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zenodo28/100

Figure 3 from: Tasanathai K, Noisripoom W, Chaitika T, Khonsanit A, Hasin S, Luangsa-ard J (2019) Phylogenetic and morphological classification of Ophiocordyceps species on termites from Thailand. MycoKeys 56: 101-129. https://doi.org/10.3897/mycokeys.56.37636

Figure 3 - Ophiocordyceps brunneirubra (BBH 9008, BCC14478) A, B fungus on termite C part of stroma showing perithecia D immersed perithecia E asci F ascospore G, H colony on PDA at 20 d (G) colony obverse (H) colony reverse I, J, K phialides with conidia on PDA L, M conidia on PDA N, P, O sclerotia formed in culture Q, R, S scanning electron micrographs of phialides with conidia T, U colony on PSA at 20 d (T) colony obverse (U) colony reverse V, W, X phialides with conidia on PSA Y conidia on PSA. Scale bars: 25 mm (A); 15 mm (B, G, H, T, U); 1 mm (C); 130 μm (D); 10 μm (I, Q, W); 15 μm (J); 3 μm (K, R); 5 μm (L); 4 μm (M, S, Y); 6 μm (V); 7 μm (X).

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Figure 7 from: Tasanathai K, Noisripoom W, Chaitika T, Khonsanit A, Hasin S, Luangsa-ard J (2019) Phylogenetic and morphological classification of Ophiocordyceps species on termites from Thailand. MycoKeys 56: 101-129. https://doi.org/10.3897/mycokeys.56.37636

Figure 7 - Ophiocordyceps pseudorhizoidea (BBH45361, BCC86431) A stroma of fungus emerging from termite B part of stroma showing perithecia C perithecia D, E ascus F ascospore G, H phialides with conidia from synnema I colony on PDA at 20 d obverse and reverse J, K, L phialides with conidia on PDA M, N, O conidium P colony on PSA at 20 d obverse and reverse Q, R, S phialides with conidia on PSA T, U conidia with mucous sheath. Scale bars: 15 mm (A); 1 mm (B); 120 μm (C); 8 μm (D, E); 10 μm (F, G); 3 μm (H, R); 6 mm (I, P); 5 μm (J, K, L, Q); 2 μm (M, N, O, T, U); 4 μm (S).

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Figure 4 from: Tasanathai K, Noisripoom W, Chaitika T, Khonsanit A, Hasin S, Luangsa-ard J (2019) Phylogenetic and morphological classification of Ophiocordyceps species on termites from Thailand. MycoKeys 56: 101-129. https://doi.org/10.3897/mycokeys.56.37636

Figure 4 - Ophiocordyceps khokpasiensis (BBH32173, BCC48071) A fungus on termite B part of stroma showing perithecia C pseudo-immersed perithecia D asci E ascospore F phialides with conidia from synnema G conidia from synnema H colony on PDA at 20 d colony obverse and reverse I, J phialides with conidia on PDA K, L conidium M, N, O scanning electron micrographs of phialides with conidia on PDA P colony on PSA at 20 d obverse and reverse Q, R, S phialides with conidia on PDA T, U conidium V colony on SDYA/4 at 20 d obverse and reverse W, X, Y phialides with conidia Z conidium. Scale bars: 2.5 cm (A); 1 mm (B); 100 µm (C); 5 µm (D, G, I, J, K, L); 20 µm (E); 6 µm (F); 7 mm (H, P, V); 3 µm (M, N, O, Q, R, S, T, U); 4 µm (W, X, Y); 2 µm (Z).

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Figure 2 from: Tasanathai K, Noisripoom W, Chaitika T, Khonsanit A, Hasin S, Luangsa-ard J (2019) Phylogenetic and morphological classification of Ophiocordyceps species on termites from Thailand. MycoKeys 56: 101-129. https://doi.org/10.3897/mycokeys.56.37636

Figure 2 - Ophiocordyceps asiatica (BBH38718, BCC30516) A stroma of fungus emerging from termite B phialide on specimen C part of stroma showing perithecia D perithecium E asci F ascospores G colony on PDA at 20 d obverse and reverse H, I phialides with conidia on PDA J, K conidium L colony on PSA at 20 d obverse and reverse M, N phialides with conidia on PSA O conidium P colony on SDYA/4 at 20 d obverse and reverse Q, R phialides with conidia S conidia T–X scanning electron micrographs of phialides with conidia on PDA. Scale bars: 10 mm (A, G, L, P); 5 μm (B); 1 mm (C); 8 μm (D); 15 μm (E); 10 μm (F, I); 3 μm (H, J, K, M, N, S, T, V); 2 μm (O, Q, R, U, W, X).

