Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
43
datasets available to search
ShareScore release 0.9.0
Dataset results
43 results for “Ophiocordycipitaceae”
FIGURE 1 in A new species of Ophiocordyceps (Ophiocordycipitaceae) from Mizoram, India
FIGURE 1. Phylogenetic tree of Ophiocordyceps mizoramensis and related species obtained with maximum likelihood method based on the Tef Region with Log Likelihood -2439.654761. Numbers below the branches are bootstrap percentage values based on 10,000 replicates, ML/BPP, maximum likelihood bootstrap support values greater than 50% and Bayesian posterior probabilities above 90%.
FIGURE 2. Ophiocordyceps ovatospora. a in Ophiocordyceps ovatospora sp. nov. (Ophiocordycipitaceae, Hypocreales), pathogenic on termites from China
FIGURE 2. Ophiocordyceps ovatospora. a. Fungus on termite. b. Fertile part of stroma. c, d. Cross-section of ascoma showing perithecial arrangement. e, f. Asci. g–i. Ascospores. j, k. Colonies on PDA medium. l–o. Conidiogenous cells and conidia. Scale bars: a = 2 cm, b = 0.5 cm, c = 200 µm, d = 100 µm, e–f = 20 µm, g = 10 µm, h–i = 20 µm, j–k = 2 cm, l–o = 10 µm.
FIGURE 1. Phylogenetic tree inferred from a in Ophiocordyceps ovatospora sp. nov. (Ophiocordycipitaceae, Hypocreales), pathogenic on termites from China
FIGURE 1. Phylogenetic tree inferred from a combined ITS, nrSSU, nrLSU, tef-1a, rpb1, rpb2 dataset based on Bayesian inference (BI) and maximum likelihood (ML) analyses. Values at the nodes are BI posterior probabilities (BP) and ML bootstrap proportions (PP), the scale bar 0.02 indicates the number of expected mutations per site. Cordyceps militaris and C. kyusyuensis in the Cordycipitaceae were used as the outgroup. The new species is in bold.
Supplementary material 4 from: Sun T, Zou W, Dong Q, Huang O, Tang D, Yu H (2022) Morphology, phylogeny, mitogenomics and metagenomics reveal a new entomopathogenic fungus Ophiocordyceps nujiangensis (Hypocreales, Ophiocordycipitaceae) from Southwestern China. MycoKeys 94: 91-108. https://doi.org/10.3897/mycokeys.94.89425
Phylogenetic analyses of the ranked top 50 families identified from Ophiocordyceps nujiangensis based on maximum likelihood (ML). Values at the nodes are ML bootstrap proportions
Supplementary material 3 from: Sun T, Zou W, Dong Q, Huang O, Tang D, Yu H (2022) Morphology, phylogeny, mitogenomics and metagenomics reveal a new entomopathogenic fungus Ophiocordyceps nujiangensis (Hypocreales, Ophiocordycipitaceae) from Southwestern China. MycoKeys 94: 91-108. https://doi.org/10.3897/mycokeys.94.89425
Rarefaction curves (Shannon-Wiener curve) of the fungal communities collected from the fruiting body from four different specimens of Ophiocordyceps nujiangensis
Supplementary material 2 from: Sun T, Zou W, Dong Q, Huang O, Tang D, Yu H (2022) Morphology, phylogeny, mitogenomics and metagenomics reveal a new entomopathogenic fungus Ophiocordyceps nujiangensis (Hypocreales, Ophiocordycipitaceae) from Southwestern China. MycoKeys 94: 91-108. https://doi.org/10.3897/mycokeys.94.89425
The information of species and their mitochondrial genomes for constructing the mitochondrial-genome phylogenetic tree of Hypocreales
Supplementary material 1 from: Tehan RM, Dooley CB, Barge EG, McPhail KL, Spatafora JW (2023) New species and new combinations in the genus Paraisaria (Hypocreales, Ophiocordycipitaceae) from the U.S.A., supported by polyphasic analysis. MycoKeys 100: 69-94. https://doi.org/10.3897/mycokeys.100.110959
Endosclerotia LCMS feature list
Figure 4 from: Peng X-C, Wen T-C, Wei D-P, Liao Y-H, Wang Y, Zhang X, Wang G-Y, Zhou Y, Tangtrakulwanich K, Liang J-D (2024) Two new species and one new combination of Ophiocordyceps (Hypocreales, Ophiocordycipitaceae) in Guizhou. MycoKeys 102: 245-266. https://doi.org/10.3897/mycokeys.102.113351
Figure 4 Ophiocordyceps musicaudata (HKAS 131911) a redrawn of Liang (2007)b habitat c, d stromata arising from host e fertile parts f, g reverse and front view of culture on PDA h, i perithecia j–l asci m ascus cap n–p ascospores, the arrows in the n, p indicating septate. Scale bars: 2 cm (c, d); 5 mm (e); 1 cm (f, g); 100 µm (h, i); 50 µm (j–l, n–p); 5 um (m).
