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288 results for “Erythraeidae”
Figures 5‒7 in A new larval species of Balaustium (Acari: Actinotrichida: Erythraeidae) from Turkey
Figures 5‒7. Balaustium izmirensis Noei & Ersin sp. nov. (larva), leg I: 5- Ta; 6- Ti–Ge; 7- TFe–Tr.
Figures 3–4 in A new larval species of Balaustium (Acari: Actinotrichida: Erythraeidae) from Turkey
Figures 3–4. Balaustium izmirensis Noei & Ersin sp. nov. (larva). 3- Dorsal (left) and ventral (right) view of gnathosoma; 4- Ventral view of palpal tibia and tarsus.
Figure 1 in A new larval species of Balaustium (Acari: Actinotrichida: Erythraeidae) from Turkey
Figure 1. Balaustium izmirensis Noei & Ersin sp. nov. (larva). Dorsal view of idiosoma (scutum without ML and PL on the right side in holotype).
Figs 1–4 in A New Species Of The Genus Abalakeus (Acari, Erythraeidae) From Iran
Figs 1–4. Abalakeus gonabadensis sp. n. (larva) – 1 = dorsal view of idiosoma; 2 = ventral view of idiosoma; 3 = dorsal view (right) and ventral view (left) of gnathosoma; 4 = scutum
Figs 13–16 in A New Species Of The Genus Abalakeus (Acari, Erythraeidae) From Iran
Figs 13–16. Abalakeus gonabadensis sp. n. (larva) – 13 = leg III, trochanter-telofemur;14 = Ge III; 15 = Ti III; 16 = Ta III
Figs 5–12 in A New Species Of The Genus Abalakeus (Acari, Erythraeidae) From Iran
Figs 5–12. Abalakeus gonabadensis sp. n. (larva) – 5 = leg I, trochanter-telofemur; 6 = Ge I; 7 = Ti I, 8 = Ta I; 9 = Leg II, trochanter-telofemur; 10 = Ge II; 11 = Ti II; 12 = Ta II
Figures 6‒9 in Modification in the generic diagnosis of Bursaustium (Acari: Erythraeidae) with description of a new species from southeast of Iran
Figures 6‒9. Bursaustium zabolensis Noei sp. nov. (larva) – 6. Ti I-Ta I; 7. Tr I-Ge I; 8. Ti II -Ta II; 9. Tr II-Ge II.
Figures 13‒17. 13–16 in Modification in the generic diagnosis of Bursaustium (Acari: Erythraeidae) with description of a new species from southeast of Iran
Figures 13‒17. 13–16. Bursaustium zabolensis Noei sp. nov. (larva) – Dorsal scutum position on dorsal surface of propodosoma; 17. Dorsal scutum of the holotype of B. gaspari, sent by Prof. R. Haitlinger.
Figures 3‒5 in Modification in the generic diagnosis of Bursaustium (Acari: Erythraeidae) with description of a new species from southeast of Iran
Figures 3‒5. Bursaustium zabolensis Noei sp. nov. (larva) – 3. Ventral view of idiosoma; 4. Ventral view of palpal tibia and tarsus; 5. Dorsal (right) and ventral (left) view of gnathosoma.
Figures 1–2 in Modification in the generic diagnosis of Bursaustium (Acari: Erythraeidae) with description of a new species from southeast of Iran
Figures 1–2. Bursaustium zabolensis Noei sp. nov. (larva) – 1. Dorsal view of idiosoma; 2. Dorsal scutum.
Figures 10‒12 in Modification in the generic diagnosis of Bursaustium (Acari: Erythraeidae) with description of a new species from southeast of Iran
Figures 10‒12. Bursaustium zabolensis Noei sp. nov. (larva) – 10. Ti III-Ta III; 11. Tr III-Ge III; 12. Habitus.
Figure 2 in Trophic breadth niche, prey preference and developmental time of a Balaustium sp. (Acari: Erythraeidae) from Argentina
Figure 2. Ordination diagram of principal components analysis showing the distribution of preys consumption by larvae, deutonymphs, and adults of Balaustium sp. Positions of the arrows relative to Axes 1 and 2 indicate how strongly independent variables are correlated with each axis, and therefore how related variables are to the pattern of preys consumption by Balaustium sp.
Figure 1 in Trophic breadth niche, prey preference and developmental time of a Balaustium sp. (Acari: Erythraeidae) from Argentina
Figure 1. Developmental stages of Balaustium sp. – A. Eggs; B. Deutova; C. Larva; D. Protonymph: E. Deutonymph; F. Tritonymph; G. Adult.
Figure 3–5 in A new species of larval Abrolophus (Trombidiformes: Erythraeidae) from Iran with a key to species without a comb-like seta on the palptarsus
Figure 3–5. Abrolophus hajiqanbari sp. nov. (larva) – 3.Ventral view of idiosoma (without seta 1b in the left side, which
Figures 6–9 in A new species of larval Abrolophus (Trombidiformes: Erythraeidae) from Iran with a key to species without a comb-like seta on the palptarsus
Figures 6–9. Abrolophus hajiqanbari sp. nov. (larva) – 6. Tr–Ge I; 7. Ti–Ta I; 8. Tr–Ge II; 9. Ti–Ta II.
Figure 4 in A discussion on the validity of the genus Abalakeus (Acari: Erythraeidae) with a redescription of A. gonabadensis
Figure 4 Abalakeus gonabadensis (larva). A – Scutum circular with striations and cheliceral bases with punctations and faint striations; B – Semi-rectangular scutum; C – Scutum and cheliceral bases with striations; D – Dorsal idiosomal setae.
Figure 1 in A discussion on the validity of the genus Abalakeus (Acari: Erythraeidae) with a redescription of A. gonabadensis
Figure 1 Abalakeus gonabadensis(larva). A – Dorsal view of idiosoma; B – Ventral view of idiosoma; C – Gnathosoma.
Figure 2 in A discussion on the validity of the genus Abalakeus (Acari: Erythraeidae) with a redescription of A. gonabadensis
Figure 2 Abalakeus gonabadensis(larva). A – BFe-Ge I; B – Ti and Ta I; C – BFe-Ge II; D – Ti and Ta II.
Figure 5 in New host detection of the parasitic mite, Erythraeus pistacicus (Trombidiformes: Erythraeidae) from Iran and indication of possible infection with bacterial symbionts
Figure 5. Phylogenetic tree based on 16S rRNA sequences of Cardinium, constructed by a neighbor-joining procedure. Cardinium strains are depicted by the host name. The accession numbers are shown after the host name. Numbers on the nodes indicate bootstrap percent confidence values.
Figure 2 in New host detection of the parasitic mite, Erythraeus pistacicus (Trombidiformes: Erythraeidae) from Iran and indication of possible infection with bacterial symbionts
Figure 2. Neighbor-joining tree of COI sequences of the Erythraeidae mites of the present study and the Genbank sequence data. Numbers above/below nodes represent bootstrap values.
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