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681 results for “Eriophyoidea”
Figure 3 in Two new species of Diptilomiopus Nalepa (Acari: Eriophyoidea) from India
Figure 3 Schematic drawings ofDiptilomiopus mohanasundaramin. sp.: female:- LM – lateral view of the mite; AD – dorsal view of prodorsal shield region; CG – coxi-genital region; L1 – leg I; L2 – leg II; Em – empodium; IG – internal genitalia.
Figure 1 Aceria alhagi n in A new Aceria species (Acari:Trombidiformes: Eriophyoidea) from West Asia, a potential biological control agent for the invasive weed camelthorn, Alhagi maurorum Medik. (Leguminosae)
Figure 1 Aceria alhagi n.sp.: AD – Antero-dorsal mite; AL – Antero-lateral view of mite; CG – Coxigenital region of female; em – Empodium; GM – Genital region of male; IG – Internal female genitalia; L1 – Leg I of female; LO – Lateral opisthosoma; PM – Postero-lateral mite. Scale bar: 20μm for AD, AL,CG, GM, IG, LO, PM; 10μm for L1; 5μm for em.
Figure 2 SEM images ofAceria alhagi n in A new Aceria species (Acari:Trombidiformes: Eriophyoidea) from West Asia, a potential biological control agent for the invasive weed camelthorn, Alhagi maurorum Medik. (Leguminosae)
Figure 2 SEM images ofAceria alhagi n. sp.: A – prodorsal shield; B – tarsal empodia on legs I and II; C – ventral view of coxigenital area of female; D – ventral view of coxigenital area of male.
Figure 3 in Eriophyoid (Trombidiformes: Eriophyoidea) mite species associated with boxes worldwide with a new record of Eriophyes canestrinii (Nalepa, 1890) from Iran
Figure 3. Deformation on Buxus sempervirens hyrcana bud caused by Eriophyes canestrinii.
Figure 2 in Eriophyoid (Trombidiformes: Eriophyoidea) mite species associated with boxes worldwide with a new record of Eriophyes canestrinii (Nalepa, 1890) from Iran
Figure 2. High population of Eriophyes canestrinii collected on Buxus sempervirens hyrcana (×100).
Fig. 9. Aculodes capillarisi n in New Species Of Aculodes (Acari: Eriophyoidea) From Grasses In Poland
Fig. 9. Aculodes capillarisi n. sp., larva: D – dorsal aspect
Fig. 4. Aculodes calamaabditus n in New Species Of Aculodes (Acari: Eriophyoidea) From Grasses In Poland
Fig. 4. Aculodes calamaabditus n. sp., nymph: D – dorsal aspect, VO – ventral microtubercles
Fig. 6. Aculodes capillarisi n in New Species Of Aculodes (Acari: Eriophyoidea) From Grasses In Poland
Fig. 6. Aculodes capillarisi n. sp., female: CG – coxigenital region, PV – ventral telosoma
Fig. 2. Aculodes calamaabditus n in New Species Of Aculodes (Acari: Eriophyoidea) From Grasses In Poland
Fig. 2. Aculodes calamaabditus n. sp., female: CG – coxigenital region, PV – ventral telosoma
Figure 2 in Three new records of eriophyoid mites (Acari: Eriophyoidea) from Iran
Figure 2. Map of Iran, showing Golestan Province and the collection site.
Figure 1 in Three new records of eriophyoid mites (Acari: Eriophyoidea) from Iran
Figure 1. Map of Golestan Province. Ali Abad Katool.
