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37 results for “Panonychus”
FIGURES 8–14. Panonychus hadzhibejliae, female. 8 in Panonychus from Georgia: survey, taxonomical status and redescription of P. hadzhibejliae (Reck, 1947) (Acari, Tetranychidae)
FIGURES 8–14. Panonychus hadzhibejliae, female. 8, tarsus and tibia I; 9, tarsus and tibia II; 10, empodium and claws; 11, palpal tibia and tarsus; 12, variations in su eupathidium; 13, peritremal distal part; 14, anterogenital area. Scale bars = 20 µm (8, 9, 14), 10 µm (10–13).
FIGURES 5–7. Panonychus hadzhibejliae, female. 5 in Panonychus from Georgia: survey, taxonomical status and redescription of P. hadzhibejliae (Reck, 1947) (Acari, Tetranychidae)
FIGURES 5–7. Panonychus hadzhibejliae, female. 5, dorsal aspect; 6, lobes on dorsohysterosomal striae; 7, dorsal body seta (sc1). Scale bars = 25 µm (5), 10 µm (6), 20 µm (7).
FIGURE5. Panonychus caglei, female, A. leg I, B. leg II, C. leg III, D., leg IV, the red arrow refers to the excessive seta (l') observed on genu IV in few specimens. Right side. in -Redescription-of-Panonychus caglei Mellott,-1968,- with-ontogenetic-development- (Acari:-Tetranychidae)-
FIGURE5. Panonychus caglei, female, A. leg I, B. leg II, C. leg III, D., leg IV, the red arrow refers to the excessive seta (l') observed on genu IV in few specimens. Right side.
FIGURES2–4. Panonychus caglei, female, 2. peritremes, 3. palptarsus, 4. venter of posterior idiosoma. in -Redescription-of-Panonychus caglei Mellott,-1968,- with-ontogenetic-development- (Acari:-Tetranychidae)-
FIGURES2–4. Panonychus caglei, female, 2. peritremes, 3. palptarsus, 4. venter of posterior idiosoma.
FIGURE 2 in A new species of Panonychus (Acari: Tetranychidae) from Peru
FIGURE 2. Panonychus inca sp. nov. (female). A. Leg I; B. Leg II; C. Leg III; D. Leg IV.
Fig. 5 in Molecular cloning of heat shock protein gene HSP90 and effects of abamectin and double-stranded RNA on its expression in Panonychus citri (Trombidiformes: Tetranychidae)
Fig. 5. Relative expressional levels of HSP90 mRNA in P. citri adult females afer treatment at 32 °C with abamectin concentrations of LC25, LC50 and LC75 for the indicated times. Data are shown as means of 3 replicates ± SD. The relative expression level of HSP90 mRNA in the control group is equal to 1.0 and is marked with a dashed line. The asterisk above the bar indicates a significance difference between treatment with abamectin and control group (t-test, P <0.05).
Fig. 3 in Molecular cloning of heat shock protein gene HSP90 and effects of abamectin and double-stranded RNA on its expression in Panonychus citri (Trombidiformes: Tetranychidae)
Fig. 3. Relative expressional levels of HSP90 mRNA in P. citri adult females afer treatment with abamectin at LC25, LC50 and LC75levels for the indicated times at 18 °C.Data are shown as means of 3 replicates ± SD. The relative expression level of HSP90 mRNA in the control group is equal to 1.0 and is marked with a dashed line. The asterisk above the bar indicates a significance difference between treatment with abamectin and control group (t-test, P <0.05).
Fig. 1 in Molecular cloning of heat shock protein gene HSP90 and effects of abamectin and double-stranded RNA on its expression in Panonychus citri (Trombidiformes: Tetranychidae)
Fig. 1. The cDNA and deduced amino acid sequence of HSP90 of Panonychus citri adult females. The start and stop codons are boxed; the numbers on the lef are for the positions of nucleotides and amino acids in the sequences.
