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.
33
datasets available to search
ShareScore release 0.9.0
Dataset results
33 results for “Trichoderma harzianum”
Figure 4 in Influence of Trichoderma harzianum and Bacillus thuringiensis with reducing rates of NPK on growth, physiology, and fruit quality of Citrus aurantifolia
Figure 4. Effect of two biofertilizers mixing with different level of NPK on leaf TSS content of Key lemon (Limau nipis). Error bars indicates ±SE. Different letters in the bar graph represent the statistically significant at 5% level. T0, control; T1, NPK 100% (100 g); T2, T. harzianum 50% (5g) + NPK 50%; T3, B. thuringiensis 50% (5g) + NPK 50%; T4, T. harzianum 75% (7.5g) + NPK 25%; T5, B. thuringiensis 75% (7.5 g) + NPK 25%, T6, 100% T. harzianum (10 g); T7, 100% B. thuringiensis (10 g).
Figure 5 in Influence of Trichoderma harzianum and Bacillus thuringiensis with reducing rates of NPK on growth, physiology, and fruit quality of Citrus aurantifolia
Figure 5. Effect of two biofertilizers mixing with different level of NPK on fruit TSS content of Key lemon (Limau nips). Error bars indicates ±SE. Different letters in the bar graph represent the statistically significant at 5% level. T0, control; T1, NPK 100% (100 g); T2, T. harzianum 50% (5g) + NPK 50%; T3, B. thuringiensis 50% (5g) + NPK 50%; T4, T. harzianum 75% (7.5g) + NPK 25%; T5, B. thuringiensis 75% (7.5 g) + NPK 25%, T6, 100% T. harzianum (10 g); T7, 100% B. thuringiensis (10 g).
Figure 1 in Influence of Trichoderma harzianum and Bacillus thuringiensis with reducing rates of NPK on growth, physiology, and fruit quality of Citrus aurantifolia
Figure 1. Effect of two biofertilizers mixing with different level of NPK on specific leaf area of limau nipis. Error bars indicate ± S. E. Different small case letters in mean value bars represent statistical difference at 5% level. T0, control; T1, NPK 100% (100 g); T2, T. harzianum 50% (5g) + NPK 50%; T3,B. thuringiensis 50% (5g) + NPK 50%; T4, T. harzianum 75% (7.5g) + NPK 25%; T5, B. thuringiensis 75% (7.5 g) + NPK 25%, T6, 100% T. harzianum (10 g); T7, 100% B. thuringiensis (10 g).
FIGURE 7 in Seven new species of Trichoderma (Hypocreales) in the Harzianum and Strictipile clades
FIGURE 7. Trichoderma tenue (HMAS 273785). a–c. Cultures at 25 C (a. CMD, 9 d; b. PDA, 12 d; c. SNA, 12 d). d. Conidiation tufts (PDA, 12 d). e–j. Conidiophores (CMD, 6 d). k. Conidia (CMD, 6 d). Scale bars: a–c = 20 mm; d = 1 mm; e–j = 20 μm; k = 10 μm.
FIGURE 5 in Seven new species of Trichoderma (Hypocreales) in the Harzianum and Strictipile clades
FIGURE 5. Trichoderma perviride (HMAS 273786). a–c. Cultures after 13 d at 25 C (a. CMD, b. PDA, c. SNA). d–i. Conidiophores (CMD, 4 d). j. Conidia (CMD, 4 d). Scale bars: a–c = 20 mm; d–i = 20 μm; j = 10 μm.
FIGURE 8 in Seven new species of Trichoderma (Hypocreales) in the Harzianum and Strictipile clades
FIGURE 8. Trichoderma viridulum (HMAS 273865). a−c. Cultures after 7 d at 25 C (a. CMD; b. PDA; c. SNA). d–i. Conidiophores and phialides (SNA, 7 d). j. Conidia (SNA, 7 d). Scale bars: a–c = 20 mm; d, e, i = 20 μm; f–h, j = 10 μm.
