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169 results for “soil mites”

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zenodo28/100

Figure 1 in Effects of soil core handling, transport and storage on numbers and body sizes of edaphic predatory mites (Gamasina)

Figure 1. Effects of improper core treatment on the total abundance of predatory mites (Gamasida) extracted from soil. (A) storage duration, (B) storage temperature, (C) shaking intensity, (D) sample compression, (E) filling of sample containers in extraction apparatus, (F) combination of compression and prolonged storage, and (G) combination of shaking and prolonged storage.

opencc-by-4.0Nov 2022View details →
zenodo28/100

Figure 2 in The effect of grazing by geese, goats, and fallow deer on soil mites (Acari)

Figure 2. Qualitative – quantitative similarities Bray–Curtis coefficient of Oribatida abundance at the study plots.

opencc-by-4.0Mar 2020View details →
zenodo28/100

Figure 6 in The effect of grazing by geese, goats, and fallow deer on soil mites (Acari)

Figure 6. Percentage ratio of adult and juvenile oribatids at goat pasture and corresponding meadow. Oribatida: A_col – Achipteria coleoptrata, E_occ – Eupelops occultus, L_sim – Liebstadia similis, M_pul – Metabelba pulverosa, P_pel – Platynothrus peltifer, P_pun – Punctoribates punctum, S_lae –Scheloribates laevigatus, S_imm – Sellnickochthonius immaculatus, T_vel – Tectocepheus velatus, T_nov – Trichoribates novus.

opencc-by-4.0Mar 2020View details →
zenodo28/100

Figure 2 in Species diversity of soil mites (Acari: Mesostigmata) under different agricultural land use types

Figure 2. Ordination bi-plot of the canonical correspondence analysis (CCA) for Mesostigmata. Environmental variable organic matter (OM). For abbreviations of mite species see Table 5.

opencc-by-4.0Oct 2020View details →
zenodo28/100

FIGURE 10. Heterodispus cordidiscus n in Heterodispus cordidiscus n. sp., a new soil mite from Egypt, and remarks on the nominal species H. elongatus Trägårdh, 1905 (Acari: Heterostigmatina: Scutacaridae)

FIGURE 10. Heterodispus cordidiscus n. sp. male larva, dorsal view.

opennotspecifiedDec 2012View details →
zenodo28/100

FIGURE 9. Heterodispus cordidiscus n in Heterodispus cordidiscus n. sp., a new soil mite from Egypt, and remarks on the nominal species H. elongatus Trägårdh, 1905 (Acari: Heterostigmatina: Scutacaridae)

FIGURE 9. Heterodispus cordidiscus n. sp. male. a) leg I; b) leg II; c) leg III; d) leg IV.

opennotspecifiedDec 2012View details →
zenodo28/100

FIGURE 12. Heterodispus cordidiscus n in Heterodispus cordidiscus n. sp., a new soil mite from Egypt, and remarks on the nominal species H. elongatus Trägårdh, 1905 (Acari: Heterostigmatina: Scutacaridae)

FIGURE 12. Heterodispus cordidiscus n. sp. male larva. a) legI; b) leg II; c) leg III.

opennotspecifiedDec 2012View details →
zenodo28/100

FIGURE 7. Heterodispus cordidiscus n in Heterodispus cordidiscus n. sp., a new soil mite from Egypt, and remarks on the nominal species H. elongatus Trägårdh, 1905 (Acari: Heterostigmatina: Scutacaridae)

FIGURE 7. Heterodispus cordidiscus n. sp. male, ventral view. gn =gnathosoma.

opennotspecifiedDec 2012View details →
zenodo28/100

FIGURE 2. Heterodispus cordidiscus n in Heterodispus cordidiscus n. sp., a new soil mite from Egypt, and remarks on the nominal species H. elongatus Trägårdh, 1905 (Acari: Heterostigmatina: Scutacaridae)

FIGURE 2. Heterodispus cordidiscus n. sp. female holotype, ventral view.

opennotspecifiedDec 2012View details →
zenodo28/100

FIGURE 1. Heterodispus cordidiscus n in Heterodispus cordidiscus n. sp., a new soil mite from Egypt, and remarks on the nominal species H. elongatus Trägårdh, 1905 (Acari: Heterostigmatina: Scutacaridae)

FIGURE 1. Heterodispus cordidiscus n. sp. female holotype, dorsal view.

opennotspecifiedDec 2012View details →
zenodo28/100

Figure 6 from: Bayartogtokh B (2012) The soil mite genus Conchogneta (Acari, Oribatida, Autognetidae), with new findings from Mongolia. ZooKeys 178: 27-42. https://doi.org/10.3897/zookeys.178.2758

Figure 6 - Conchogneta traegardhi (Forsslund, 1947). A Lateral view of prodorsum, arrow indicates exobothridial seta B Sensillus and bothridium, lateral view, arrow indicates postbothridial tubercle Ha C Humeral region, showing tubercles Ha and Hp and bothridium D Lateral view of part of prodorsum showing prodorsal costula, enantiphysis E and interlamellar seta E Slight variation of sensillus, lateral view.

opencc-by-4.0Mar 2012View details →
zenodo28/100

Figure 5 from: Bayartogtokh B (2012) The soil mite genus Conchogneta (Acari, Oribatida, Autognetidae), with new findings from Mongolia. ZooKeys 178: 27-42. https://doi.org/10.3897/zookeys.178.2758