Fig. 7 in Molecular cloning of heat shock protein gene HSP90 and effects of abamectin and double-stranded RNA on its expression in Panonychus citri (Trombidiformes: Tetranychidae)
Fig. 7. Relative expressional levels of HSP90 mRNA in adult female P. citri Mc- Gregor afer treatment with dsRNA at concentrations equivalent to 0.1 µg/µL, 0.2 µg/µL and 0.4 µg/µL. Data are shown as means of 3 replicates ± SD. The relative expression level of HSP90 mRNA in the control group is equal to 1.0 and is marked with a dashed line. The asterisk above the bar indicates a significance difference between treatment with dsRNA and control group (t-test, P <0.05).
Fig. 4 in Molecular cloning of heat shock protein gene HSP90 and effects of abamectin and double-stranded RNA on its expression in Panonychus citri (Trombidiformes: Tetranychidae)
Fig. 4. Relative expressional levels of HSP90 mRNA in P. citri adult females afer treatment at 25 °C with abamectin concentrations of LC25, LC50 and LC75 for the indicated times. Data are shown as means of 3 replicates ± SD. The relative expression level of HSP90 mRNA in the control group is equal to 1.0 and is marked with a dashed line. The asterisk above the bar indicates a significance difference between treatment with abamectin and control group (t-test, P <0.05).
Fig. 6 in Molecular cloning of heat shock protein gene HSP90 and effects of abamectin and double-stranded RNA on its expression in Panonychus citri (Trombidiformes: Tetranychidae)
Fig. 6. Relative expressional levels of HSP90 mRNA in P. citri adult females subjected to 18 °C or 32 °C for the length of time indicated. Data are shown as means of 3 replicates ± SD. The relative expression level of HSP90 mRNA in the control group is equal to 1.0 and is marked with a dashed line. The asterisk above the bar indicates a significance difference between treatment with temperature and control group (t-test, P <0.05).
FIGURE 22 in Complementary description of Panonychus caricae Hatzinikolis, 1984, with the resurrection of the genus Sasanychus Ehara, 1978 (Acari, Prostigmata Tetranychidae)
FIGURE 22. Maximum likelihood tree based on the COI gene (618 bp) of mtDNA of 10 Panonychus and 2 Sasanychus species from the world using GTR+G model. Bootstrap values based on 1,000 replications are indicated at the nodes. Only bootstrap values>50% are shown. Each operational taxonomic unit is indicated by accession number, species, voucher specimen number and country of collection.
FIGURES 16–21 in Complementary description of Panonychus caricae Hatzinikolis, 1984, with the resurrection of the genus Sasanychus Ehara, 1978 (Acari, Prostigmata Tetranychidae)
FIGURES 16–21. Panonychus caricae, male—16. Leg III, right leg, dorsal to adaxial view, 17. Leg IV, right leg, dorsal to adaxial view, 18–21. Aedeagi (different specimens).
FIGURES 3–7 in Complementary description of Panonychus caricae Hatzinikolis, 1984, with the resurrection of the genus Sasanychus Ehara, 1978 (Acari, Prostigmata Tetranychidae)
FIGURES 3–7. Panonychus caricae, female—3. Stylophore and peritremes, 4. Distal ending of peritremes, 5. Palptarsus, 6. Genital flaps and pregenital areas, 7. Empodium of leg I.
Comparative analysis of the small RNA transcriptome of four developmental stages of the Citrus red mite (Panonychus citri)
GEO Series GSE48985. Panonychus citri. 4 samples. Type: Non-coding RNA profiling by high throughput sequencing.
Molecular and genetic analysis of resistance to METI-I acaricides in Iranian populations of the citrus red mite Panonychus citri
GEO Series GSE142139. Panonychus citri. 16 samples. Type: Expression profiling by high throughput sequencing.
FIGURES 1–2. Panonychus caricae, 1 in Complementary description of Panonychus caricae Hatzinikolis, 1984, with the resurrection of the genus Sasanychus Ehara, 1978 (Acari, Prostigmata Tetranychidae)
FIGURES 1–2. Panonychus caricae, 1. Female (dorsal view of the body), 2. Dorsal body seta.
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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.
Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.