Streptocarpus redefined to include all Afro-Malagasy Gesneriaceae: Molecular phylogenies prove congruent with geographical distribution and basic chromosome numbers and uncover remarkable morphological homoplasiesBillolivia, a new genus of Gesneriaceae from Vietnam with five new speciesAdditional notes on Oreocharis yunnanensis, a species of Gesneriaceae from southern Yunnan, China, including morphological and molecular dataGlabrella leiophylla (Gesneriaceae), a new combination for a former Briggsia species from Guizhou, ChinaOreocharis ninglangensis, a showy new species of Gesneriaceae from northwestern Yunnan in ChinaOreocharis synergia, a new species of Gesneriaceae from Northwestern Yunnan, ChinaGeneric recircumscription in the Loxocarpinae (Gesneriaceae), as inferred by phylogenetic and morphological dataA multidisciplinary approach reveals hidden taxonomic diversity in the morphologically challenging Taxus wallichiana complex(1948) Proposal to conserve Paraboea against Phylloboea and Trisepalum (Gesneriaceae)Extended expression of B-class MADS-box genes in the paleoherb Asarum caudigerum.The role of KNOX genes in the evolution of morphological novelty in Streptocarpus.Anisocotyly and meristem initiation in an unorthodox plant, Streptocarpus rexii (Gesneriaceae).WUS and STM homologs are linked to the expression of lateral dominance in the acaulescent Streptocarpus rexii (Gesneriaceae).GRAMINIFOLIA homolog expression in Streptocarpus rexii is associated with the basal meristems in phyllomorphs, a morphological novelty in Gesneriaceae.A complex case of simple leaves: indeterminate leaves co-express ARP and KNOX1 genes.From shoot to leaf: step-wise shifts in meristem and KNOX1 activity correlate with the evolution of a unifoliate body plan in Gesneriaceae.DNA barcoding for the discrimination of Eurasian yews (Taxus L., Taxaceae) and the discovery of cryptic species.A preliminary phylogeny of the 'didymocarpoid Gesneriaceae' based on three molecular data sets: Incongruence with available tribal classifications.Species separation of Taxus baccata, T. canadensis, and T. cuspidata (Taxaceae) and origins of their reputed hybrids inferred from RAPD and cpDNA data.Phylogenetic position and generic differentiation of Epithemateae (Gesneriaceae) inferred from plastid DNA sequence data.Applying plant DNA barcodes to identify species of Parnassia (Parnassiaceae).Developmental genetics of the perianthless flowers and bracts of a paleoherb species, Saururus chinensis.Yews (Taxus) along the Hindu Kush-Himalayan region: exploring the ethnopharmacological relevance among communities of Mongol and Caucasian origins.Geological and ecological factors drive cryptic speciation of yews in a biodiversity hotspot.Taxonomic status, phylogenetic affinities and genetic diversity of a presumed extinct genus, Paraisometrum W.T. Wang (gesneriaceae) from the karst regions of Southwest China.DNA barcoding of Rhododendron (Ericaceae), the largest Chinese plant genus in biodiversity hotspots of the Himalaya-Hengduan Mountains.Phylogeny and biogeography of exacum (gentianaceae): a disjunctive distribution in the Indian ocean basin resulted from long distance dispersal and extensive radiation.Tribounia, a new genus of Gesneriaceae from ThailandNew insights into the relationships between Paraboea, Trisepalum, and Phylloboea (Gesneriaceae) and their taxonomic consequencesMolecular systematics and remodelling of Chirita and associated genera (Gesneriaceae)Delimitation of Taxus fuana Nan Li & R.R. Mill (Taxaceae) Based on Morphological and Molecular DataOreocharis jinpingensis (Gesneriaceae), a New Species from Yunnan, ChinaParaboea hekouensis and P. manhaoensis, Two New Species of Gesneriaceae from ChinaChirita grandibracteata (Gesneriaceae), a New Species from Yunnan, ChinaTaxonomic Notes on Parnassia Section Saxifragastrum (Parnassiaceae) from ChinaA new species of Paraboea (Gesneriaceae) from a karst cave in Guangxi, China, and observations on variations in flower and inflorescence architectureNew Streptocarpus species (Gesneriaceae) from South AfricaThe first phylogenetic hypothesis for the southern African endemic genusTulbaghia(Amaryllidaceae, Allioideae) based on plastid and nuclear DNA sequencesMonophyly and relationships of the tribe Exaceae (Gentianaceae) inferred from nuclear ribosomal and chloroplast DNA sequences.An approach to identify putative hybrids in the 'coalescent stochasticity zone', as exemplified in the African plant genus Streptocarpus (Gesneriaceae).