Figure 3 from: Peng X-C, Wen T-C, Wei D-P, Liao Y-H, Wang Y, Zhang X, Wang G-Y, Zhou Y, Tangtrakulwanich K, Liang J-D (2024) Two new species and one new combination of Ophiocordyceps (Hypocreales, Ophiocordycipitaceae) in Guizhou. MycoKeys 102: 245-266. https://doi.org/10.3897/mycokeys.102.113351
Figure 3 Ophiocordyceps liangii (holotype HKAS 125845) a habitat b, c stromata arising from host d superficial perithecia e host f, g section of perithecia h–k asci h–i immature j, k mature l, m ascus cap n–p ascospores q–s reverse and front view of culture on PDA. Scale bars: 4 cm (b, c), 1 mm (d), 5 mm (e), 100 µm (f, g), 50 µm (h–k), 20 µm (l, m), 30 µm (n–p), 2 cm (q–s).
Figure 2 from: Peng X-C, Wen T-C, Wei D-P, Liao Y-H, Wang Y, Zhang X, Wang G-Y, Zhou Y, Tangtrakulwanich K, Liang J-D (2024) Two new species and one new combination of Ophiocordyceps (Hypocreales, Ophiocordycipitaceae) in Guizhou. MycoKeys 102: 245-266. https://doi.org/10.3897/mycokeys.102.113351
Figure 2 Ophiocordyceps fenggangensis (holotype HKAS 125848) a habitat b host imbedded into the soil with the stroma emerging from the ground c stroma arising from the larva of Lepidopterad host e, f reverse and front view of the culture on PDA g part of fertile head h part of fertile head with sterile tip (arrow indicate) i perithecia j–m asci n ascus cap o part of ascospores p secondary ascospores. Scale bars: 2 cm (c, e, f); 5 mm (d); 1 mm (g, h); 100 µm (i, j); 25 µm (k–m); 10 µm (n); 5 µm (o); 2 µm (p).
Figure 1 from: Peng X-C, Wen T-C, Wei D-P, Liao Y-H, Wang Y, Zhang X, Wang G-Y, Zhou Y, Tangtrakulwanich K, Liang J-D (2024) Two new species and one new combination of Ophiocordyceps (Hypocreales, Ophiocordycipitaceae) in Guizhou. MycoKeys 102: 245-266. https://doi.org/10.3897/mycokeys.102.113351
Figure 1 Phylogram generated from Maximum Likelihood analysis, based on combined LSU, ITS, SSU, tef1-α, rpb1 and rpb2 sequence data. ML bootstrap values equal to or greater than 95% and the PP equal to or greater than 0.90 are given above each node. The newly-generated sequences are indicated in blue. Type strain, type specimens or neotype are denoted in black bold.
Figure 2 from: Fan Q, Yang T, Li H, Wang X-M, Liao H-F, Shen P-H, Yang Z-L, Zeng W-B, Wang Y-B (2024) Molecular phylogeny and morphology reveal two new entomopathogenic species of Ophiocordyceps (Ophiocordycipitaceae, Hypocreales) parasitic on termites from China. MycoKeys 103: 1-24. https://doi.org/10.3897/mycokeys.103.116153
Figure 2 Ophiocordyceps longistipesA, B stromata of fungus arising from termites C fertile part D perithecia E colony on PDA (obverse and reverse) F, G ascospores H, I asci J–L conidiogenous cells and conidia. Scale bars: 1 cm (A, B, E); 2 mm (C); 100 µm (D); 20 µm (F–L).
