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260 results for “Tuber”
FIG. 5 in Typification of the four most investigated and valuable truffles: Tuber aestivum Vittad., T. borchii Vittad., T. magnatum Picco and T. melanosporum Vittad.
FIG. 5. — Cross sections of peridia, asci and spores A, B, Tuber aestivum epitype; C, D, T. borchii epitype; E, F, T. magnatum neotype; G, H, T. melanosporum epitype. Scales bars A, C, E, G, 50 µm; B, D, F, H, 20 µm.
FIG. 4 in Typification of the four most investigated and valuable truffles: Tuber aestivum Vittad., T. borchii Vittad., T. magnatum Picco and T. melanosporum Vittad.
FIG. 4. — Ascomata of A) epitype of Tuber aestivum Vittad. (AQUI 10150); B) epitype of T. borchii Vittad. (AQUI 10151); neotype of T. magnatum Vittad (TO HG3458); epitype of T. melanosporum Vittad. (AQUI 10152). Scales bars: 1 cm.
APPENDIX 4 in Typification of the four most investigated and valuable truffles: Tuber aestivum Vittad., T. borchii Vittad., T. magnatum Picco and T. melanosporum Vittad.
APPENDIX 4. — Lectotype of Tuber griseum Borch ex Pers.sanct.Fries (1823), "Truffe grise" De Borch (1780 1st figure).
FIG. 3. — Table II in Typification of the four most investigated and valuable truffles: Tuber aestivum Vittad., T. borchii Vittad., T. magnatum Picco and T. melanosporum Vittad.
FIG. 3. — Table II, lectotypes of Tuber melanosporum Vittad. (red arrowed) and Tuber aestivum Vittad. (black arrowed).
FIG. 1 in Typification of the four most investigated and valuable truffles: Tuber aestivum Vittad., T. borchii Vittad., T. magnatum Picco and T. melanosporum Vittad.
FIG. 1. — Maximum likelihood tree obtained from the alignment of ITS nuclear rDNA region sequences showing relationships among Tuber taxa and types. Sequences obtained during this study are indicated in bold. Bootstrap values ≥ 70% are indicated on the nodes of branches. The scale indicates the number of substitutions per site. Pithya vulgaris Fuckel was included as outgroup.
APPENDIX 1 in Typification of the four most investigated and valuable truffles: Tuber aestivum Vittad., T. borchii Vittad., T. magnatum Picco and T. melanosporum Vittad.
APPENDIX 1. — Surface of an ascoma of Tuber aestivum Vittad. showing transverse streaks in peridium warts.
APPENDIX 3 in Typification of the four most investigated and valuable truffles: Tuber aestivum Vittad., T. borchii Vittad., T. magnatum Picco and T. melanosporum Vittad.
APPENDIX 3. — Wulfen's description of Lycoperdon aestivum basionym of Rhizopogon aestivus (Wulfen) Fr.(1823) and Tuber aestivum (Wulfen) Spreng. (1827).
A Placebo-controlled Study of Efficacy & Safety of 2 Trough-ranges of Everolimus as Adjunctive Therapy in Patients With Tuberous Sclerosis Complex (TSC) & Refractory Partial-onset Seizures
ClinicalTrials.gov study NCT01713946. IPD Sharing: YES. Countries: 25. Publications: 3.
Weighted stick – tool for digging up tubers
Weighted stick – tool for digging up tubers and roots ID no.: 18765/MEK Museum: The Seweryn Udziela Ethnographic Museum in Kraków https://muzea.malopolska.pl/en/objects-list/1501 Digitalisation: RDW MIC, Virtual Małopolska project Source: Objaverse 1.0 / Sketchfab
Supplementary data: Effect of genotype by environment interaction (GEI) analysis for potato tuber yield and their quality traits in organic multi-environment domains of Poland
<p>Climate and raw data supplementary to the related publication in the journal Agriculture (ISSN 2077-0472).</p>
TUBERS - Ultrasonic and Synthetic Crack Datasets
Open the record for dataset details and reuse information.
Figure 6 in Green synthesis of gold nanaoparticles using Delphinium Chitralense tuber extracts, their characterization and enzyme inhibitory potential
Figure 6. Comparative %age inhibition of AChE by Au NPs, crud extract and allanzanthane.
Figure 5 in Green synthesis of gold nanaoparticles using Delphinium Chitralense tuber extracts, their characterization and enzyme inhibitory potential
Figure 5. UV-Visible spectra of green synthesized gold nanoparticles.
Figure 7 in Green synthesis of gold nanaoparticles using Delphinium Chitralense tuber extracts, their characterization and enzyme inhibitory potential
Figure 7. Comparative %age inhibition of BChE by Au NPs, crude extract and Allanzanthane.
Figure 2 in Green synthesis of gold nanaoparticles using Delphinium Chitralense tuber extracts, their characterization and enzyme inhibitory potential
Figure 2. TEM images of green synthesized Au NPs at different magnifications.
Figure 1 in Green synthesis of gold nanaoparticles using Delphinium Chitralense tuber extracts, their characterization and enzyme inhibitory potential
Figure 1. SEM images of green synthesized of Au NPs at different magnifications.
Figure 3 in Green synthesis of gold nanaoparticles using Delphinium Chitralense tuber extracts, their characterization and enzyme inhibitory potential
Figure 3. FTIR spectrum of green synthesized gold nanoparticles.
APPENDIX 3 in Typification of the four most investigated and valuable truffles: Tuber aestivum Vittad., T. borchii Vittad., T. magnatum Picco and T. melanosporum Vittad.
APPENDIX 3. — Continuation.
FIG. 2. — Table I in Typification of the four most investigated and valuable truffles: Tuber aestivum Vittad., T. borchii Vittad., T. magnatum Picco and T. melanosporum Vittad.
FIG. 2. — Table I (XX),lectotype of Tuber borchii Vittad.(red arrowed).
APPENDIX 3 in Typification of the four most investigated and valuable truffles: Tuber aestivum Vittad., T. borchii Vittad., T. magnatum Picco and T. melanosporum Vittad.
APPENDIX 3. — Continuation.
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