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698 results for “Soybean”
Figure 1 in Diversity of entomopathogenic fungi from soils of eucalyptus and soybean crops and natural forest areas
Figure 1. Entomopathogenic fungi of the genera Aspergillus (A), Beauveria (B), Cordyceps (C), Fusarium (D), Metarhizium (E), Penicillium (F) and Purpureocillium (G) cultivated in Petri dishes with PDA medium.
Figure 4 in Replacement level of rubber seed cake for soybean meal on the growth of Japanese quail
Figure 4. Survivability (%) of the growing quail under different dietary treatments (D , D , D , D and D = Treatments, see Table 1).
Figure 6 in Replacement level of rubber seed cake for soybean meal on the growth of Japanese quail
Figure 6. Regression for the equation of, y = a + bx; where, y= feed intake, x= the inclusion rate of RS in the diet in place of soybean meal, and b= regression co-efficient and a= intercept. D0= Diet containing 20% soybean meal and 4% soybean oil (control diet), D1= Diet, where 12.5% of soybean meal and 25% of soybean oil has been replaced by RS; D2 = Diet, where 25% of soybean meal and 50% of soybean oil has been replaced by RS; D3 = Diet, where 37.5% of soybean meal and 75% of soybean oil has been replaced by RS; D4 = Diet, where 50% of soybean meal and 100% of soybean oil has been replaced by RS.
Fig. 2 in Egg parasitoids of stink bugs (Hemiptera: Coreidae and Pentatomidae) on soybean and cowpea in Brazil
Fig. 2. Map of the known occurrence of the stink bug parasitoids Trissolcus basalis, Tr. urichi, Tr. teretis, Tr. bodkini, Telenomus podisi, Phanuropsis semiflaviventris, Neorileya flavipes, Ooencyrtus anasae, and Anastatus sp. in Brazil.
Fig. 1 in Egg parasitoids of stink bugs (Hemiptera: Coreidae and Pentatomidae) on soybean and cowpea in Brazil
Fig. 1. Female, lateral view. (1) Trissolcus urichi, (2) Trissolcus teretis, (3) Telenomus podisi, (4) Trissolcus bodkini, (5) Phanuropsis semiflaviventris, (6) Neorileya flavipes, (7) Anastatus sp., (8) Ooencyrtus anasae.
Fig. 2 in Predation of stink bugs (Hemiptera: Pentatomidae) by a complex of predators in cotton and adjoining soybean habitats in Georgia, USA
Fig. 2. Least squares means (± SE) for number of stink bugs (species combined) and Orius insidiosus per 1.83 m length of row and percentage of predators positive for stink bug DNA in soybean and cotton by treatment. Within an insect group in a crop, treatment means with the same lowercase letter are not significantly different (Tukey's HSD, P> 0.05).
Fig. 4 in Predation of stink bugs (Hemiptera: Pentatomidae) by a complex of predators in cotton and adjoining soybean habitats in Georgia, USA
Fig. 4. Least squares means (± SE) for number of stink bugs (species combined) and Oxyopes salticus per 1.83 m length of row and percentage of predators positive for stink bug DNA in (A) soybean and cotton by treatment and (B) soybean and cotton by sampling week. Within an insect group in a crop, treatment or week means with the same lowercase letter are not significantly different (Tukey's HSD, P> 0.05). Only 1 Ox. salticus individual screened positive for stink bug (Nexara viridula) DNA in cotton. No predators were collected for PCR analyses in weeks 4 and 5 in cotton.
Fig. 6 in RNA interference mediated serine protease gene (Spbtry1) knockdown affects growth and mortality in the soybean pod borer (Lepidoptera: Olethreutidae)
Fig. 6. The mortality of the larvae feed on an artficial diet with added dsRNA. (*Student's t-test, n = 3, P <0.05; **Student's t-test, n = 3, P <0.01).
Fig. 4 in RNA interference mediated serine protease gene (Spbtry1) knockdown affects growth and mortality in the soybean pod borer (Lepidoptera: Olethreutidae)
Fig. 4. Relatve trypsin gene (Spbtry1) expression levels as determined by qPCR at different tme points. Actn was used as an internal reference gene. (*Student's t-test, n = 3, P <0.05; **Student's t-test, n = 3, P <0.01).
Fig. 5 in RNA interference mediated serine protease gene (Spbtry1) knockdown affects growth and mortality in the soybean pod borer (Lepidoptera: Olethreutidae)
Fig. 5. Effect of Spbtry1 RNAi on Leguminivora glycinivorella larval development. (A) The body weight of larvae fed on an artficial diet with added dsRNA at different tme points. (B) Pictures of the larvae showing reduced body size and developmental stage afer 15 days on an artficial diet with added dsRNA. (*Student's t-test, n = 3, P <0.05; **Student's t-test, n = 3, P <0.01).