FIGURE 2 in Seven new species of Trichoderma (Hypocreales) in the Harzianum and Strictipile clades
FIGURE 2. Trichoderma angustum (HMAS 273784). a−c. Cultures after 14 d at 25 C (a. CMD; b. PDA; c. SNA). d. Conidiation pustules (SNA, 16 d). e–j. Conidiophores and phialides (e–h. SNA, 14 d; i, j. CMD, 9 d); k. Chlamydospores (SNA, 14 d); l. Conidia (SNA, 14 d). Scale bars: a–c = 20 mm; d = 400 μm; e–k = 20 μm; l = 5 μm.
FIGURE 1 in Seven new species of Trichoderma (Hypocreales) in the Harzianum and Strictipile clades
FIGURE 1. Maximum parsimony phylogram reconstructed from the combined sequences of RPB2 and TEF1-α. MPBP (left) above 50% and BIPP (right) above 90% are indicated at the nodes. New species proposed are indicated in boldface. TreeBASE no. S19229.
FIGURE 6 in Seven new species of Trichoderma (Hypocreales) in the Harzianum and Strictipile clades
FIGURE 6. Trichoderma purpureum (HMAS 273787). a–e. Stromata on nature substrate. f. Rehydrated mature stroma; g. Rehydrated stroma in 3% KOH. h. Longitudinal section of a stroma. i. Perithecium in section. j. Cortical and subcortical tissue in section. k. Subperithecial tissue in section. l. Stroma base in section. m. Ascus with part-ascospores. Scale bars: a = 2 mm; b, c = 1 mm; d–g = 0.4 mm; h = 200 μm; i = 50 μm; j–l = 20 μm; m = 5 μm.
FIGURE 4 in Seven new species of Trichoderma (Hypocreales) in the Harzianum and Strictipile clades
FIGURE 4. Trichoderma globoides (HMAS 248747). a–c. Cultures after 13 d at 25 C (a. CMD, b. PDA, c. SNA). d–k. Conidiophores (SNA, 5 d). l. Conidia (CMD, 5 d). Scale bars: a–c = 20 mm; d–f, j, k = 20 μm; g–i, l= 10 μm.
FIGURE 3 in Seven new species of Trichoderma (Hypocreales) in the Harzianum and Strictipile clades
FIGURE 3. Trichoderma crystalligenum (HMAS 273783). a–e. Stromata on nature substrate. f. Rehydrated mature stroma; g. Rehydrated stroma in 3% KOH. h. Perithecium in section. i. Cortical and subcortical tissue in section. j. Subperithecial tissue in section. k. Stroma base in section. l, m. Portion of ascus with part-ascospores. n–p. Cultures at 25 C (n. CMD, 25 d; o. PDA, 14 d; p. SNA, 17 d). q–u. Conidiophores (SNA, 20 d). v. Crystals in agar (CMD, 30 d). w: Chlamydospores (SNA, 20 d); x. Conidia (SNA, 20 d). Scale bars: a, d, f, g = 400 μm; b = 1 mm; c = 500 μm; e = 200 μm; h = 50 μm; i–k, w = 20 μm; l, m, s–u = 5 μm; n–p = 20 mm; q, r, x = 10 μm; v = 100 μm.
FIGURE 4. Trichoderma subalni. a–c in New species of Trichoderma in the Harzianum, Longibrachiatum and Viride clades
FIGURE 4. Trichoderma subalni. a–c Stromata on natural substrate. d Perithecium in section. e Cortical and subcortical tissues in section. f Subperithecial tissue and stroma base in section. g Ascus. h–j Cultures after 6 days at 25 °C (h CMD, i PDA, j SNA). k–o Conidiophores (SNA, 4 days). p Conidia (SNA, 4 days). Bars: a–c, h–j = 10 mm, d, f = 50 μm, e, k–n = 20 μm, g, o, p = 10 μm.
