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121 results for “herbaceous plant”
FIGURE 5 in Immature stages and new host plant records for four satyrine species feeding on herbaceous bamboos in southeastern Peru (Lepidoptera: Nymphalidae: Satyrinae: Satyrini)
FIGURE 5. Illustrations of head capsules: a, b, c) first, second, and fifth (ultimate) instar of Nhambikuara mima, in frontal view; d) fifth (ultimate) instar of N. mima, lateral view indicating labeled chalazae; e–h) first, second, fourth and fifth instar of Splendeuptychia furina, in frontal view; i, j) third and fifth (ultimate) instar of Paryphthimoides brixius, in frontal view. Figure a, b are based on 2021-FLP-IMM-0538; c, d are based on 2021-FLP-IMM-0489; e, f, g are based on 2021-FLP-IMM-0554; h are based on 2021-FLP-IMM-0316; i, j are based on 2021-FLP-IMM-0395.
FIGURE 3 in Immature stages and new host plant records for four satyrine species feeding on herbaceous bamboos in southeastern Peru (Lepidoptera: Nymphalidae: Satyrinae: Satyrini)
FIGURE 3. Life history of Paryphthimoides brixius: 1a, b) third instar in dorsal and lateral view; 2a, b) fourth instar in dorsal and lateral view; 3a, b) fifth (ultimate) instar in dorsal and lateral view; 4a, b, c) pupa in dorsal, lateral and ventral view; 5a, b) adult in dorsal and ventral view. All illustrations based on 2021-FLP-IMM-0395.
FIGURE 2 in Immature stages and new host plant records for four satyrine species feeding on herbaceous bamboos in southeastern Peru (Lepidoptera: Nymphalidae: Satyrinae: Satyrini)
FIGURE 2. Life history of Splendeuptychia furina: 1a) egg with brown stripes and mandibles showing through translucence, 1b) head capsule showing through translucence two days prior to hatching; 2a, b) first instar in dorsal and lateral view; 3a, b) second instar in dorsal and lateral view; 4a, b) third instar in dorsal and lateral view; 5a, b) fourth instar in dorsal and lateral view; 6a, b) fifth (ultimate) instar in dorsal and lateral view; 7a, b) ultimate instar exhibiting purple colouration a day prior to pupation, dorsal and lateral view; 8a, b, c) pupa in dorsal, lateral and ventral view; 9a, b) adult in dorsal and ventral view. Figure 2b, 3b are based on 2021-FLP-IMM-0556; otherwise illustrations based on 2021-FLP-IMM-0554.
FIGURE 1 in Immature stages and new host plant records for four satyrine species feeding on herbaceous bamboos in southeastern Peru (Lepidoptera: Nymphalidae: Satyrinae: Satyrini)
FIGURE 1. Life history of Nhambikuara mima: 1a) egg, 1b) black patches present on egg two days prior to hatching; 2a, b) first instar in dorsal and lateral view; 3a, b) second instar in dorsal and lateral view; 4a, b) third instar in dorsal and lateral view; 5a, b) fourth instar in dorsal and lateral view; 6a, b) fifth (ultimate) instar in dorsal and lateral view; 7a, b, c) pupa in dorsal, lateral and ventral view; 8a, b) adult in dorsal and ventral view. Figure 1a based on 2021-FLP-IMM-0542; 1b, 2a, b, 3a, b are based on 2021-FLP-IMM-0538; otherwise illustrations based on 2021-FLP-IMM-0489.
Potassium Isotopes in Herbaceous Plants: a Potential New Tool for C3 and C4 Plant
<p>Dataset of Journal article titled "Potassium Isotopes in Herbaceous Plants: a Potential New Tool for C<sub>3</sub> and C<sub>4</sub> Plant" published in Journal of Geophysical Research - Biogeosciences.</p>
Data related to article: Shrubs exhibit competitive interactions with herbaceous plants and shape community assemblage and functional composition in alpine western Himalaya
<p>To understand the interaction between dominant shrubs and herbacous communities in the alpine region of western Himalaya, a field study was conducted along the elevation gradient (3500-5000 masl). During the field survey, we have collected population data, plant functional trait data and soil physico-chemical data from shrub undercanopy and adjacent open habitats. Relative Interaction Index and L0g ratio were calculated using the population data. Further, plant functional traits data and soil physicochemical data were utilised to understand the functional comoposition and resource availability occuring in the contrasting habitats.</p>
Erosion data of debris flows on banks with herbaceous plants
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FIGURE 6 in Metriocnemus erythranthei sp. nov. and Limnophyes viribus sp. nov. (Diptera: Chironomidae: Orthocladiinae): leafminers of monkeyflowers, speedwells, and other herbaceous plants, with new observations on the ecology and habitats of other leaf-mining Chironomidae
FIGURE 6. Metriocnemus eurynotus associated with Impatiens sp. cotyledons. a. cotyledon with mine containing two larvae; b–f. larvae in mines; g. two larvae in mine; h. three larvae in mine; i. two larvae interacting; j. older larvae feeding externally; k. pupa on cotyledon surface; l. reared adult female.
FIGURE 7 in Metriocnemus erythranthei sp. nov. and Limnophyes viribus sp. nov. (Diptera: Chironomidae: Orthocladiinae): leafminers of monkeyflowers, speedwells, and other herbaceous plants, with new observations on the ecology and habitats of other leaf-mining Chironomidae
FIGURE 7. Metriocnemus sp. "Oregon", larva (a–c). a. habitus; b. antenna; c. labrum and premandible; d. mandible; e. mentum; f. posterior portion of the larva.