Figure 1 from: Fan Q, Yang T, Li H, Wang X-M, Liao H-F, Shen P-H, Yang Z-L, Zeng W-B, Wang Y-B (2024) Molecular phylogeny and morphology reveal two new entomopathogenic species of Ophiocordyceps (Ophiocordycipitaceae, Hypocreales) parasitic on termites from China. MycoKeys 103: 1-24. https://doi.org/10.3897/mycokeys.103.116153
Figure 1 Phylogenetic tree based on the combined dataset of nrSSU, nrLSU, tef-1α, rpb1, rpb2, and ITS showing the relationship of two new species on termites from China with other Ophiocordyceps species. Values at the nodes before and after the backslash are BI posterior probabilities (BI-PP greater than 0.60) and ML bootstrap proportions (ML-BP greater than 70%), respectively. New species described in this paper are shown in bold red.
Figure 3 from: Fan Q, Yang T, Li H, Wang X-M, Liao H-F, Shen P-H, Yang Z-L, Zeng W-B, Wang Y-B (2024) Molecular phylogeny and morphology reveal two new entomopathogenic species of Ophiocordyceps (Ophiocordycipitaceae, Hypocreales) parasitic on termites from China. MycoKeys 103: 1-24. https://doi.org/10.3897/mycokeys.103.116153
Figure 3 Ophiocordyceps globiperitheciataA stromata of fungus arising from termites B sterile tip and fertile part C fertile part D perithecia E–G asci H–J ascospores. Scale bars: 1 cm (A); 2 mm (B); 500 µm (C); 50 µm (D); 20 µm (E–J).
TABLE 1 in Ophiocordyceps taiwanensis sp. nov. (Ophiocordycipitaceae, Hypocreales) on Odontotermes formosanus (Termitidae, Blattodea)
<p><b>TABLE 1.</b> Isolates used in this study and GenBank accession numbers.</p><table><tbody><tr><th><b>Taxa</b></th><th><b>Strain</b></th><th><b>LSU</b></th><th><b>ITS</b></th><th><b>SSU</b></th><th><b>TEF1</b></th><th><b>RPB2</b></th></tr></tbody><tbody><tr><th><i>Achaetomium macrosporum</i></th><td>CBS 532.94</td><td>KX976699</td><td>KX976574</td><td>N/A</td><td>N/A</td><td>KX976797</td></tr><tr><th><i>Akanthomyces muscarius</i></th><td>CBS 143.62*</td><td>KM283798</td><td>MH858126</td><td>KM283774</td><td>KM283821</td><td>KM283863</td></tr><tr><th><i>Beauveria caledonica</i></th><td>ARSEF 2567*</td><td>AF339520</td><td>HQ880817</td><td>AF339570</td><td>EF469057</td><td>HQ880961</td></tr><tr><th><i>Blackwellomyces cardinalis</i></th><td>CBS 113411*</td><td>MH874496</td><td>MH862928</td><td>AY184973</td><td>DQ522325</td><td>N/A</td></tr><tr><th><i>Blackwellomyces lateris</i></th><td>MFLU 18-0663*</td><td>MK086061</td><td>MK086059</td><td>MK086057</td><td>MK069471</td><td>MK079354</td></tr><tr><th><i>Bullanockia australis</i></th><td>CPC 28976*</td><td>KY173506</td><td>KY173415</td><td>N/A</td><td>N/A</td><td>N/A</td></tr><tr><th><i>Chaetomium elatum</i></th><td>CBS 374.66*</td><td>MH870466</td><td>KC109758</td><td>N/A</td><td>KF001730</td><td>KF001820</td></tr><tr><th><i>Claviceps fusiformis</i></th><td>ATCC 26019</td><td>U17402</td><td>JN049817</td><td>DQ522539</td><td>DQ522320</td><td>N/A</td></tr><tr><th><i>Claviceps purpurea</i></th><td>GAM 12885</td><td>AF543789</td><td>U57669</td><td>N/A</td><td>AF543778</td><td>DQ522417</td></tr><tr><th><i>Clonostachys byssicola</i></th><td>CBS 364.78*</td><td>MH872912</td><td>MH861151</td><td>N/A</td><td>N/A</td><td>N/A</td></tr><tr><th><i>Clonostachys