Fig. 3. A in RNA interference mediated serine protease gene (Spbtry1) knockdown affects growth and mortality in the soybean pod borer (Lepidoptera: Olethreutidae)
Fig. 3. A) Relatve Spbtry1 gene expression levels was determined by qPCR (histograms) and RT-PCR (gel pictures) in the synganglion (SY), cutcle (CU), salivary (SA), midgut (MG), ovary (OV), tests (TE), and fat body (FT) in the 3rd instar soybean pod borer larvae. Actn was used as an internal reference gene. (B) Relatve trypsin gene (Spbtry1) expression levels as determined by qPCR (histograms) and RT-PCR (gel pictures) in soybean pod borer eggs (EG), 1st (N1), 2nd (N2), 3rd (N3), 4th (N4) instar larvae and pupae (PU), and adults (AD). Actn was used as an internal reference gene. Relatve Spbtry1 gene expression was analyzed by MJ Optcon Monitor Sofware Version 3.1.
Fig. 2 in RNA interference mediated serine protease gene (Spbtry1) knockdown affects growth and mortality in the soybean pod borer (Lepidoptera: Olethreutidae)
Fig. 2. Phylogenetc tree analysis of Spbtry1 and 13 homologues of other lepidopteran trypsin- and chymotrypsin-like serine proteases. The phylogenetc tree analysis was performed using the neighbor-joining algorithm to estmate evolutonary distances in MEGA 6.method at a gap penalty of 10, a gap length penalty of 0.2, and a bootstrap value of 1,000 iteratons.
Fig. 5 in Evaluating categories of resistance in soybean genotypes from the United States and Brazil to Aphis glycines (Hemiptera: Aphididae)
Fig. 5. Mortality (%) of Aphis glycines on 7 soybean genotypes at 5, 7, and 10 d afer infestation (23 ± 3 °C; 60 ± 10% RH; 16:8 h L:D photoperiod).
Fig. 1. A in Parasitism of Megacopta cribraria (Hemiptera: Plataspidae) by Paratelenomus saccharalis (Hymenoptera: Platygastridae) in organic soybean plots in Georgia, USA
Fig. 1. A) Density of Megacopta cribraria egg masses (mean ± SE) in organic soybean in 2013. Means with the same lowercase letter are not significantly different between treatments per week, and means with the same uppercase letter are not significantly different among weeks per treatment (Tukey's HSD test, P> 0.05). B) Percentage of parasitism (mean ± SE) of M. cribraria egg masses by Paratelenomus saccharalis over time in organic soybean in 2013. Means with the same uppercase letter are not significantly different (Tukey's HSD test, P> 0.05).
Fig. 4 in Evaluating categories of resistance in soybean genotypes from the United States and Brazil to Aphis glycines (Hemiptera: Aphididae)
Fig. 4. Cumulative aphid-days (CAD) for soybean genotypes infested with Aphis glycines at V1 and V3 stages (23 ± 3 °C; 60 ± 10% RH; 16:8 h L:D photoperiod).
Fig. 3 in Evaluating categories of resistance in soybean genotypes from the United States and Brazil to Aphis glycines (Hemiptera: Aphididae)
Fig. 3. Number (mean ± SE) of Aphis glycines individuals on 7 soybean genotypes 24 h afer infestation (23 ± 3 °C; 60 ± 10% RH; 16:8 h L:D photoperiod). Means with the same lower case letter do not differ by Fisher's LSD test (P> 0.05). (F = 1.74; df = 6; P = 0.0110).
Fig. 2 in Evaluating categories of resistance in soybean genotypes from the United States and Brazil to Aphis glycines (Hemiptera: Aphididae)
Fig. 2. Number (mean ± SE) of Aphis glycines individuals on KS4202 plants 24 h afer infestation (23 ± 3 °C; 60 ± 10% RH; 16:8 h L:D photoperiod). Means with the same lower case letter do not differ by Fisher's LSD test (P> 0.05). (F = 1.09; df = 6; P = 0.3897).
Fig. 1 in First report of the soybean pest Euschistus quadrator (Hemiptera: Pentatomidae) in Mississippi
Fig. 1. Euschistus quadrator dorsal view (lef) showing spines on the pronotum and ventral view (right). Specimen photographed by Michael Grodowitz and con- firmed as Euschistus quadrator Rolston by Joseph Eger, Tampa, Florida.
Fig. 2 in Tolerance of KS-4202 soybean to the attack of Bemisia tabaci biotype B (Hemiptera: Aleyrodidae)
Fig. 2. Comparison of the percentages of reducton in productvity between KS-4202 and Conquista for each pattern of Bemisia tabaci biotype B infestaton. The means of the columns labeled with the same letter for each pattern of infestaton do not differ according to Tukey's test (P> 0.05); ns = not significant. From the lef, the columns represent the treatments as follows: infested with no chemical control (F = 0.45; df = 3; P = 0.5507), infested and sprayed at 15 DAI (F = 17.65; df = 3; P = 0.0246), infested and sprayed at 30 DAI (F = 4.99; df = 3; P = 0.1116), infested and sprayed at 45 DAI (F = 20.21; df = 3; P = 0.0205), and infested and sprayed at 60 DAI (F = 4.53; df = 3; P= 0.1231). DAI = days afer infestaton.
Fig. 1 in Tolerance of KS-4202 soybean to the attack of Bemisia tabaci biotype B (Hemiptera: Aleyrodidae)
Fig. 1. Mean number of live Bemisia tabaci biotype B nymphs per cm2 for the KS-4202 and Conquista genotypes for each pattern of infestaton at 5 periods of evaluaton.
ScienceDex guides
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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.