Figure 5 - Conchogneta traegardhi (Forsslund, 1947). A Lateral view of prodorsum and anterior part of notogaster B Chelicera, right, antiaxial view C Leg I, right, antiaxial view D Genu and tibia of leg II, right, antiaxial view E Genu and tibia of leg III, right, antiaxial view F Leg IV, right, antiaxial view.

opencc-by-4.0Mar 2012View details →
zenodo28/100

Figure 4 from: Bayartogtokh B (2012) The soil mite genus Conchogneta (Acari, Oribatida, Autognetidae), with new findings from Mongolia. ZooKeys 178: 27-42. https://doi.org/10.3897/zookeys.178.2758

Figure 4 - Conchogneta traegardhi (Forsslund, 1947). A Dorsal view of idiosoma B Ventral view of idiosoma C Prodorsum D Sensillus and bothridium, lateral view E Genital plate.

opencc-by-4.0Mar 2012View details →
zenodo28/100

Figure 3 from: Bayartogtokh B (2012) The soil mite genus Conchogneta (Acari, Oribatida, Autognetidae), with new findings from Mongolia. ZooKeys 178: 27-42. https://doi.org/10.3897/zookeys.178.2758

Figure 3 - Conchogneta glabrisensillata sp. n. A Prodorsum, showing enantiophysis E, costula and bothridium B Central part of prodorsum, showing alveolus of interlamellar seta and interbothridial tubercle (indicated by arrow) C Part of laterial view of prodorsum, showing sensillus and granular tubercles on humeral region D Lateral view of prodorsal costula E Sensillus, lateral view F Slight variation of sensillus, lateral view G Granular tubercles on lateral part of prodorsum H Humeral region, showing tubercles Ha and Hp.

opencc-by-4.0Mar 2012View details →
zenodo28/100

Figure 2 from: Bayartogtokh B (2012) The soil mite genus Conchogneta (Acari, Oribatida, Autognetidae), with new findings from Mongolia. ZooKeys 178: 27-42. https://doi.org/10.3897/zookeys.178.2758

Figure 2 - Conchogneta glabrisensillata sp. n. A Lateral view of prodorsum and anterior part of notogaster B Humeral region, showing tubercles Ha and Hp C Palp, right, antiaxial view D Leg I, right, antiaxial view E Genu and tibia of leg II, right, antiaxial view F Genu and tibia of leg III, right, antiaxial view G Leg IV, right, antiaxial view.

opencc-by-4.0Mar 2012View details →
zenodo28/100

Figure 1 from: Bayartogtokh B (2012) The soil mite genus Conchogneta (Acari, Oribatida, Autognetidae), with new findings from Mongolia. ZooKeys 178: 27-42. https://doi.org/10.3897/zookeys.178.2758

Figure 1 - Conchogneta glabrisensillata sp. n. A Dorsal view of idiosoma B Ventral view of idiosoma C Prodorsum D Sensillus and bothridium, lateral view E Slight variation of sensillus, lateral view.

opencc-by-4.0Mar 2012View details →
dryad24/100

Data from: Effect of coupled reduced irrigation and nitrogen fertilizer on soil mite community composition in a wheat field

Overuse of groundwater and nitrogen fertilizer constitute a severe threat to crop production, thus, low inputs of irrigation and nitrogen fertilizer were required in current ecological agriculture. The effects of combined reduced irrigation and nitrogen fertilizer addition on soil organism (e.g., mite) community and biodiversity remain poorly understood. We analyzed soil mite community composition, wheat grain yields, and soil characteristics in a ten-year manipulation experiment with two levels of irrigation (reduced irrigation and conventional irrigation) and five levels of nitrogen fertilizer (0, 70, 140, 210, 280 kg N ha-1). The study showed that reduced irrigation (20% reduction, from 280 to 220 mm) and nitrogen fertilizer (25% reduction, from 280 to 210 kg N ha-1) addition did not significantly influence soil mite community and wheat yields. The relative abundances of fungivore and predator showed negative quadratic relationships with wheat yields, while that of plant parasite was positive. The relationships between soil mite trophic groups and wheat yields revealed that we can elevated the impacts of reduced irrigation and nitrogen fertilizer addition from the perspective of soil fauna. The soil mite community composition was altered by soil abiotic factors prior to reduced irrigation and nitrogen fertilizer addition. On the whole, moderate reductions of irrigation and nitrogen fertilizer may not threaten to soil mite community and diversity or decrease crop production, on the contrary, it will benefit to the development of mite community and the sustainable agriculture.

opencc-zeroAug 2020View details →
zenodo24/100

Temperate forest elevational gradient: spatial variation and deterministic processes in soil oribatid mite community assembly

<p>The data sets were analyzed during the current study. Data from: Temperate forest elevational gradient: spatial variation and deterministic processes in soil oribatid mite community assembly.</p>

opencc-by-4.0Dec 2023View details →
zenodo24/100

Figure 4 in The effect of grazing by geese, goats, and fallow deer on soil mites (Acari)

Figure 4. Percentage ratio of adult and juvenile oribatids.

opencc-by-4.0Mar 2020View details →
dryad24/100

Data from: Effect of coupled reduced irrigation and nitrogen fertilizer on soil mite community composition in a wheat field

Open the record for dataset details and reuse information.

publicAug 2020View details →

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