krabiensis</i></th><td>MFLUCC 16-0254*</td><td>MH376707</td><td>MH388335</td><td>MH388304</td><td>N/A</td><td>N/A</td></tr><tr><th><i>Cocoonihabitus sinensis</i></th><td>8039*</td><td>KY924869</td><td>KY924870</td><td>MF687397</td><td>N/A</td><td>N/A</td></tr><tr><th><i>Cocoonihabitus sinensis</i></th><td>9880</td><td>MF687396</td><td>MF687395</td><td>MF687398</td><td>N/A</td><td>N/A</td></tr><tr><th><i>Cordyceps brongniartii</i></th><td>BCC16585*</td><td>JF415967</td><td>JN049867</td><td>JF415951</td><td>JF416009</td><td>JF415991</td></tr><tr><th><i>Drechmeria panacis</i></th><td>CBS 142798*</td><td>MF588897</td><td>MF588878</td><td>MF588890</td><td>MF614144</td><td></td></tr><tr><th><i>Drechmeria zeospora</i></th><td>CBS 335.80*</td><td>AF339540</td><td>MH861269</td><td>AF339589</td><td>EF469062</td><td>EF469109</td></tr><tr><th><i>Fusariella curvata</i></th><td>MFLUCC 15-0844*</td><td>KX025154</td><td>KX025152</td><td>KX025153</td><td>KX025155</td><td>KX025156</td></tr><tr><th><i>Gelasinospora tetrasperma</i></th><td>AFTOL-ID 1287*</td><td>DQ470980</td><td>N/A</td><td>DQ471032</td><td>DQ471103</td><td>DQ470932</td></tr><tr><th><i>Heleococcum aurantiacum</i></th><td>CBS 201.35</td><td>MH867154</td><td>MH855645</td><td>N/A</td><td>JX158397</td><td>JX158463</td></tr><tr><th><i>Hirsutella citriformis</i></th><td>ARSEF 1035</td><td>KM652105</td><td>KM652153</td><td>KM652064</td><td>KM651989</td><td>N/A</td></tr><tr><th><i>Hirsutella fusiformis</i></th><td>ARSEF 5474</td><td>KM652110</td><td>N/A</td><td>KM652067</td><td>KM651993</td><td>N/A</td></tr><tr><th><i>Hirsutella gigantea</i></th><td>ARSEF 30</td><td>JX566977</td><td>N/A</td><td></td><td>JX566980</td><td>N/A</td></tr><tr><th><i>Hirsutella radiata</i></th><td>ARSEF 1369</td><td>KM652119</td><td>N/A</td><td>KM652076</td><td>KM652002</td><td>N/A</td></tr><tr><th><i>Hirsutella shennongjiaensis</i></th><td>GZUIFR-Libo1*</td><td>KY945357</td><td>KT390721</td><td>N/A</td><td>N/A</td><td>N/A</td></tr><tr><th><i>Hydropisphaera fungicola</i></th><td>BPI 878275*</td><td>GQ505995</td><td>NR_137701</td><td>N/A</td><td>N/A</td><td>N/A</td></tr><tr><th><i>Lasionectria oenanthicola</i></th><td>CBS 129747*</td><td>KY607557</td><td>KY607542</td><td>N/A</td><td>N/A</td><td>N/A</td></tr><tr><th><i>Marquandomyces marquandii</i></th><td>CBS 182.27*</td><td>MH866418</td><td>MH854923</td><td>EF468990</td><td>EF468793</td><td>N/A</td></tr><tr><th><i>Metarhizium granulomatis</i></th><td>UAMH 11028*</td><td>HM195304</td><td>HM195305</td><td>NG_064956</td><td>KJ398781</td><td>N/A</td></tr><tr><th><i>Monocillium bulbillosum</i></th><td>CBS 344.70*</td><td>MF681501</td><td>MF681488</td><td>N/A</td><td>MF681507</td><td>N/A</td></tr><tr><th><i>Monocillium gamsii</i></th><td>DSM 105458*</td><td>MF681496</td><td>MF681485</td><td>N/A</td><td>MF681506</td><td>N/A</td></tr><tr><th><i>Niesslia aemula</i></th><td>CBS 261.70</td><td>MG826761</td><td>MG826957</td><td>N/A</td><td>N/A</td><td>N/A</td></tr><tr><th><i>Niesslia exosporioides</i></th><td>CBS 827.73</td><td>MG826845</td><td>MG827037</td><td>N/A</td><td>N/A</td><td>N/A</td></tr><tr><th><i>Nigella martiale</i></th><td>HMAS 