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448 results for “Coccidae”

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FIGURE 2 in Morphology of the immature female stages and the wax test of ten species of Ceroplastes (Hemiptera: Coccomorpha: Coccidae: Ceroplastinae) from Brazil

FIGURE 2. Wax test on late first-instar nymphs: A) Ceroplastes cirripediformis Comstock; B) C. cirripediformis – side view (where: SB = stigmatic band); C) C. floridensis Comstock; D) C. formicarius Hempel; E) C. grandis Hempel; F) C. stellifer (Westwood).

opennotspecifiedDec 2016View details →
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FIGURE 1 in Morphology of the immature female stages and the wax test of ten species of Ceroplastes (Hemiptera: Coccomorpha: Coccidae: Ceroplastinae) from Brazil

FIGURE 1. Pattern of dry wax tests on early first-instar nymphs: A) Ceroplastes cirripediformis Comstock; B) C. floridensis Comstock; C) C. formicarius Hempel; D) C. grandis Hempel; E) C. stellifer (Westwood).

opennotspecifiedDec 2016View details →
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FIGURE 6 in Morphology of the immature female stages and the wax test of ten species of Ceroplastes (Hemiptera: Coccomorpha: Coccidae: Ceroplastinae) from Brazil

FIGURE 6. Glassy wax tests on first-instar nymphs: A) Ceroplastes formosus Hempel; B) C. lucidus Hempel; C) C. diospyros Hempel; D) C. flosculoides Matile-Ferrero; E) C. iheringi Cockerell.

opennotspecifiedDec 2016View details →
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FIGURE 8 in Morphology of the immature female stages and the wax test of ten species of Ceroplastes (Hemiptera: Coccomorpha: Coccidae: Ceroplastinae) from Brazil

FIGURE 8. Wax tests on early third-instar nymphs: A) Ceroplastes formosus Hempel; B) C. lucidus Hempel; C) C. diospyros Hempel; D) C. flosculoides Matile-Ferrero; E) C. iheringi Cockerell.

opennotspecifiedDec 2016View details →
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FIGURE 1 in The Coccidae (Hemiptera: Coccoidea) of Chile, with descriptions of three new species and transfer of Lecanium resinatum Kieffer & Herbst to the Kerriidae

FIGURE 1. Adult female coccids: A, Cryptinglisia chilensis; B, Pulvinaria drimyswinteri, young adults; C, Pulvinaria drimyswinteri, adult with ovisac (centre); D, Stictolecanium cranstoni, young adult; E, Stictolecanium cranstoni, mature adult; F. Pulvinariella mesembryanthemi.

opennotspecifiedDec 2010View details →
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FIGURE 3 in First record of Pulvinaria urbicola Cockerell (Hemiptera: Coccidae) from India, with a key to the Indian species of Pulvinaria Targioni Tozzetti

FIGURE 3. Taxonomic illustration of an adult female of Pulvinaria urbicola Cockerell. A. Body derm; B. Marginal setae; C. Spiracular setae; D. Dermal areolation; E. Dorsal setae; F. Dorsal tubercle; G. Discoidal pores; H. Dorsal tubular duct; I. Dorsal microduct; J1. Dorsal view of anal plate; J2. Ventral view of anal plate; K. Anal ring; L. Submarginal setae, M. Ventral setae; N. Antenna; O. Spiracle; P. Spiracular pores; Q. Multilocular pore; R1. Type I ventral tubular duct; R2. Type II ventral tubular duct; R3. Type III ventral tubular duct; S. Ventral microduct; T. Tarsus and claw.

opennotspecifiedDec 2017View details →
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FIGURE 4. A. A in First record of Pulvinaria urbicola Cockerell (Hemiptera: Coccidae) from India, with a key to the Indian species of Pulvinaria Targioni Tozzetti

FIGURE 4. A. A colony of Pulvinaria urbicola Cockerell reared on Cucurbita pepo fruit. B. Cryptolaemus montrouzieri Mulsant larva (indicated by the arrow) feeding on the ovisacs and crawlers of Pulvinaria urbicola.

opennotspecifiedDec 2017View details →
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FIGURE 1 in First record of Pulvinaria urbicola Cockerell (Hemiptera: Coccidae) from India, with a key to the Indian species of Pulvinaria Targioni Tozzetti

FIGURE 1. Life stages of Pulvinaria urbicola Cockerell and colour variation in different stages and on different host plants A. Eggs and nymphs; B. Close-up of an adult female on Citharexylum spinosum; C. Nymphal stage on the branch of Solanum lycopersicum; D. Scale colony on Capsicum annuum; E. Adult females on the branch of Solanum melongena; F. Mature adult female on the stem of Pisonia grandis; G. Colony on a branch of Lantana camara; H. Laboratory reared colony on Cucurbita pepo; I. Colony of ovipositing females on under-surface of a leaf of Pisonia grandis.

