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42 results for “Suillus”

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zenodo40/100

Linked collectors and determiners for: Suillus kovalenkoi (Boletales, Agaricomycetes), a new Larix-associated species from North Asia.

Natural history specimen data linked to collectors and determiners held within, "Suillus kovalenkoi (Boletales, Agaricomycetes), a new Larix-associated species from North Asia". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/5e2d1104-a25f-40ab-8a99-d8426a27b65e">https://bionomia.net/dataset/5e2d1104-a25f-40ab-8a99-d8426a27b65e</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/5e2d1104-a25f-40ab-8a99-d8426a27b65e">https://gbif.org/dataset/5e2d1104-a25f-40ab-8a99-d8426a27b65e</a>. Formatted as a Frictionless Data package.

opencc-zeroJan 2024View details →
zenodo40/100

Fig. 3 in Bathyergus suillus (Rodentia: Bathyergidae)

Fig. 3.—Geographical distribution of Bathyergus suillus in South Africa. Map redrawn with modifications from Bennett and Faulkes (2000).

opencc-by-4.0Mar 2009View details →
zenodo40/100

Fig. 2 in Bathyergus suillus (Rodentia: Bathyergidae)

Fig. 2.—Dorsal, ventral, and lateral views of cranium and lateral view of mandible of an adult male Bathyergus suillus (body mass: 1,416 g) from Cape Town International Airport, Western Cape Province, South Africa (33u589S, 18u379E). Greatest length of cranium is 84.0 mm. Used with the permission of the photographer C. Faulkes.

opencc-by-4.0Mar 2009View details →
zenodo40/100

Fig. 1 in Bathyergus suillus (Rodentia: Bathyergidae)

Fig. 1.—An adult male Cape dune mole-rat (Bathyergus suillus) from Cape Town, South Africa. Used with the permission of the photographer J. Jarvis.

opencc-by-4.0Mar 2009View details →
dryad36/100

Data from: Continental-level population differentiation and environmental adaptation in the mushroom Suillus brevipes

Recent advancements in sequencing technology allowed researchers to better address the patterns and mechanisms involved in microbial environmental adaptation at large spatial scales. Here we investigated the genomic basis of adaptation to climate at the continental scale in Suillus brevipes, an ectomycorrhizal fungus symbiotically associated with the roots of pine trees. We used genomic data from 55 individuals in seven locations across North America to perform genome scans to detect signatures of positive selection and assess whether temperature and precipitation were associated with genetic differentiation. We found that S. brevipes exhibited overall strong population differentiation, with potential admixture in Canadian populations. This species also displayed genomic signatures of positive selection as well as genomic sites significantly associated with distinct climatic regimes and abiotic environmental parameters. These genomic regions included genes involved in transmembrane transport of substances and helicase activity potentially involved in cold stress response. Our study sheds light on large-scale environmental adaptation in fungi by identifying putative adaptive genes and providing a framework to further investigate the genetic basis of fungal adaptation.

opencc-zeroDec 2015View details →
dryad36/100

Data from: Continental-level population differentiation and environmental adaptation in the mushroom Suillus brevipes

Open the record for dataset details and reuse information.

publicOct 2016View details →
dryad32/100

Transcriptional acclimation and spatial differentiation characterize drought response by the ectomycorrhizal fungus Suillus pungens

<ul> <li>Changing precipitation regimes are a challenge for forest health under future climate scenarios. If belowground symbionts can acclimate to changing moisture regimes it may buffer forest trees from these changes.</li> <li>In this study we exposed the ectomycorrhizal fungus <i>Suillus pungens</i> to acute and chronic drought stress and used RNASeq of both ectomycorrhizal roots and extraradical mycelium to gauge the magnitude of stress, identify key genes involved in drought response, and gauge potential ecosystem consequences of drought.</li> <li>We found that there were major transcriptional differences for <i>S. pungens</i> in ectomycorrhizal roots (28% of genes) and extraradical mycelium (41% of genes) under acute drought stress, but only 0.1-2% of genes were differentially expressed in chronic drought treatments. Up to 56% of differentially expressed genes under acute drought were unique to either roots or mycelium. While a number of implicated genes, such as those encoding for trehalose, have well-known roles in osmotic stress, others, such as fungal hydrophobins and atromentin, have received less study and may also impact other ecosystem functions.</li> <li>These results suggest that functional compartmentalization is key to ectomycorrhizal fungal adaptation to stressful climatic conditions and there is high potential for fungal acclimation to ameliorate future climate stress.  </li> </ul>

opencc-zeroNov 2021View details →
zenodo32/100

FIGURE 2. Optimal phylogenetic tree from Maximum Likelihood analyses for the nrITS1–5.8S–ITS2 in Morphology and molecular data of the species of Suillus (Suillaceae, Boletales) associated with Pinus sibirica at the European northeast of Russia