Figure 3 Alhagi maurorum, plant with typical Aceria alhagi n in A new Aceria species (Acari:Trombidiformes: Eriophyoidea) from West Asia, a potential biological control agent for the invasive weed camelthorn, Alhagi maurorum Medik. (Leguminosae)
Figure 3 Alhagi maurorum, plant with typical Aceria alhagi n. sp. symptoms where the shoot tips
Phylogenomics resolves the higher-level phylogeny of herbivorous eriophyoid mites (Acari: Eriophyoidea)
<p class="MsoNormal"><span>Eriophyoid mites (Eriophyoidea) are among the largest groups in the Acari; their higher-level phylogeny, however, remains unresolved due to the availability of limited number of morphological characters, some of which are suspected as homoplasy. Nevertheless, the eriophyoid mites sequenced to date showed highly variable mitochondrial (mt) gene orders, which could potentially be useful for resolving the higher-level phylogenetic relationships. Here, we sequenced and compared the complete mt genomes of 153 eriophyoid mite species, which showed 54 patterns of rearranged mt gene orders relative to that of the hypothetical ancestor of arthropods. The shared derived mt gene clusters support the monophyly of eriophyoid mites (Eriophyoidea) as a whole and the monophylies of six clades within the Eriophyoidea. These monophyletic groups and their relationships were largely supported in the phylogenetic trees inferred from mt genome sequences as well. Our molecular dating results showed that the Eriophyoidea originated in the Triassic and diversified in the Cretaceous, coinciding with the diversification of angiosperms. This study demonstrates the use of derived mt gene clusters in unveiling the higher-level phylogeny of eriophyoid mites, and underlines the origin of these mites and their co-diversification with angiosperms. </span></p>
Phylogenomics resolves the higher-level phylogeny of herbivorous eriophyoid mites (Acariformes: Eriophyoidea)
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FIGURE 2 in Two new species of diptilomiopid mites (Acari: Eriophyoidea) from China
FIGURE 2. Catarhinus sanguinalus sp. nov. AD, prodorsal shield; CG, female coxigenital area; em, empodium; GM, external male genitalia; IG, female internal genitalia; L1, leg І; L2, leg 2; PM, dorsal view of telosoma; VM, ventral view of telosoma. Scale bar: 20 μm for AD, PM, VM; 10 μm for L1, L2; 7.5 μm for CG, GM, IG, 5μm for em.
FIGURE 1 in Two new species of diptilomiopid mites (Acari: Eriophyoidea) from China
FIGURE 1. Catarhinus sanguinalus sp. nov. A, dorsal view; B, prodorsal shield; C, coxigenital area; D, internal genitalia of female; E, male genitalia; F, tarsus and empodium of leg II; G, gnathosoma and oral stylets. Scale bar: 10 μm.
FIGURE 4 in Two new species of diptilomiopid mites (Acari: Eriophyoidea) from China
FIGURE 4. Rhyncaphytoptus mandshuricae sp. nov. AL, lateral view of anterior opisthosoma; LO, lateral microtubercles; PM, lateral view of telosoma; AD, prodorsal shield; L1, leg І; L2, leg II; CG, female coxigenital area; em, empodium; IG, female internal genitalia. Scale bar: 20 μm for AL, PM, AD, CG; 15 μm for L1, L2, IG; 10 μm for LO; 5 μm for em.
FIGURE 3 in Two new species of diptilomiopid mites (Acari: Eriophyoidea) from China
FIGURE 3. Rhyncaphytoptus mandshuricae sp. nov. A, dorsal view; B, prodorsal shield; C, coxigenital area; D, dorsal view of telosoma; E, ventral view of telosoma; F, internal genitalia of female; G, tarsus and empodium of leg I. Scale bar: 10 μm.
FIGURE 1 in Aculus sayanicus, a new species of Eriophyidae (Acari: Eriophyoidea) from grasses in Russia
FIGURE 1: Aculus sayanicus n. sp. female: D dorsal aspect; em empodium; DO dorsal microtubercles; L1, L2 legs I and II
FIGURE 2 in Aculus sayanicus, a new species of Eriophyidae (Acari: Eriophyoidea) from grasses in Russia
FIGURE 2: Aculus sayanicus n. sp. female: CG coxigenital region; IG internal genitalia; PV posteroventral view.
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