opennotspecifiedDec 2017View details →
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FIGURE 1 in Scale insects (Hemiptera: Coccomorpha) on sugarcane in Colombia, with description of a new species of Tillancoccus Ben-Dov (Coccidae)

FIGURE 1. Tillancoccus koreguajae Caballero & Ramos, sp. nov., adult female. Abbreviations in the text.

opennotspecifiedDec 2017View details →
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FIGURE 4 in A newly recognised Australian endemic species of Austrolecanium Gullan & Hodgson 1998 (Hemiptera: Coccidae) from Queensland

FIGURE 4. Adult female of Austrolecanium cryptocaryae Lin & Cook, sp. n. A: marginal seta; B: dorsal microductule; C: dorsal seta; D: preopercular pore; E: anal plate and anogenital fold; F: anal ring; G: pregenital disc-pore; H: leg; I: stigmatic area; J: ventral microduct; K: ventral seta; L: spiracular disc-pore; M: antenna. The scale lines against each structure are: E, F, H, I and M = 100 Μm; A, B and K = 10 Μm; C, D, G, J and L = 5 Μm.

opennotspecifiedDec 2017View details →
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FIGURE 3 in A newly recognised Australian endemic species of Austrolecanium Gullan & Hodgson 1998 (Hemiptera: Coccidae) from Queensland

FIGURE 3. The Maximum Clade Credibility (MCC) tree from analysis of the concatenated dataset (2429 bp). The tree was rooted using sequences from Coccus hesperidum. Branch support is indicated on internal branches (MP bootstrap/Bayesian posterior probability). Only bootstrap values ± 70% and posterior probabilities ± 0.95 are shown. The coloured squares under branches indicate that the branch was present in analyses of that gene. Abbreviations as per Table 1.

opennotspecifiedDec 2017View details →
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FIGURE 2 in A newly recognised Australian endemic species of Austrolecanium Gullan & Hodgson 1998 (Hemiptera: Coccidae) from Queensland

FIGURE 2. The Maximum Clade Credibility (MCC) trees from MrBayes analyses of four datasets: A. rDNA (18S+28S), B. COI, C. EF-1α and D. wingless. The tree was rooted using sequences from Coccus hesperidum. Branch support is indicated on internal branches (MP bootstrap/Bayesian posterior probability). Only bootstrap values ± 70% and posterior probabilities ± 0.95 are shown.

opennotspecifiedDec 2017View details →
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FIGURE 1. A in A newly recognised Australian endemic species of Austrolecanium Gullan & Hodgson 1998 (Hemiptera: Coccidae) from Queensland

FIGURE 1. A. An adult female of Austrolecanium cryptocaryae sp. n. on a leaf of Cryptocarya microneura (Lauraceae) in Queensland, Australia. Photo by L.G. Cook. B. An adult female of Austrolecanium sassafras on a leaf of Endiandra sieberi (Lauraceae) from New South Wales, Australia. Photo by T.L. Semple.

opennotspecifiedDec 2017View details →
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Immune Gene Repertoire of Soft Scale Insects (Hemiptera: Coccidae)

<p>Dataset (fasta sequences and alignments) referred to the manuscript "<span>Immune Gene Repertoire of Soft Scale Insects (Hemiptera: Coccidae)"</span></p> <p><strong><span>Abstract: </span></strong><span>Insects possess an effective immune system which has been extensively characterized in several model species, revealing a plethora of conserved genes involved in recognition, signaling and response to pathogens and parasites. However, some taxonomic groups, characterized by peculiar trophic niches, such as plant-sap feeders, which are often important pests of crops and forestry ecosystems, have been largely overlooked regarding their immune gene repertoire. Here we annotated the immune genes of soft scale insects (Hemiptera: Coccidae), for which omics data are publicly available. By using immune genes of aphids and <em>Drosophila</em> to query the genome of <em>Ericerus pela</em>, as well as the transcriptomes of <em>Ceroplastes cirripediformis</em> and <em>Coccus</em> sp., we pointed out the lack of peptidoglycan recognition proteins, galectins, thaumatins and antimicrobial peptides in Coccidae</span><span>. This work contributes to expand our knowledge about the evolutionary trajectories of immune genes and offers a list of promising candidates for developing new control strategies based on the suppression of pests&rsquo; immunity through RNAi technologies.</span></p>

opencc-by-4.0Mar 2024View details →
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FIGURE 1 in First record of the genus Marsipococcus Cockerell & Bueker (Hemiptera: Coccomorpha: Coccidae) from China, with description of a new species