FIGURE 2. Optimal phylogenetic tree from Maximum Likelihood analyses for the nrITS1–5.8S–ITS2 Suillus data. Bootstrap values (BS ≥ 70%) is added to the left of a node as follows: nearest neighbour method / maximum likelihood method. Scale bar indicates expected changes per site. New sequences from the Komi Republic are marked with red blocks. The specimen GenBank accession numbers in parentheses follows the names.

opennotspecifiedMar 2021View details →
zenodo32/100

FIGURE 4 in Morphology and molecular data of the species of Suillus (Suillaceae, Boletales) associated with Pinus sibirica at the European northeast of Russia

FIGURE 4. Basidiocarps and elements of pileipellis. a, b Suillus punctipes (SYKOf 2598). c, d Suillus plorans (SYKOf 2666). e, f Suillus plorans ssp. cyanescens (SYKOf 3006). Scale bars a, c, e—2 сm; b, d, f—50 μm. Images: Marina Palamarchuk.

opennotspecifiedMar 2021View details →
zenodo32/100

FIGURE 3. Basidiocarps. a in Morphology and molecular data of the species of Suillus (Suillaceae, Boletales) associated with Pinus sibirica at the European northeast of Russia

FIGURE 3. Basidiocarps. a Suillus acidus var. intermedius (SYKOf 1854). b S. acidus var. intermedius (SYKOf 2531). c S. placidus (SYKOf 2664). d S. placidus (SYKOf 2665). e S. sibiricus (SYKOf 2663), f S. sibiricus (SYKOf 2521). Scale bars 2 сm. Images: Marina Palamarchuk.

opennotspecifiedMar 2021View details →
zenodo32/100

On following pages: 2. Northern White-breasted Hedgehog (Erinaceus roumanicus); 3. Southern White-breasted algirus); 6. Fourtoed Hedgehog (Atelerix albiventris); 7. Somali Hedgehog (Atelerix sclateri); 8. Southern African Hedgehog hypomelas); 11. Indian Hedgehog (Paraechinus micropus); 12. Bare-bellied Hedgehog (Paraechinus nudiventris); 13 collaris); 15. Wang's Forest Hedgehog (Mesechinus wangi): 16. Small-toothed Forest Hedgehog (Mesechinus miodon Gymnure (Hylomys megalotis); 20. Dwarf Gymnure (Hylomys parvus); 21. Short-tailed Gymnure (Hylomys suillus (Neohylomys hainanensis); 25. Mindanao Gymnure (Podogymnura true); 26. Dinagat Gymnure (Podogymnura aureospinula Hedgehog (Erinaceus concolon; 4. Amur Hedgehog (Erinaceus amurensis); 5. North African Hedgehog (Atelerix (Atelerix frontalis); 9. Desert Hedgehog (Paraechinus aethiopicus); 10. Brandt's Hedgehog (Paraechinus. Common Long-eared Hedgehog (Hemiechinus auritus); 14. Indian Long-eared Hedgehog (Hemiechinus); 17. Daurian Hedgehog (Mesechinus dauuricus); 18. Hugh's Hedgehog (Mesechinus hughi); 19. Long-eared); 22. Moonrat (Echinosorex gymnurus); 23. Shrew Gymnure (Neotetracus sinensis); 24. Hainan Gymnure). in Erinaceidae

On following pages: 2. Northern White-breasted Hedgehog (Erinaceus roumanicus); 3. Southern White-breasted algirus); 6. Fourtoed Hedgehog (Atelerix albiventris); 7. Somali Hedgehog (Atelerix sclateri); 8. Southern African Hedgehog hypomelas); 11. Indian Hedgehog (Paraechinus micropus); 12. Bare-bellied Hedgehog (Paraechinus nudiventris); 13 collaris); 15. Wang's Forest Hedgehog (Mesechinus wangi): 16. Small-toothed Forest Hedgehog (Mesechinus miodon Gymnure (Hylomys megalotis); 20. Dwarf Gymnure (Hylomys parvus); 21. Short-tailed Gymnure (Hylomys suillus (Neohylomys hainanensis); 25. Mindanao Gymnure (Podogymnura true); 26. Dinagat Gymnure (Podogymnura aureospinula Hedgehog (Erinaceus concolon; 4. Amur Hedgehog (Erinaceus amurensis); 5. North African Hedgehog (Atelerix (Atelerix frontalis); 9. Desert Hedgehog (Paraechinus aethiopicus); 10. Brandt's Hedgehog (Paraechinus. Common Long-eared Hedgehog (Hemiechinus auritus); 14. Indian Long-eared Hedgehog (Hemiechinus); 17. Daurian Hedgehog (Mesechinus dauuricus); 18. Hugh's Hedgehog (Mesechinus hughi); 19. Long-eared); 22. Moonrat (Echinosorex gymnurus); 23. Shrew Gymnure (Neotetracus sinensis); 24. Hainan Gymnure).