P50
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P405
Q22984691-5D02F493-AF37-4362-A0AC-BB75EBD77131Q23050393-76F3FF85-69B6-4331-BBC0-0CFB92F70A57Q23060897-691932D8-268C-46F7-AA1B-D8C8BA3E34A8Q23672817-BBAB5C09-F7C0-4E47-BF5C-EC8793633051Q24204776-FE8C93BB-B742-4057-82B9-8187F4CF23B2Q28945442-1F6DA4C5-9C70-4DDB-96ED-48CFE28C4795Q28948071-A6D7A8C3-1BF3-4146-AAC5-03A8074A0E4DQ28949410-CAE53D88-2FCB-4DBC-BF2E-EAE622EF99DFQ29015124-3FAB2B79-EDD8-4F2B-B998-0C62DDA537EAQ30881357-2DB8599D-FCAF-46FF-BBCF-907370DB5B60Q33340810-B0B84DAE-9F5D-4065-9598-1E76A5A946CEQ33343159-ADC690F5-0775-4EBF-B3B3-B12E1FAD3796Q33347261-13735A12-8604-4B62-9B21-9AE2A52BC62AQ33348655-E8E859C1-CF08-4FC2-AD12-D7511D043765Q33349131-97260502-C6D2-461F-AFF2-637E806002D0Q33364405-9D8A7433-2F40-449D-A50F-348B985434CBQ33853204-456087A5-F142-4928-A348-4FE4D9535917Q33917793-B696E066-6B3C-4D75-BDC4-D58C48E9787EQ33928488-9F514B18-E3AE-4855-8ECC-3B50A9A9DD27Q33928493-FC9B8CFE-00D0-4860-A3FA-DD28D4B33899Q34089503-AF107615-BE60-40CA-89D1-29261541B535Q34575163-909528B7-4499-4D4C-858E-F3F2EBCC8E42Q34615358-E7A3C6B6-C926-4240-AF66-2B598084679BQ34746848-FE2CEC0C-BCD6-4FFF-9248-CE50DBE150BFQ35273051-CA7B58FB-1913-4543-9D2E-AFF1E222E0B9Q35483809-9571621A-5D2F-47A7-A490-69440D1015D5Q39620047-F20083E1-DD9D-4309-976E-F72DDAF6495EQ42307220-141EDB2C-2311-4A0A-A3C9-4D593D7034F0Q42307509-A7D2D35E-8E8F-465D-BE54-BCDCAD342131Q42307732-E86040B4-8FAD-4F23-A7BA-611F1B339ADCQ42319525-D6A2F9C2-29BB-428E-89FC-365485007E92Q42886526-2B6F328D-A1EB-4B7D-8C93-2B1293B26D39Q42886537-A1E63EA7-C58C-4FCF-9E69-A652047FF999Q42945069-9A5394A2-5425-4561-943F-3C99DBFCAC43Q42947667-FF5D5337-104D-41C9-8653-A1080FA25311Q43297404-E5D8DE3C-BA4B-4C1E-A0D6-D3046EAE671CQ43297714-3DC604D4-F6B7-49C0-AD85-B80325814E3FQ43297832-3BEA968B-4D52-45DA-ABD4-4E59B4306C11Q43760086-B5EFA32C-DE5A-4710-B435-CE0CD4265B61Q46591949-7DB4A101-A609-47D8-ADEF-6054F781B46F
P50
description
Duits botanicus
@nl
German botanist
@en
German botanist
@en-ca
German botanist
@en-gb
Saksamaa botaanik
@et
botanico tedesco
@it
botanikari alemaniarra
@eu
botanist german
@ro
botanist gjerman
@sq
botanist
@es
name
Michael Möller
@ast
Michael Möller
@ca
Michael Möller
@de
Michael Möller
@en
Michael Möller
@es
Michael Möller
@fr
Michael Möller
@nl
Michael Möller
@sl
מייקל מולר
@he
type
label
Michael Möller
@ast
Michael Möller
@ca
Michael Möller
@de
Michael Möller
@en
Michael Möller
@es
Michael Möller
@fr
Michael Möller
@nl
Michael Möller
@sl
מייקל מולר
@he
altLabel
Mich.Möller
@ast
Mich.Möller
@bg
Mich.Möller
@de
Mich.Möller
@en
Mich.Möller
@it
Mich.Möller
@ru
prefLabel
Michael Möller
@ast
Michael Möller
@ca
Michael Möller
@de
Michael Möller
@en
Michael Möller
@es
Michael Möller
@fr
Michael Möller
@nl
Michael Möller
@sl
מייקל מולר
@he
P106
P108
P21
P31
P428
Mich.Möller
P551
P569
1957-01-01T00:00:00Z
P586
20015527-1