FIGURE 1. Habitus photograph of Marsipococcus brideliae sp. n.: A. Ecological environment and type locality. In situ photographs: B. Specimen collected in April 2022; C. Specimen collected in January 2024. Alcohol-preserved specimen collected in July 2022: D. Photograph of specimen on leaf; E. Dorsum of adult female; F. Venter of adult female.

opennotspecifiedApr 2024View details →
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FIGURE 2 in First record of the genus Marsipococcus Cockerell & Bueker (Hemiptera: Coccomorpha: Coccidae) from China, with description of a new species

FIGURE 2. Taxonomic illustration of an adult female of Marsipococcus brideliae sp. n. A. Body derm; B. Dorsal setae; C. Dorsal microduct; D. Anal plates in dorsal view; E. Anogenital fold; F. One side of anal ring, with seta bases (black) and 2 rows of pores; G. Marginal setae; H. Stigmatic cleft and stigmatic spines; I. Spiracular disc-pore; J. Ventral microduct; K. Ventral tubular duct; L. Ventral seta; M. Minute submarginal setae on either side of a large marginal seta; N. Antenna; O. Tibiotarsus and claw.

opennotspecifiedApr 2024View details →
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FIGURE 11. Pulvinaria photiniae Kuwana, 1914 in Redescriptions of six Japanese species of the genus Pulvinaria (Hemiptera: Coccomorpha: Coccidae) with four new synonymies

FIGURE 11. Pulvinaria photiniae Kuwana, 1914, adult female collected from Chiba prefecture, Japan in 2001. ANT, antenna; AP, anal plate; DA, dermal areolation; DMD, dorsal microduct; DS, dorsal seta; DTD, dorsal tubular duct; LG, leg; MP, multilocular pores; MS, marginal seta; POP, preopercular pores; SDP, spiracular disc pore; SSP, stigmatic spines; VMD, ventral microduct; VTD, ventral tubular ducts, types I to III. Scale bars: 200 μm for ANT and LG; 100 μm for AP and DA; 50 μm for MS and SSP; 10 μm for all other features.

opennotspecifiedNov 2021View details →
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FIGURE 9. Pulvinaria kuwacola Kuwana, 1907 in Redescriptions of six Japanese species of the genus Pulvinaria (Hemiptera: Coccomorpha: Coccidae) with four new synonymies

FIGURE 9. Pulvinaria kuwacola Kuwana, 1907, adult female collected from Fukuoka prefecture in 2021. ANT, antenna: AP, anal plate; DA, dermal areolation; DMD, dorsal microduct; DS, dorsal seta; DTD, dorsal tubular duct; LG, leg; MP, multilocular pores; MS, marginal seta; POP, preopercular pores; SDP, spiracular disc pore; SSP, stigmatic spines; VMD, ventral microduct; VTD, ventral tubular ducts, types I to III. Scale bars: 200 μm for ANT, DA and LG, 100 μm for AP, 50 μm for MS and SSP, and 10 μm for all other features.

opennotspecifiedNov 2021View details →
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FIGURE 6. Pulvinaria hazeae Kuwana, 1902 in Redescriptions of six Japanese species of the genus Pulvinaria (Hemiptera: Coccomorpha: Coccidae) with four new synonymies

FIGURE 6. Pulvinaria hazeae Kuwana, 1902, adult female collected from Kyushu Island in 2021. ANT, antenna; AP, anal plate; DA, dermal areolation; DMD, dorsal microduct; DS, dorsal seta; LG, leg; MP, multilocular pores; MS, marginal seta; POP, preopercular pores; SDP, spiracular disc pore; SSP, stigmatic spines; VMD, ventral microduct; VTD, ventral tubular ducts, types I to III. Scale bars: 400 μm for ANT; 200 μm for AP, DA and LG; 50 μm for SSP and MS; 10 μm for all other features.

opennotspecifiedNov 2021View details →
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FIGURE 10. Pulvinaria nipponica Lindinger, 1933 in Redescriptions of six Japanese species of the genus Pulvinaria (Hemiptera: Coccomorpha: Coccidae) with four new synonymies

FIGURE 10. Pulvinaria nipponica Lindinger, 1933, adult female collected from Tokyo, Japan in 1965. ANT, antenna: AP, anal plate; DA, dermal areolation; DMD, dorsal microduct; DS, dorsal seta; DTD, dorsal tubular duct; LG, leg; MP, multilocular pores; MS, marginal seta; POP, preopercular pores; SDP, spiracular disc pore; SSP, stigmatic spines; VMD, ventral microduct; VTD, ventral tubular ducts, types I to III. Scale bars: 200 μm for ANT, DA and LG, 100 μm for AP, 50 μm for MS and SSP, and 10 μm for all other features.

opennotspecifiedNov 2021View details →

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