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101 results for “Athyriaceae”
Figure 6 from: Hori K (2020) Athyrium bipinnatum K.Hori (Athyriaceae), a new cornopteroid fern from Japan. PhytoKeys 148: 93-104. https://doi.org/10.3897/phytokeys.148.51589
Figure 6 Abaxial surface of pinnule and sori of AAthyrium crenulatoserrulatumBAthyrium bipinnatum, CAthyrium × christensenianumDAthyrium decurrentialatum (illustration by K. Hori).
Figure 4 from: Hori K (2020) Athyrium bipinnatum K.Hori (Athyriaceae), a new cornopteroid fern from Japan. PhytoKeys 148: 93-104. https://doi.org/10.3897/phytokeys.148.51589
Figure 4 Athyrium bipinnatum K.Hori. A Habit B detail of adaxial pinnule C detail of abaxial pinnule D lower stipe scale E spore. A–E from the holotype (MAK466762) (illustration by K. Hori).
Figure 9 from: Hori K (2020) Deparia ×nanakuraensis K.Hori (Athyriaceae), a new hybrid pteridophyte from Japan. PhytoKeys 165: 69-84. https://doi.org/10.3897/phytokeys.165.57837
Figure 9 Abaxial surface of pinnule and sori of AD. viridifronsBD. × nanakuraensis, and CD. pterorachis (illustration by K. Hori).
Figure 2 from: Hori K (2020) Deparia ×nanakuraensis K.Hori (Athyriaceae), a new hybrid pteridophyte from Japan. PhytoKeys 165: 69-84. https://doi.org/10.3897/phytokeys.165.57837
Figure 2 The ML tree based on the sequence variation of the gene trnL-F (ln L = -2309.05) with PP (>0.90) and BP (>70) of ML/MP/BI analyses on each branch. The sequences with asterisks were quoted from Genbank.
Figure 5 from: Hori K (2020) Deparia ×nanakuraensis K.Hori (Athyriaceae), a new hybrid pteridophyte from Japan. PhytoKeys 165: 69-84. https://doi.org/10.3897/phytokeys.165.57837
Figure 5 Map showing the known distribution of D. × nanakuraensis in Japan. Red star indicates type locality, other circles indicate examined specimens.
Figure 4 from: Hori K (2020) Deparia ×nanakuraensis K.Hori (Athyriaceae), a new hybrid pteridophyte from Japan. PhytoKeys 165: 69-84. https://doi.org/10.3897/phytokeys.165.57837
Figure 4 D. × nanakuraensis K.Hori A lower stipe scale B upper stipe scale C abaxial surface of frond and stipe D detail of adaxial pinnule E detail of abaxial pinnule, and F rhizome and base of stipes. A–F from the holotype (MAK467056) (illustration by K. Hori).
Figure 1 from: Hori K (2020) Deparia ×nanakuraensis K.Hori (Athyriaceae), a new hybrid pteridophyte from Japan. PhytoKeys 165: 69-84. https://doi.org/10.3897/phytokeys.165.57837
Figure 1 Photograph and sketch of mitotic metaphase chromosomes (2n = 80) of D. × nanakuraensis (Hori 3391).
Figure 3 from: Hori K (2020) Deparia ×nanakuraensis K.Hori (Athyriaceae), a new hybrid pteridophyte from Japan. PhytoKeys 165: 69-84. https://doi.org/10.3897/phytokeys.165.57837
Figure 3 The ML tree based on the sequence variation of the gene AK1 (ln L = -1616.59) with PP (>0.90) and BP (>70) of ML/MP/BI analyses on each branch. The sequences with asterisks were quoted from Genbank.
Data from: Infrageneric revision of the fern genus Deparia (Athyriaceae, Aspleniineae, Polypodiales)
Current molecular phylogenetic analyses support the monophyly and circumscription of the athyrioid fern genus Deparia (Athyriaceae), which includes previously recognized genera including Athyriopsis, ×Depazium, Dictyodroma, Dryoathyrium (= Parathyrium), Lunathyrium, and Triblemma. This broad generic concept has been adopted in several recent taxonomic treatments, including the Pteridophyte Phylogeny Group I. However, the infrageneric taxonomy of Deparia still needs further revision. In this study, we provide a new infrageneric classification with five sections and three subsections based on the phylogenetic evidence. We recognize two new sections, sect. Dictyodroma and sect. Erectus, and two new subsections, sect. Deparia subsect. Caespites and subsect. Athyriopsis. In addition, we provide a key to the sections and subsections, a table of diagnostic characters, new combinations for three Deparia and one Diplazium species, and a list of species assigned to the sections/subsections. Hybrids derived from crosses between the sections and subsections are also noted.
FIGURE 20 in Revision of the fern genus Diplazium (Polypodiales: Athyriaceae) in Thailand
FIGURE 20. Diplazium pallidum (Blume) T. Moore. A, living plant. B, herbarium specimen.
FIGURE 5 in Revision of the fern genus Diplazium (Polypodiales: Athyriaceae) in Thailand
FIGURE 5. Diplazium bellum (Blume) T. Moore.
