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169 results for “soil mites”
Gopher-disturbed and undisturbed soil Oribatid mite data for Martinelli slope, 1988.
Soil cores were collected from undisturbed and pocket gopher (Thomomys talpoides) disturbed alpine tundra. Cores were split in half longitudinally with one half being used for extraction and identification of Oribatid mites. Disturbed soils included both old and fresh gopher mounds and all study sites were located on the Martinelli slope directly above the 25 permanent plots. The cores were collected in 1988.
Fig. 5 in Camerobiid mites (Acariformes: Raphignathina: Camerobiidae) inhabiting epiphytic bromeliads and soil litter of tropical dry forest with analysis of setal homology in the genus Neophyllobius
Fig. 5. Neophyllobius tepoztlanensis sp. nov., ♀, holotype. A. Palp. B. Subcapitulum. C. Dorsal idiosoma. D. Ventral idiosoma. E. Trochanter–tibia of leg I. F. Tarsus I.
Fig. 4 in Camerobiid mites (Acariformes: Raphignathina: Camerobiidae) inhabiting epiphytic bromeliads and soil litter of tropical dry forest with analysis of setal homology in the genus Neophyllobius
Fig. 4. Schematic tarsal setations of Neophyllobius cibyci sp. nov. A–D. ♀, holotype. A. Tarsus I. B. Tarsus II. C. Tarsus III. D. Tarsus IV. E–H. ♁, paratype (CNAC009238). E. Tarsus I. F. Tarsus II. G. Tarsus III. H. Tarsus IV. I–L. Protonymph, paratype (CNAC009241). I. Tarsus I. J. Tarsus II. K. Tarsus III. L. Tarsus IV. M–O. Larva, paratype (CNAC009242). M. Tarsus I. N. Tarsus II. O. Tarsus III.
Fig. 1 in Camerobiid mites (Acariformes: Raphignathina: Camerobiidae) inhabiting epiphytic bromeliads and soil litter of tropical dry forest with analysis of setal homology in the genus Neophyllobius
Fig. 1. Neophyllobius cibyci sp. nov., ♀, holotype. A. Palp. B. Subcapitulum. C. Dorsal idiosoma. D. Ventral idiosoma. E. Trochanter–tibia of leg I. F. Tarsus I.
Fig. 2 in Camerobiid mites (Acariformes: Raphignathina: Camerobiidae) inhabiting epiphytic bromeliads and soil litter of tropical dry forest with analysis of setal homology in the genus Neophyllobius
Fig. 2. Neophyllobius cibyci sp. nov. A–B. ♁, paratype (CNAC009238). A. Dorsal idiosoma. B. Ventral idiosoma. C–D. Protonymph, paratype (CNAC009241). C. Dorsal idiosoma. D. Ventral idiosoma. E–F. Larva, paratype (CNAC009242). E. Dorsal idiosoma. F. Ventral idiosoma.
Figure 13 in The soil mite family Galumnidae of Iran (Acari: Oribatida)
Figure 13. Pergalumna iunctiporosa sp. nov. (A) Dorsofrontal view of prodorsum, partial; (B) palp, left, antiaxial view; (C) posterodorsal view of notogaster, partial.
Figure 9 in The soil mite family Galumnidae of Iran (Acari: Oribatida)
Figure 9. Morphological characters of different species. (A–D) Galumna granulimorpha sp. nov. (A) Rostrum (arrow indicates central carina); (B) lateral view of sensillus; (C) pteromorph; (D) porose areas A3 and Ap. (E–H) Pergalumna iunctiporosa sp. nov. (E) Rostrum (arrow indicates central carina); (F) pteromorph; (G) porose areas, lyrifussure and opisthonotal gland opening; (H) dorsolateral view of sensillus.
Figure 10 in The soil mite family Galumnidae of Iran (Acari: Oribatida)
Figure 10. Galumna iranensis Mahunka et Akrami, 2001. (A) Dorsal view of idiosoma; (B) lateral view of prodorsum; (C) lateral view of sensillus; (D) dorsofrontal view of prodorsum, partial; (E) ventral view of idiosoma.
Figure 2 in The soil mite family Galumnidae of Iran (Acari: Oribatida)
Figure 2. Allogalumna dentirostrata sp. nov. (A) Prodorsum and anterior part of notogaster, showing variation of porose area Aa; (B) chelicera, left, antiaxial view (only tip is shown); (C) dorsofrontal view of prodorsum; (D) lateral view of notogaster.