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Figure 5 from: Tasanathai K, Noisripoom W, Chaitika T, Khonsanit A, Hasin S, Luangsa-ard J (2019) Phylogenetic and morphological classification of Ophiocordyceps species on termites from Thailand. MycoKeys 56: 101-129. https://doi.org/10.3897/mycokeys.56.37636

Figure 5 - Ophiocordyceps mosingtoensis (BBH26809, BCC36921) A stroma of fungus emerging from termite B part of stroma showing perithecia C pseudo-immersed perithecia D, E ascus F ascospore G, L, Q, V scanning electron micrographs of phialides with conidia on PDA H colony on PDA at 20 d obverse and reverse I, J phialides with conidia K conidium M colony on PSA at 20 d obverse and reverse N, O phialides with conidia P conidium R colony on SDYA/4 at 20 d obverse and reverse S, T phialides with conidia U conidium. Scale bars: 10 mm (A); 1 mm (B); 150 µm (C); 25 µm (D); 4 µm (E); 30 µm (F); 10 µm (G); 8 mm (H, M, R); 3 µm (I, J, N, O, S, T); 2 µm (K, L, P, Q, U); 1 µm (V).

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Figure 1 from: Tasanathai K, Noisripoom W, Chaitika T, Khonsanit A, Hasin S, Luangsa-ard J (2019) Phylogenetic and morphological classification of Ophiocordyceps species on termites from Thailand. MycoKeys 56: 101-129. https://doi.org/10.3897/mycokeys.56.37636

Figure 1 - Phylogenetic tree based on combined data set of ITS, LSU, TEF , RPB1 and RPB2 sequences showing the relationship of seven new species on termites from Thailand with other species of Ophiocordyceps . Numbers above lines at significant nodes represent Maximum Likelihood bootstrap values, Bayesian posterior probabilities and MP bootstrap values. Bold lines mean support for the tree analyses were 100%.

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Supplementary material 3 from: Wang Z, Zhuang H, Wang M, Pierce NE (2019) Thitarodes shambalaensis sp. nov. (Lepidoptera, Hepialidae): a new host of the caterpillar fungus Ophiocordyceps sinensis supported by genome-wide SNP data. ZooKeys 885: 89-113. https://doi.org/10.3897/zookeys.885.34638

: Data type: molecular data

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Supplementary material 1 from: Wang Z, Zhuang H, Wang M, Pierce NE (2019) Thitarodes shambalaensis sp. nov. (Lepidoptera, Hepialidae): a new host of the caterpillar fungus Ophiocordyceps sinensis supported by genome-wide SNP data. ZooKeys 885: 89-113. https://doi.org/10.3897/zookeys.885.34638

: Data type: molecular data

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Supplementary material 2 from: Wang Z, Zhuang H, Wang M, Pierce NE (2019) Thitarodes shambalaensis sp. nov. (Lepidoptera, Hepialidae): a new host of the caterpillar fungus Ophiocordyceps sinensis supported by genome-wide SNP data. ZooKeys 885: 89-113. https://doi.org/10.3897/zookeys.885.34638

: Data type: molecular data

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Figure 8 from: Wang Z, Zhuang H, Wang M, Pierce NE (2019) Thitarodes shambalaensis sp. nov. (Lepidoptera, Hepialidae): a new host of the caterpillar fungus Ophiocordyceps sinensis supported by genome-wide SNP data. ZooKeys 885: 89-113. https://doi.org/10.3897/zookeys.885.34638

Figure 8 The distribution of Thitarodes species sampled in this study and historical records of Thitarodes species in the Kangding – Mt. Gongga region.

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Figure 9 from: Wang Z, Zhuang H, Wang M, Pierce NE (2019) Thitarodes shambalaensis sp. nov. (Lepidoptera, Hepialidae): a new host of the caterpillar fungus Ophiocordyceps sinensis supported by genome-wide SNP data. ZooKeys 885: 89-113. https://doi.org/10.3897/zookeys.885.34638

Figure 9 A Maximum Likelihood tree of CO1 sequences of species sampled in this study (yellow, red and blue dots) and other known species of the genus Thitarodes (grey dots). Outgroups are in black dots. The corresponding position of the genus Ahamus designated by Zou et al. (2010) is labeled B RAD-Seq SNP coverage of samples from three species (and degraded samples).

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Figure 7 from: Wang Z, Zhuang H, Wang M, Pierce NE (2019) Thitarodes shambalaensis sp. nov. (Lepidoptera, Hepialidae): a new host of the caterpillar fungus Ophiocordyceps sinensis supported by genome-wide SNP data. ZooKeys 885: 89-113. https://doi.org/10.3897/zookeys.885.34638

Figure 7 Diagnostic characters of Thitarodes shambalaensis sp. nov. in comparison to other species of ThitarodesA labial palp B valva C pseudotegumen. Scale bar: 1 mm.