FIGURE 24 in Revision of the fern genus Diplazium (Polypodiales: Athyriaceae) in Thailand
FIGURE 24. Diplazium petrii Tardieu. Lectotype of D. petrii Tardieu (Pételot 3589, P01449476).
Fig. 3. – Deparia longipilosa Rakotondr. A in Révision du genre Deparia Hook. & Grev. (Pteridophyta, Athyriaceae) à Madagascar: trois espèces nouvelles, une synonymie nouvelle et des hybrides présumés
Fig. 3. – Deparia longipilosa Rakotondr. A. Aspect général; B, Détail du limbe, face adaxiale; C. Détail du limbe, face abaxiale; D. Portion de rachis écailleux et pileux; E. Ecaille du rhizome et de la base du pétiole; F-I. Écailles et poil septé sur pétiole, rachis, costae et nervures. [Rakotovao et al. 2727, P] [Dessin: A. Jouy]
FIGURE 3 in Athyrium aberrans (Athyriaceae), a new species of the lady ferns from southeastern Xizang, China, based on morphological and molecular evidence
FIGURE 3. Holotype of Athyrium aberrans Liang Zhang & Li Bing Zhang.
Figure 3 from: Wood KR, Wagner WL (2017) Athyrium haleakalae (Athyriaceae), a new rheophytic fern species from East Maui, Hawaiian Islands: with notes on its distribution, ecology, and conservation status. PhytoKeys 76: 115-124. https://doi.org/10.3897/phytokeys.76.11637
Figure 3 - Typical habitat of Athyrium haleakalae around stream plunge pools, Hana Forest Reserve, East Maui, HI. Photo by K.R. Wood, 21 Aug 2013.
Figure 4 from: Wood KR, Wagner WL (2017) Athyrium haleakalae (Athyriaceae), a new rheophytic fern species from East Maui, Hawaiian Islands: with notes on its distribution, ecology, and conservation status. PhytoKeys 76: 115-124. https://doi.org/10.3897/phytokeys.76.11637
Figure 4 - A Mature plants of Athyrium haleakalae, showing habitat preference along concave hollow of stream, Hana Forest Reserve, East Maui, HI (22 Aug 2013, Wood & Oppenheimer 15639) B Mature plant of Athyrium microphyllum, showing terrestrial habitat preference, erect rhizome, and large size, Mohihi, Kaua'i, HI (18 Dec 2014, Wood & Flynn et al. 16175). Photos by K.R. Wood.
Figure 2 from: Wood KR, Wagner WL (2017) Athyrium haleakalae (Athyriaceae), a new rheophytic fern species from East Maui, Hawaiian Islands: with notes on its distribution, ecology, and conservation status. PhytoKeys 76: 115-124. https://doi.org/10.3897/phytokeys.76.11637
Figure 2 - Map showing known distribution of Athyrium haleakalae, East Maui, HI, with upper right red dot indicating colonies in the headwaters of Kawakoe and Mokulehua, upper left in Helele'ike'oha, and lower red in Kīpahulu, near Palikea.
Figure 1 from: Wood KR, Wagner WL (2017) Athyrium haleakalae (Athyriaceae), a new rheophytic fern species from East Maui, Hawaiian Islands: with notes on its distribution, ecology, and conservation status. PhytoKeys 76: 115-124. https://doi.org/10.3897/phytokeys.76.11637
Figure 1 - Athyrium haleakalae K.R. Wood & W.L. Wagner. A–B habit C detail of adaxial pinnule showing venation and fleshy spines D detail of abaxial pinnule showing range of sori shapes E–F lower stipe scales G rhizome scale. A–G from Perlman et al. 23964 (BISH, PTBG, UC, US) (Illustration by Alice Tangerini).
Figure 4 from: Hori K, Murakami N (2019) Origin of the Diplazium hachijoense complex (Athyriaceae). PhytoKeys 124: 57-76. https://doi.org/10.3897/phytokeys.124.35242
Figure 4 The reticulogram of the D.hachijoense complex. Thin-solid arrow, autopolyploidization; Solid arrows, maternal inheritance; dashed arrows, paternal inheritance; square, triploid apogamous or diploid sexual species; dashed square, hypothesized diploid sexual or triploid apogamous species. *D.okinawaense had only nuclear AK1 allele A of D.dilatatum and B of D.takii, although plastid haplotype was D of D.amaminanum.
Figure 3b from: Hori K, Murakami N (2019) Origin of the Diplazium hachijoense complex (Athyriaceae). PhytoKeys 124: 57-76. https://doi.org/10.3897/phytokeys.124.35242
Figure 3b Full-data set of a 50% majority consensus tree resulting from Bayesian Markov chain Monte Carlo Baysean (B/MCMC) analysis of the nuclear gene AK1 with BIPP (>0.95) and MPBP (>70) node support values. Blue, diploid sexual; red, triploid apogamous; green, apogamous but ploidy was not estimated in this study.
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