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FIG. 1 in Anatomical preservation of silicified Corylites J.S.Gardner leaves from the Paleocene maar lake of Menat (Puy-de-Dôme, France)
FIG. 1. — Map of France showing the geographic position of Menat. (Source: http://d-maps.com/m/europa/france/france/france09.gif).
Figure 13 Tarsus II, right leg. A, B, H. Lasioseius cassidini n in A new species-group with new species of the genus Lasioseius (Acari: Mesostigmata: Blattisociidae) associated with Neotropical hispine beetles in furled leaves ofHeliconia
Figure 13 Tarsus II, right leg. A, B, H. Lasioseius cassidini n. sp.: A – Adult female, dorsal view; B – Adult male, dorsal view; H — Detail of distal region, lateroventral view. C, D, G.Lasioseius serripes n. sp.: C – Adult female, dorsal view; D – Adult male, anterolateral view; G. Detail of distal region, ventral view. E, F.Lasioseius fuscina n. sp.: E – Adult male, dorsal view; F – Adult female, dorsal view. I —Lasioseius duobtusisetis n. sp., adult female, dorsal view. (Solid black color indicates dorsal setae on segment).
Figure 8 Lasioseius fuscina n in A new species-group with new species of the genus Lasioseius (Acari: Mesostigmata: Blattisociidae) associated with Neotropical hispine beetles in furled leaves ofHeliconia
Figure 8 Lasioseius fuscina n. sp., adult female: A – Idiosoma, dorsal view; B – Detail of denoted dorsal setae; C – Gnathotectum; D – Idiosoma, ventral view; E – Cheliceral digits, paraxial view; F – Subcapitulum; G – Detail of ventral setae of palptrochanter.
Figure 7 Lasioseius serripes n in A new species-group with new species of the genus Lasioseius (Acari: Mesostigmata: Blattisociidae) associated with Neotropical hispine beetles in furled leaves ofHeliconia
Figure 7 Lasioseius serripes n. sp.: A – Larva, idiosoma, dorsal view; B – Larva, idiosoma, ventral view; C – Protonymph, idiosoma, dorsal view; D – Protonymph, idiosoma, ventral view.
Figure 5 Lasioseius serripes n in A new species-group with new species of the genus Lasioseius (Acari: Mesostigmata: Blattisociidae) associated with Neotropical hispine beetles in furled leaves ofHeliconia
Figure 5 Lasioseius serripes n. sp., adult male: A – Idiosoma, dorsal view; B – Gnathotectum; C – Tritosternum; D – Subcapitulum and ventral setae of palptrochanter; E – Idiosoma, ventral view; F – Chelicera and spermatodactyl, ventrolateral view; G – Detail of fixed cheliceral digit, ventral view; H – Detail of spermatodactyl.
Figure 3 Lasioseius serripes n in A new species-group with new species of the genus Lasioseius (Acari: Mesostigmata: Blattisociidae) associated with Neotropical hispine beetles in furled leaves ofHeliconia
Figure 3 Lasioseius serripes n. sp., adult female: A – Idiosoma, dorsal view; B – Detail of denoted dorsal setae; C – Gnathotectum; D – Spermathecal structures; E – Cheliceral digits, paraxial view; F – Cheliceral digits, antiaxial view.
Figure 2 Lasioseius cassidini n in A new species-group with new species of the genus Lasioseius (Acari: Mesostigmata: Blattisociidae) associated with Neotropical hispine beetles in furled leaves ofHeliconia
Figure 2 Lasioseius cassidini n. sp., adult male: A – Idiosoma, ventral view; B – Variant form of ventrianal shield; C – Gnathotectum; D – Subcapitulum and ventral setae of palptrochanter; E – Detail of denoted dorsal setae, showingR2 on variant platelet; F – Cheliceral digits and spermatodactyl, dorsal view; G – Cheliceral movable digit, spermatodactyl, and corniculi, dorsal view; H – Detail of fixed digit, ventral view.