197472*</td><td>JF415973</td><td>JN049881</td><td>JF415955</td><td>JF416015</td><td>JF415994</td></tr><tr><th><i>Ophiocordyceps acicularis</i></th><td>OSC 110987</td><td>EF468805</td><td>N/A</td><td>EF468950</td><td>EF468744</td><td>N/A</td></tr><tr><th><i>Ophiocordyceps agriotidis</i></th><td>ARSEF 5692</td><td>DQ518754</td><td>JN049819</td><td>DQ522540</td><td>DQ522322</td><td>DQ522418</td></tr><tr><th><i>Ophiocordyceps alboperitheciata</i></th><td>YHH 16755*</td><td>MT222278</td><td>N/A</td><td>N/A</td><td>MT222279</td><td>MT222281</td></tr><tr><th><i>Ophiocordyceps appendiculata</i></th><td>NBRC 106959</td><td>JN941412</td><td>JN943325</td><td>JN941729</td><td>AB968578</td><td>AB968540</td></tr><tr><th><i>Ophiocordyceps araracuarensis</i></th><td>HUA 186135</td><td>KC610769</td><td>KP200891</td><td>KC610788</td><td>KC610738</td><td>KC610716</td></tr><tr><th><i>Ophiocordyceps asiatica</i></th><td>BCC 86435</td><td>MH753676</td><td>MH754723</td><td>N/A</td><td>N/A</td><td>MK214092</td></tr><tr><th><i>Ophiocordyceps bispora</i></th><td>KVL 606</td><td>AF009654</td><td>N/A</td><td>N/A</td><td>N/A</td><td>N/A</td></tr><tr><th><i>Ophiocordyceps coccidiicola</i></th><td>NBRC 100682</td><td>AB968419</td><td>AB968404</td><td>AB968391</td><td>AB968583</td><td>AB968545</td></tr><tr><th><i>Ophiocordyceps entomorrhiza</i></th><td>KEW 53484</td><td>EF468809</td><td>JN049850</td><td>EF468954</td><td>EF468749</td><td>EF468911</td></tr><tr><th><i>Ophiocordyceps fenggangensis</i></th><td>HKAS 125848*</td><td>OR527542</td><td>OR527535</td><td>N/A</td><td>OR526346</td><td>N/A</td></tr><tr><th><i>Ophiocordyceps fusiformis</i></th><td>BCC 93025*</td><td>MZ675422</td><td>MZ676743</td><td>N/A</td><td>MZ707849</td><td>MZ707805</td></tr><tr><th><i>Ophiocordyceps liangii</i></th><td>HKAS 125845*</td><td>OR527543</td><td>OR527536</td><td>OR527539</td><td>OR526347</td><td></td></tr><tr><th><i>Ophiocordyceps macroacicularis</i></th><td>NBRC 100685*</td><td>AB968416</td><td>AB968400</td><td>AB968388</td><td>AB968574</td><td>AB968536</td></tr><tr><th><i>Ophiocordyceps ovatospora</i></th><td>YHH 2206001*</td><td>OP295113</td><td>OP295105</td><td>OP295110</td><td>OP313801</td><td>OP313805</td></tr><tr><th><i>Ophiocordyceps taiwanensis</i></th><td><b>TNM F0037796*</b></td><td>PP926235</td><td>PP926231</td><td>PP926233</td><td>N/A</td><td>N/A</td></tr><tr><th><i>Ophiocordyceps taiwanensis</i></th><td><b>MC2022-0027</b></td><td>PP926236</td><td>PP926232</td><td>PP926234</td><td>N/A</td><td>N/A</td></tr><tr><th><i>Paracylindrocarpon aloicola</i></th><td>CPC 27362*</td><td>KX228328</td><td>KX228277</td><td>N/A</td><td>N/A</td><td>N/A</td></tr><tr><th><i>Paraisaria coenomyiae</i></th><td>NBRC 108993*</td><td>AB968412</td><td>AB968396</td><td>AB968384</td><td>AB968570</td><td>AB968532</td></tr><tr><th><i>Paraisaria heteropoda</i></th><td>EFCC 10125</td><td>EF468812</td><td>JN049852</td><td>EF468957</td><td>EF468752</td><td>EF468914</td></tr><tr><th><i>Perennicordyceps cuboidea</i></th><td>NBRC 103836</td><td>JN941420</td><td>JN943332</td><td>JN941721</td><td>AB972951</td><td>AB972955</td></tr><tr><th><i>Perennicordyceps paracuboidea</i></th><td>NBRC 100942</td><td>JN941430</td><td>JN943337</td><td>JN941711</td><td>AB972954</td><td>AB972958</td></tr><tr><th><i>Perennicordyceps