FIGURE 3. Trichoderma rugosum. a–d in New species of Trichoderma in the Harzianum, Longibrachiatum and Viride clades
FIGURE 3. Trichoderma rugosum. a–d Stromata on natural substrate. e Perithecium in section. f Cortical and subcortical tissues in section. g Subperithecial tissue in section. h Stroma base in section. i Ascus. j–l Cultures after 14 days at 25 °C (j CMD, k PDA, l SNA). m–p Conidiophores (CMD, 4 days). q Chlamydospores. r Conidia (CMD, 4 days). Bars: a–d = 1 mm, e = 50 μm, f–h, m–q = 20 μm, j–l = 10 mm, i, r = 10 μm.
FIGURE 2 in New species of Trichoderma in the Harzianum, Longibrachiatum and Viride clades
FIGURE 2. Trichoderma acremonioides (HMAS254566). a–d Stromata on natural substrate. e Stroma after rehydration. f Rehydrated stroma in 3% KOH. g Perithecium in section. h Cortical and subcortical tissues in section. i Subperithecial tissue in section. j Stroma base in section. k Ascus. l–n Cultures after 6 days at 25 °C (l CMD, m PDA, n SNA). o–r Conidiophores (CMD, 6 days). s Conidia (SNA, 13 days). Bars: a, b, d = 2 mm, c, e, f = 500 μm, g = 50 μm, h–k, o–r = 20 μm, l–n = 10 mm; s = 10 μm.
FIGURE 1. Maximum parsimony reconstructed from the combined sequences RPB2 and TEF1 in New species of Trichoderma in the Harzianum, Longibrachiatum and Viride clades
FIGURE 1. Maximum parsimony reconstructed from the combined sequences RPB2 and TEF1, with the newly described species displayed in boldface. MPBP above 50% (left) and BIPP above 90% (right) are given at the nodes.
Culture performance, gene marker, and transcriptome data for fungal isolates (Chalara longipes, Laccaria bicolor, Serpula lacrymans, and Trichoderma harzianum)
Open the record for dataset details and reuse information.
Transcriptome and Metabolome Reprogramming in Tomato Plants by Trichoderma Harzianum strain T22 Primes and Enhances Defense Responses Against Aphids
<p><strong>Figure 1</strong></p> <p>Effect of <em>T. harzianum</em> T22 on aphid survival over time. Survival curves (percentage) of <em>M. euphorbiae</em> reared on the untreated water control and the <em>T. harzianum</em> T22 treated tomato plants are significantly different, <em>p</em> < 0.05 (LogRank test).</p> <p>For the aphid longevity assay, 10 plants for each CTRL or T22 treatment were infested with 5 newly born first instar nymphs of <em>M. euphorbiae</em>. The presence of aphids and of shed exuviae, as an indicator of molting occurrence, was daily monitored. Survival curves were compared by LogRank analysis.</p>
Supplementary material 3 from: Gu X, Wang R, Sun Q, Wu B, Sun J-Z (2020) Four new species of Trichoderma in the Harzianum clade from northern China. MycoKeys 73: 109-132. https://doi.org/10.3897/mycokeys.73.51424
Figure S3
Supplementary material 1 from: Gu X, Wang R, Sun Q, Wu B, Sun J-Z (2020) Four new species of Trichoderma in the Harzianum clade from northern China. MycoKeys 73: 109-132. https://doi.org/10.3897/mycokeys.73.51424
Figure S1
Figure 1 from: Gu X, Wang R, Sun Q, Wu B, Sun J-Z (2020) Four new species of Trichoderma in the Harzianum clade from northern China. MycoKeys 73: 109-132. https://doi.org/10.3897/mycokeys.73.51424
Figure 1 Phylogenetic tree based on Maximum Likelihood analysis of a combined ITS, RPB2, and TEF1α sequence dataset. Trichoderma estonicum, Trichoderm parastinicum, Trichoderm ceramicum were chosen as the outgroup. Bootstrap Values higher than 70% from RAxML (BSML) (left) and Bayesian posterior probabilities greater than 0.95 (BYPP) (right) are given above the nodes. T indicates the type; ET indicates the ex-living type. Isolates obtained in this study are in red.
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.