Figure 1 Lasioseius cassidini n in A new species-group with new species of the genus Lasioseius (Acari: Mesostigmata: Blattisociidae) associated with Neotropical hispine beetles in furled leaves ofHeliconia
Figure 1 Lasioseius cassidini n. sp. adult female: A – Idiosoma, dorsal view; B – Detail of denoted dorsal setae; C – Idiosoma, ventral view; D – Gnathotectum; E – Subcapitulum; F – Spermathecal structures; G – Fixed cheliceral digit in ventral view; H – movable cheliceral digit in partially lateral view.
Figure 10 Lasioseius duobtusisetis n in A new species-group with new species of the genus Lasioseius (Acari: Mesostigmata: Blattisociidae) associated with Neotropical hispine beetles in furled leaves ofHeliconia
Figure 10 Lasioseius duobtusisetis n. sp., adult female: A – Idiosoma, dorsal view; B – Detail of denoted dorsal setae; C. Idiosoma, ventral view; D – Gnathotectum; E – Subcapitulum and ventral setae of palptrochanter; F – Spermathecal structures; G – Detail of cheliceral fixed digit, ventral view.
Figure 15 in A new species-group with new species of the genus Lasioseius (Acari: Mesostigmata: Blattisociidae) associated with Neotropical hispine beetles in furled leaves ofHeliconia
Figure 15 Dorsal habitus photos of hispine beetle hosts, shown at same size scale: A – Chelobasis perplexa Baly; B – Cephaloleia bella Baly.
Figure 6 Lasioseius serripes n in A new species-group with new species of the genus Lasioseius (Acari: Mesostigmata: Blattisociidae) associated with Neotropical hispine beetles in furled leaves ofHeliconia
Figure 6 Lasioseius serripes n. sp., adult female, right legs I-IV (excluding tarsus): A – Leg I, dorsal view; B – Leg I coxa, ventral view; C – Leg II, posterodorsal view (coxa ventral view); D – Leg III, anterodorsal view (coxa ventral view); E – Leg IV, dorsal view (coxa ventral view). (Solid black setae indicate dorsal setae on segments).
Figure 11 in A new species-group with new species of the genus Lasioseius (Acari: Mesostigmata: Blattisociidae) associated with Neotropical hispine beetles in furled leaves ofHeliconia
Figure 11 Distal subcapitular region, adult males: A – L. cassidini; B – L. serripes; C. — L. fuscina
Figure 9 Lasioseius fuscina n in A new species-group with new species of the genus Lasioseius (Acari: Mesostigmata: Blattisociidae) associated with Neotropical hispine beetles in furled leaves ofHeliconia
Figure 9 Lasioseius fuscina n. sp., adult male: A – Idiosoma, ventral view; B – Gnathotectum; C – Subcapitulum and ventral setae of palptrochanter; D – Chelicera and spermatodactyl, ventral view; E – Detail of cheliceral fixed digit, ventral view.
Figure 4 Lasioseius serripes n in A new species-group with new species of the genus Lasioseius (Acari: Mesostigmata: Blattisociidae) associated with Neotropical hispine beetles in furled leaves ofHeliconia
Figure 4 Lasioseius serripes n. sp., adult female: A – Idiosoma, ventral view; B – Detail of paralabrum; C – Detail of corniculus and salivary stylus; D – Subcapitulum; E – Palp, dorsal view; F – Detail of palptarsus; G – Detail of hyaline anterolateral flap of palptarsus.
Figure 14 Tarsus IV in A new species-group with new species of the genus Lasioseius (Acari: Mesostigmata: Blattisociidae) associated with Neotropical hispine beetles in furled leaves ofHeliconia
Figure 14 Tarsus IV, adult females, right leg, ventral view: A –Lasioseius cassidini n. sp.; B – Lasioseius serripes n. sp.; C – Lasioseius duobtusisetis n. sp.; D – Lasioseius fuscina n. sp. (solid black circles indicate dorsal setae insertions).