opennotspecifiedJul 2018View details →
zenodo32/100

FIGURE 4 in Suillus marginielevatus, a new species and S. triacicularis, a new record from Western Himalaya, Pakistan

FIGURE 4. Phylogenetic position of Suillus marginielevatus from Pakistan with respect to other Suillus spp. Tree inferred by maximum likelihood analysis based on rDNA sequences, including 5.8S and ITS2. Rhizopogon luteolus was used as outgroup. The numbers against branches indicate the percentage (&gt;50%) at which a given branch was supported in 1000 bootstrap replications. GenBank accession number are given at the end of species names. ■ indicate species reported from Pakistan. Illustrator: Samina Sarwar (Corresponding author)

opennotspecifiedMar 2015View details →
zenodo32/100

FIGURE 1 in Suillus marginielevatus, a new species and S. triacicularis, a new record from Western Himalaya, Pakistan

FIGURE 1. Suillus marginielevatus: (A–G) Fresh basidiocarps showing curved stipe and pileus with uplifted margins, (G) showing stipe with glandular dots on upper half. Bars: A–G = 2 cm. Illustrator &amp; Photographer: Samina Sarwar (Corresponding Author)

opennotspecifiedMar 2015View details →
zenodo32/100

FIGURE 3 in Suillus marginielevatus, a new species and S. triacicularis, a new record from Western Himalaya, Pakistan

FIGURE 3. Suillus triacicularis: (A–B) Basidiocarp (C) Basidia (D) Caulocystidia (E) Basidiospores (F) Pleurocystidia (G) Cheilocystidia. Bars: A–B = 1.5 mm; C = 8 μm; D = 15 μm; E= 3.5 μm; F &amp; G = 15 μm. Illustrator &amp; Photographer: Malka Saba (Co-Author)

opennotspecifiedMar 2015View details →
zenodo32/100

FIGURE 2 in Suillus marginielevatus, a new species and S. triacicularis, a new record from Western Himalaya, Pakistan

FIGURE 2. Suillus marginielevatus: (A) Basidia. (B) Cystidia with basidia. (C) Pleurocystidia, (D) Cheilocystidia, (E) Basidiospores, Bars: (A) = 6 μm, (B) = 6 μm, (C) = 23 μm, (D) = 14 μm (E) = 8 μm. Illustrator &amp; Photographer: Samina Sarwar (Corresponding Author)

opennotspecifiedMar 2015View details →
zenodo32/100

FIGURE 3 in Suillus adhikarii, a new species from the subalpine Himalaya of India and Nepal associated with Larix

FIGURE 3. Suillus adhikarii (VC 1449) 30-day-old culture on Hagem's agar in a 9-cm-diam Petri plate. Dark reddish guttate droplet formed on colony.

opennotspecifiedJul 2015View details →
zenodo32/100

FIGURE 2 in Suillus adhikarii, a new species from the subalpine Himalaya of India and Nepal associated with Larix

FIGURE 2. Suillus adhikarii (KD 11-007) a. Basidiospores b–c. Caulocystidia d. Caulobasidia e. Tube basidia f. Radial section through pileipellis g. Pleuro- and cheilocystidia. Bars: a–g = 10 μm.

opennotspecifiedJul 2015View details →
zenodo32/100

FIGURE 1 in Suillus adhikarii, a new species from the subalpine Himalaya of India and Nepal associated with Larix

FIGURE 1. Suillus adhikarii (KD 11-007): a &amp; c. Fresh basidiomata in field b. Concolorous background color and reticulation of stipe above annulus d. Pore surface e. Compound pores (from dry material) f. Radial section through pileipellis g. Hymenial cystidia h. Basidiospores. Bars: e = 1000 μm, f = 50 μm, g–h = 10 μm.

opennotspecifiedJul 2015View details →
zenodo32/100

FIGURE 3 in Species clarification of the locally famous mushroom Suillus placidus from the south of China with description of S. huapi sp. nov.

FIGURE 3. Microscopic features of Suillus huapi (FHMU 837, holotype). a. Basidia. b. Basidiospores. c. Pleurocystidia. d. Cheilocystidia. e. Pileipellis. f. Stipitipellis. Bars = 10 μm. Drawings by R. Xue.

opennotspecifiedOct 2018View details →
zenodo32/100

FIGURE 2 in Species clarification of the locally famous mushroom Suillus placidus from the south of China with description of S. huapi sp. nov.

FIGURE 2. Basidiomata of Suillus huapi (a from FHMU 2805; b from FHMU 837, holotype; c from FHMU 838; d–f from FHMU 2806). Photos by N.K. Zeng.

opennotspecifiedOct 2018View details →

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