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Figure 6 from: Wang Z, Zhuang H, Wang M, Pierce NE (2019) Thitarodes shambalaensis sp. nov. (Lepidoptera, Hepialidae): a new host of the caterpillar fungus Ophiocordyceps sinensis supported by genome-wide SNP data. ZooKeys 885: 89-113. https://doi.org/10.3897/zookeys.885.34638

Figure 6 Diagnostic character of Thitarodes shambalaensis sp. nov. in forewing venation in comparison to other species of Thitarodes. Scale bar: 1 mm.

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Figure 5 from: Wang Z, Zhuang H, Wang M, Pierce NE (2019) Thitarodes shambalaensis sp. nov. (Lepidoptera, Hepialidae): a new host of the caterpillar fungus Ophiocordyceps sinensis supported by genome-wide SNP data. ZooKeys 885: 89-113. https://doi.org/10.3897/zookeys.885.34638

Figure 5 Thitarodes shambalaensis sp. nov. Foreleg (left), midleg (middle), hindleg (right) with each aerolium enlarged in black rectangles. Scale bar: 1 mm.

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Figure 4 from: Wang Z, Zhuang H, Wang M, Pierce NE (2019) Thitarodes shambalaensis sp. nov. (Lepidoptera, Hepialidae): a new host of the caterpillar fungus Ophiocordyceps sinensis supported by genome-wide SNP data. ZooKeys 885: 89-113. https://doi.org/10.3897/zookeys.885.34638

Figure 4 Thitarodes shambalaensis sp. nov. A male genitalia from holotype, ventral view B valva, caudal view C pseudotegumen, lateral view D female genitalia from paratype. Scale bar: 1 mm.

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Figure 3 from: Wang Z, Zhuang H, Wang M, Pierce NE (2019) Thitarodes shambalaensis sp. nov. (Lepidoptera, Hepialidae): a new host of the caterpillar fungus Ophiocordyceps sinensis supported by genome-wide SNP data. ZooKeys 885: 89-113. https://doi.org/10.3897/zookeys.885.34638

Figure 3 Thitarodes shambalaensis sp. nov. A forewing (up) and hindwing (bottom) venation from dorsal view B antenna, front view C labial palp, caudal view, covered under setae. Scale bar: 1 mm.

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Figure 2 from: Wang Z, Zhuang H, Wang M, Pierce NE (2019) Thitarodes shambalaensis sp. nov. (Lepidoptera, Hepialidae): a new host of the caterpillar fungus Ophiocordyceps sinensis supported by genome-wide SNP data. ZooKeys 885: 89-113. https://doi.org/10.3897/zookeys.885.34638

Figure 2 A Natural habitat of Thitarodes shambalaensis sp. nov. at Yanzigou glacier entrance point, Mt. Gongga, Sichuan, China (photograph credit Meng Li, May 2018) B disturbed habitat of Thitarodes shambalaensis sp. nov. due to excavation of T. shambalaensis pupae, at Haizidang, Yanzigou glacier (photograph credit Wenbin Ju, May 2019).

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Figure 10 from: Wang Z, Zhuang H, Wang M, Pierce NE (2019) Thitarodes shambalaensis sp. nov. (Lepidoptera, Hepialidae): a new host of the caterpillar fungus Ophiocordyceps sinensis supported by genome-wide SNP data. ZooKeys 885: 89-113. https://doi.org/10.3897/zookeys.885.34638

Figure 10 Summary tree for all known species of Thitarodes. Samples in this study are labeled in color bars (blue, red and yellow). Each tip represents a cluster of all samples that are within 2.5% genetic distance from each other, the length of the grey bar represents the number of individual samples falling into the cluster. Numbers after the dots enumerate the number of samples that fall into a particular sequence type. All named individual samples are labeled. The genus Ahamus as designated by Zou et al. (2010) is labeled.

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Figure 1 from: Wang Z, Zhuang H, Wang M, Pierce NE (2019) Thitarodes shambalaensis sp. nov. (Lepidoptera, Hepialidae): a new host of the caterpillar fungus Ophiocordyceps sinensis supported by genome-wide SNP data. ZooKeys 885: 89-113. https://doi.org/10.3897/zookeys.885.34638

Figure 1 Thitarodes shambalaensis sp. nov. A holotype, male, dorsal view B paratype, female, dorsal view C holotype, male, ventral view D paratype, female, dorsal view E resting position in habitat (photograph credit Hua Zhang). Scale bar: 1 cm.

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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>

opennotspecifiedJul 2024View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record