Fig. 3. Cucumis thulinianus. A. Flowering stem with leaves, x 3 in Biosystematic monograph of the genus Cucumus (Cucurbitaceae). Botanical identification of cucumbers and melons
Fig. 3. Cucumis thulinianus. A. Flowering stem with leaves, x 3/4. B. Male flower, x 7. C. Male flower, opened to show stamens and disc, x 11. D. Fruit, x 'A. E. Fruit aculeus with retrorse strigose pubescence, x 2. F. Seed, face and side views, x 5. (Bally & Melville 16028 (K), D, E, F; Hemming 2011 (K), A, B, C.)
Fig. 1. Cucumis carolinus. A. Flowering stem with leaves, x V2. B. Male flower, x 1. C in Biosystematic monograph of the genus Cucumus (Cucurbitaceae). Botanical identification of cucumbers and melons
Fig. 1. Cucumis carolinus. A. Flowering stem with leaves, x V2. B. Male flower, x 1. C. Male flower, opened to show stamens and disc, x 5. D. Female flower, x 1. E. Female flower, opened to show disc, style, stigma, and staminodes, x 2*A. F. Fruit, x V2. G. Seed, face and side views, x 5. (Carter & Stannard 697 (K), B, C; Gilbert & Thulin 1116 (K), A, D, E, F, G.)
Fig. 4. Cucumis rostratus. A. Flowering stem with leaves, x Vi. B. Male flower, x 5. C in Biosystematic monograph of the genus Cucumus (Cucurbitaceae). Botanical identification of cucumbers and melons
Fig. 4. Cucumis rostratus. A. Flowering stem with leaves, x Vi. B. Male flower, x 5. C. Male flower, opened to show stamens and disc, x 10. D. Female flower, x 2. E. Fruit, x Vi. F. Seed, face and side views, x 4Vi. (Aké-Assi 5495 (K), E; Brenan 8875 (K), A, B, C, D, F.)
Fig. 2. Cucumis prolatior. A. Flowering stem with leaves, x 16. B. Male flower, x 5. C in Biosystematic monograph of the genus Cucumus (Cucurbitaceae). Botanical identification of cucumbers and melons
Fig. 2. Cucumis prolatior. A. Flowering stem with leaves, x 16. B. Male flower, x 5. C. Male flower, opened to show stamens and disc, x 716. D. Fruit, x 16. E. Seed, face and side views, x 5. {Bally B3645 (K), D, E; Gillett & Gachathi 20478 (K), A, B, C.)
Comparison of Leaves and Stem Aqueous Extract of Tridax Procumbens for Antimicrobial Activity
<p>In present study, aq. extracts of leaves and stem part of Tridax Procumbens were compared for antimicrobial activity. Firstly, all organoleptic and physicochemical properties of leaves and stem powder were evaluated and it shows that drug is pure and having required constituents sufficiently. Aq. extract of leaves powder and stem powder was prepared separately using Soxhlet extraction technique. Both the extracts were evaluated for physiochemical screening using standard procedures. Aq. extract of leaves shows presence of tannis, saponins, anthocyanin, coumarins, alkaloids, proteins, amino acids, diterpenes, phytosterol, cardial glycosides, phlobatannins and flavonoids. Aq. extract of stem shows presence of tannins, coumarins, phenol, cardial glycosides and flavonoids. Both extracts were primarily evaluated for antimicrobial activity against E.coli and S. aureus by selecting dose of 500 mg. Finally, antimicrobial assay was performed for both extracts (500mg) against E.coli and S. aureus by well diffusion method using Amoxicillin and Amikacin as standards respectively. Antimicrobial assay shows that aq. extract of stem part is more effective against S. aureus than E.coli; leaves aq. extract also shows antimicrobial activity against S .aureus and E.coli. From present studies we can conclude that aq. extract of stem and leaves of Tridax Procumbens having antimicrobial activity and stem extract is more effective against S. aureus as compared to leaf extract. </p>
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