prolifica</i></th><td>NBRC 101750</td><td>JN941433</td><td>JN943340</td><td>JN941708</td><td>AB972953</td><td>AB972957</td></tr><tr><th><i>Perennicordyceps ryogamiensis</i></th><td>NBRC 101751</td><td>JN941438</td><td>JN943343</td><td>JN941703</td><td>KF049688</td><td>N/A</td></tr><tr><th><i>Pleurocordyceps nutantis</i></th><td>MFLU 21-0275*</td><td>OQ172048</td><td>OQ172073</td><td>OQ172119</td><td>OQ459739</td><td>OQ459811</td></tr><tr><th><i>Polycephalomyces tomentosus</i></th><td>ARSEF 5353</td><td>KF049641</td><td>KF049666</td><td>KF049623</td><td>KF049697</td><td>KF049678</td></tr><tr><th><i>Purpureocillium lavendulum</i></th><td>CBS 128677*</td><td>MH876429</td><td>MH864976</td><td>N/A</td><td>N/A</td><td>N/A</td></tr><tr><th><i>Purpureocillium lilacinum</i></th><td>CBS 431.87</td><td>EF468844</td><td>AY624188</td><td>N/A</td><td>EF468791</td><td>EF468940</td></tr><tr><th><i>Purpureocillium takamizusanense</i></th><td>NHJ 3582</td><td>EU369034</td><td>N/A</td><td>EU369097</td><td>EU369015</td><td>N/A</td></tr><tr><th><i>Roumegueriella rufula</i></th><td>CBS 346.85</td><td>DQ518776</td><td>N/A</td><td>DQ522561</td><td>N/A</td><td>DQ522461</td></tr><tr><th><i>Selinia pulchra</i></th><td>A.R. 2812</td><td>GQ505992</td><td>HM484859</td><td>N/A</td><td>HM484841</td><td>N/A</td></tr><tr><th><i>Simplicillium lanasoniveum</i></th><td>CBS 704.86</td><td>AF339553</td><td>AJ292396</td><td>AF339602</td><td>DQ522358</td><td>DQ522464</td></tr><tr><th><i>Stromatonectria caraganae</i></th><td>CBS 125579</td><td>HQ112288</td><td>HQ112288</td><td>N/A</td><td>HQ112286</td><td>HQ112290</td></tr><tr><th><i>Tilachlidium brachiatum</i></th><td>CBS 363.97</td><td>KM231719</td><td>KM231838</td><td>N/A</td><td>KM231975</td><td>KM232414</td></tr><tr><th><i>Tilachlidium brachiatum</i></th><td>CBS 505.67</td><td>KM231720</td><td>KM231839</td><td>N/A</td><td>KM231976</td><td>KM232415</td></tr><tr><th><i>Tolypocladium bacillisporum</i></th><td>IFM 67757*</td><td>LC684522</td><td>LC684522</td><td>N/A</td><td>LC684525</td><td>N/A</td></tr><tr><th><i>Tolypocladium cylindrosporum</i></th><td>ARSEF 2920*</td><td>MH871712</td><td>MG228381</td><td>N/A</td><td>MG228390</td><td>MG228387</td></tr><tr><th><i>Tolypocladium inflatum</i></th><td>OSC 71235</td><td>EF469077</td><td>JN049844</td><td>EF469124</td><td>EF469061</td><td>EF469108</td></tr><tr><th><i>Tolypocladium ophioglossoides</i></th><td>NBRC 106332</td><td>JN941409</td><td>JN943322</td><td>JN941732</td><td>N/A</td><td>N/A</td></tr><tr><th><i>Tolypocladium paradoxum</i></th><td>NBRC 100945</td><td>JN941410</td><td>JN943323</td><td>JN941731</td><td>AB968599</td><td>AB968560</td></tr><tr><th><i>Tolypocladium tundrense</i></th><td>CBS 569.84*</td><td>MH873479</td><td>MH861781</td><td>N/A</td><td>N/A</td><td>N/A</td></tr><tr><th><i>Verrucostoma freycinetiae</i></th><td>MAFF 240100*</td><td>GQ506013</td><td>NR_137761</td><td>N/A</td><td>HM484853</td><td>N/A</td></tr><tr><th><i>Xanthonectria pseudopeziza</i></th><td>CBS 140160</td><td>KU593583</td><td>KU593584</td><td>N/A</td><td>N/A</td><td>OQ454358</td></tr><tr><th><i>Xanthonectria pseudopeziza</i></th><td>MFLU 16-0513</td><td>ON230061</td><td>ON230054</td><td>N/A</td><td>ON238005</td><td>N/A</td></tr></tbody></table>