Figure 11 in The soil mite family Galumnidae of Iran (Acari: Oribatida)
Figure 11. Morphological characters of different species. (A––D) Galumna iranensis Mahunka et Akrami, 2001. (A) Lateral view of proterosoma (arrow indicates dorsosejugal porose area Ad); (B) dorsal view of prodorsum (arrow indicates central carina of rostrum); (C) lateral part of notogaster; (D) lateral view of sensillus. (E–H) Pergalumna microtuberculata sp. nov. (E) Posterior view of notogaster showing porose areas A3 and Ap; (F) porose area Aa; (G) posterior part of notogaster; (H) pteromorph.
Figure 3 in New records of soil-inhabiting mesostigmatic mites (Acari: Mesostigmata) in Turkey
Figure 3. DIC micrographs of Kleemannia nova Nasr and Abou-Awad, 1986, adult female: A. General view dorsally; B. General view ventrally; C. Idiosoma in ventral view; D. Subcapitulum; E. Vertical setae j1 enlarged and epistome; F. Chelicera.
Figure 1 in New records of soil-inhabiting mesostigmatic mites (Acari: Mesostigmata) in Turkey
Figure 1. DIC micrographs of Ameroseius lidiae Bregetova, 1977, adult female. A. Idiosoma in dorsal view, B. Idiosoma in ventral view, C. Vertical setae j1 enlarged, D. Sternal and genital shields, E. Anal shield, F. Subcapitulum, G. Chelicera.
Figure 2 in New records of soil-inhabiting mesostigmatic mites (Acari: Mesostigmata) in Turkey
Figure 2. DIC micrographs of Ameroseius sculptilis Berlese, 1916, adult female: A. Idiosoma in dorsal view; B. Idiosoma in ventral view; C. Vertical setae j1 enlarged; D. Sternal and genital shields; E. Anal shield; F. Chelicera.
Figure 4 in New records of soil-inhabiting mesostigmatic mites (Acari: Mesostigmata) in Turkey
Figure 4. DIC micrographs of Dendrolaelaspis lobatus (Shcherbak and Chelebiev), adult female: A. Idiosoma in dorsal view; B. Idiosoma in ventral view; C. Subcapitulum; D. Epistome; E. Chelicera.
Figure 2 in Know your campus: salient research potential of prostigmatic soil mite fauna (Acariformes: Prostigmata, Endeostigmata) within university campus area
Figure 2 Representatives of Prostigmata found in Morasko Campus: A – Cunaxidae:Armascirus bakerilarva; B – Eupodidae:Caleupodes reticulatus adult female; C – Tydeidae:Lorryia reticuloinsigniaadult female; D – Erythraeidae:Abrolophus rudaensislarva; E – Eupalopselli- dae: Eupalopsellus trudisadult female; F – Stigmaeidae:Agistemus gratusadult female. Scale bars are 100 μm.
Figure 1 Predation success ofG. aculeifer, S in Predation capacity of soil-dwelling predatory mites on two major maize pests
Figure 1 Predation success ofG. aculeifer, S. scimitus andM. robustulus on WCR and WW first instar larvae during the 10-minutes predation assays. n=20. NS = no significant difference among predator species (p-value> 0.05). The error bars represent the 95% confidence interval for the predation success.
Fig. 5. P in A Study On The Feeding Biology Of Soil Oribatid Mite Papillacarus (Papillacarus) Elongatus (Acari, Lohmanniidae)
Fig. 5. P. (P.) elongatus feeding on: a — A. hirsutus; b — A. heterophyllus; c — M. indica. The faecal pellets produced are indicated by arrows.
Fig. 6. P in A Study On The Feeding Biology Of Soil Oribatid Mite Papillacarus (Papillacarus) Elongatus (Acari, Lohmanniidae)
Fig. 6. P. (P.) elongatus feeding on: a — C. cassiicola; b — T. harzianum; c — C. verruculosa. The faecal pellets produced are indicated by arrows.
Fig. 1. A in A Study On The Feeding Biology Of Soil Oribatid Mite Papillacarus (Papillacarus) Elongatus (Acari, Lohmanniidae)
Fig. 1. A view of sample collection site-Thusharagiri, Kozhikode, Kerala. The left insert shows semi-degraded leaf litter from the sampling site in detail.
Fig. 3 in A Study On The Feeding Biology Of Soil Oribatid Mite Papillacarus (Papillacarus) Elongatus (Acari, Lohmanniidae)
Fig. 3. Average defecation rate of P. (P.) elongatus per day after feeding semi-degraded leaves and microfungi.
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