaceae lichens: Identification of active compounds. | |
A New Cryptic Lineage in Parmeliaceae (Ascomycota) with Pharmacological Properties | |
New primers for promising single-copy genes in fungal phylogenetics and systematics. | |
New records of lichen-forming fungi from Fiji | |
A new species of lichen genus Syncesia (Roccellaceae) from India | |
Non-developing ascospores in apothecia of asexually reproducing lichen-forming fungi | |
Notes on some new records and new species of cetrarioid lichens from India | |
Notoparmelia, a new genus of Parmeliaceae (Ascomycota) based on overlooked reproductive anatomical features, phylogeny and distribution pattern | |
Outline of Fungi and fungus-like taxa | |
Panmixia and dispersal from the Mediterranean Basin to Macaronesian Islands of a macrolichen species. | |
Parmelia barrenoae, a new lichen species related to Parmelia sulcata (Parmeliaceae) based on molecular and morphological data | |
Parmelioid lichens in India [...] | |
Patterns of group I intron presence in nuclear SSU rDNA of the Lichen family Parmeliaceae. | |
Protective effects of lichen metabolites evernic and usnic acids against redox impairment-mediated cytotoxicity in central nervous system-like cells | |
Recent advances in lichenology : modern methods and approaches in biomonitoring and bioprospection. | |
Reference-Based Restriction-Site-Associated DNA Sequencing Data Are Useful for Species Delineation in a Recently Diverged Asexually Reproducing Species Complex (Parmeliaceae, Ascomycota) | |
Remototrachyna, a newly recognized tropical lineage of lichens in the Hypotrachyna clade (Parmeliaceae, Ascomycota), originated in the Indian subcontinent | |
Resolving the phylogenetic relationship between Parmotrema crinitum and Parmotrema perlatum populations | |
A revision of species of the Parmelia saxatilis complex in the Iberian Peninsula with the description of P. rojoi, a new potentially relict species | |
Sprucing up one's impact factor | |
A Tale of Two Hyper-diversities: Diversification dynamics of the two largest families of lichenized fungi | |
A temporal banding approach for consistent taxonomic ranking above the species level. | |
The Temporal Variation of Secondary Metabolites in the Mycobiont Culture and Thallus of Parmelina carporrhizans and Parmelina quercina Analyzed using High-Performance Liquid Chromatography | |
Testing morphology-based hypotheses of phylogenetic relationships in Parmeliaceae (Ascomycota) using three ribosomal markers and the nuclear RPB1 gene | |
Testing the use of ITS rDNA and protein-coding genes in the generic and species delimitation of the lichen genus Usnea (Parmeliaceae, Ascomycota) | |
Towards a revised generic classification of lecanoroid lichens (Lecanoraceae, Ascomycota) based on molecular, morphological and chemical evidence | |
Upper cortex anatomy corroborates phylogenetic hypothesis in species of Physconia (Ascomycota, Lecanoromycetes). | |
Using genetic distances in addition to ITS molecular phylogeny to identify potential species in the Parmotrema reticulatum complex: a case study | |
Using target enrichment sequencing to study the higher-level phylogeny of the largest lichen-forming fungi family: Parmeliaceae (Ascomycota) | |
Whole-Genome Sequence Data Uncover Widespread Heterothallism in the Largest Group of Lichen-Forming Fungi | |
Who's getting around? Assessing species diversity and phylogeography in the widely distributed lichen-forming fungal genus Montanelia (Parmeliaceae, Ascomycota). |