Figure 1 from: Qu J, Zou X, Cao W, Xu Z, Liang Z (2021) Two new species of Hirsutella (Ophiocordycipitaceae, Sordariomycetes) that are parasitic on lepidopteran insects from China. MycoKeys 82: 81-96. https://doi.org/10.3897/mycokeys.82.66927
Figure 1 Phylogenetic tree of Hirsutella species combined with RPB1, tef1, ITS, 18S rDNA and 28S rDNA datasets, using the maximum likelihood method. Numbers below the branches are bootstrap percentage values, based on 10,000 replicates, ML/BPP.
Figure 3 from: Qu J, Zou X, Cao W, Xu Z, Liang Z (2021) Two new species of Hirsutella (Ophiocordycipitaceae, Sordariomycetes) that are parasitic on lepidopteran insects from China. MycoKeys 82: 81-96. https://doi.org/10.3897/mycokeys.82.66927
Figure 3 Morphological characteristics of Hirsutella kuankuoshuiensisA the insect specimens with single and thin synnemata (HKAS112885) B, C colonial morphology on PDA agar media for 20 d B shows the front of the colony and C shows the back of the colony D–GLM images showing conidiogenous cells and conidia D, E the structure of conidiogenous cells on mycelia F the images of conidiogenous cells on synnemata (optical microscope) H–J conidial morphology (LM) G conidia with mucilage (SEM). Scale bars: 10 mm (A–C); bar of G was shown in the figure; the rest of the bars were 10 μm. LM, light microscopy; PDA, potato dextrose agar; SEM, scanning electron microscopy.
Figure 2 from: Qu J, Zou X, Cao W, Xu Z, Liang Z (2021) Two new species of Hirsutella (Ophiocordycipitaceae, Sordariomycetes) that are parasitic on lepidopteran insects from China. MycoKeys 82: 81-96. https://doi.org/10.3897/mycokeys.82.66927
Figure 2 Morphological characteristics of Hirsutella flavaA the infected insect specimens with a long and single synnemata (HKAS112884) B, C colonial morphology on PDA agar media for 20 d B shows the front of the colony and C shows the back of the colony D–GLM images of the general morphology of conidiogenous cells and conidia H–KSEM images showing conidiogenous cells and conidial structure; Scale bars: 1 cm (A); 5 cm (B, C), 10 μm (D–G); the rest of the bars are shown in the figure. LM, light microscopy; PDA, potato dextrose agar; SEM, scanning electron microscopy.
Supplementary material 1 from: Sun T, Zou W, Dong Q, Huang O, Tang D, Yu H (2022) Morphology, phylogeny, mitogenomics and metagenomics reveal a new entomopathogenic fungus Ophiocordyceps nujiangensis (Hypocreales, Ophiocordycipitaceae) from Southwestern China. MycoKeys 94: 91-108. https://doi.org/10.3897/mycokeys.94.89425
Relevant species information and GeneBank accession numbers for phylogenetic research in this study
Supplementary material 1 from: Tang D, Zhao J, Lu Y, Wang Z, Sun T, Liu Z, Yu H (2023) Morphology, phylogeny and host specificity of two new Ophiocordyceps species belonging to the "zombie-ant fungi" clade (Ophiocordycipitaceae, Hypocreales). MycoKeys 99: 269-296. https://doi.org/10.3897/mycokeys.99.107565
Phylogenetic tree of Ophiocordyceps and related genera, based on single gene SSU sequence
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.