FIGURE 4 in Metriocnemus erythranthei sp. nov. and Limnophyes viribus sp. nov. (Diptera: Chironomidae: Orthocladiinae): leafminers of monkeyflowers, speedwells, and other herbaceous plants, with new observations on the ecology and habitats of other leaf-mining Chironomidae
FIGURE 4. Metriocnemus erythranthei sp. nov., larvae and leaf mines on Erythranthe spp. (a–d), larvae and mines on Veronica sp. (e–h). a. on E. glabrata; b. on E. guttata; c. on E. moschata (larva establishing new mine); d. on E. moschata; e. larva in newly established leaf mine; f. larva mining leaf; g. larvae in new leaf mines; h. larva in stem mine, with mining in the adjacent petiole.
FIGURE 12 in Metriocnemus erythranthei sp. nov. and Limnophyes viribus sp. nov. (Diptera: Chironomidae: Orthocladiinae): leafminers of monkeyflowers, speedwells, and other herbaceous plants, with new observations on the ecology and habitats of other leaf-mining Chironomidae
FIGURE 12. Secondary inhabitants in leaf mines of Metriocnemus erythranthei on Veronica sp. a., larva of M. eurynotus (upper left) and two larvae of M. erythranthei (center and upper right); b., larva of Limnophyes sp. (prob. L. viribus) (lower left) in vacated mine.
FIGURE 3 in Metriocnemus erythranthei sp. nov. and Limnophyes viribus sp. nov. (Diptera: Chironomidae: Orthocladiinae): leafminers of monkeyflowers, speedwells, and other herbaceous plants, with new observations on the ecology and habitats of other leaf-mining Chironomidae
FIGURE 3. Metriocnemus erythranthei sp. nov., pupa (a–c), larval (d–h). a. frontal apotome; b. abdominal tergites; c. abdominal sternites; d. habitus; e. antenna; f. labrum and premandible; g. mandible; h. mentum.
FIGURE 2 in Metriocnemus erythranthei sp. nov. and Limnophyes viribus sp. nov. (Diptera: Chironomidae: Orthocladiinae): leafminers of monkeyflowers, speedwells, and other herbaceous plants, with new observations on the ecology and habitats of other leaf-mining Chironomidae
FIGURE 2. Metriocnemus erythranthei sp. nov., female (a–d). a. antenna; b. wing; c. genitalia ventral view; d. genitalia, dorsal view.
FIGURE 5 in Metriocnemus erythranthei sp. nov. and Limnophyes viribus sp. nov. (Diptera: Chironomidae: Orthocladiinae): leafminers of monkeyflowers, speedwells, and other herbaceous plants, with new observations on the ecology and habitats of other leaf-mining Chironomidae
FIGURE 5. Metriocnemus erythranthei sp. nov., pupation on Veronica sp. (a–e), adults (f–g). a. pupa in leaf mine; b. same; c. pupa in stem mine; d. pupal exuviae protruding from leaf mine; e. leaf mine opened to show vacated pupation site, with larval exuviae and gelatinous mass; f. female reared from Erythranthe glabrata; g. male reared from Veronica sp.
FIGURE 1 in Metriocnemus erythranthei sp. nov. and Limnophyes viribus sp. nov. (Diptera: Chironomidae: Orthocladiinae): leafminers of monkeyflowers, speedwells, and other herbaceous plants, with new observations on the ecology and habitats of other leaf-mining Chironomidae
FIGURE 1. Metriocnemus erythranthei sp. nov., male (a–d). a. tentorium; b. thorax; c. wing; d. hypopygium.
FIGURE 8 in Metriocnemus erythranthei sp. nov. and Limnophyes viribus sp. nov. (Diptera: Chironomidae: Orthocladiinae): leafminers of monkeyflowers, speedwells, and other herbaceous plants, with new observations on the ecology and habitats of other leaf-mining Chironomidae
FIGURE 8. Comparison of some characteristics of Metriocnemus erythranthei sp. nov. (a, c, e, g) and Metriocnemus eurynotus (Holmgren, 1883) (b, d, f, h). a–b. male antenna; c–d. male hypopygium; e–f. female last flagellomere; g–h. larval mentum. Scale bars are 50 µm.
FIGURE 11 in Metriocnemus erythranthei sp. nov. and Limnophyes viribus sp. nov. (Diptera: Chironomidae: Orthocladiinae): leafminers of monkeyflowers, speedwells, and other herbaceous plants, with new observations on the ecology and habitats of other leaf-mining Chironomidae
FIGURE 11. Limnophyes viribus sp. nov., larva (a–f). a. habitus; b. antenna; c. labrum and premandible; d. mandible; e. mentum; f. posterior portion of the larva.
FIGURE 10 in Metriocnemus erythranthei sp. nov. and Limnophyes viribus sp. nov. (Diptera: Chironomidae: Orthocladiinae): leafminers of monkeyflowers, speedwells, and other herbaceous plants, with new observations on the ecology and habitats of other leaf-mining Chironomidae
FIGURE 10. Limnophyes viribus sp. nov., female (a–e). a. head; b. thorax; c. wing; d. genitalia ventral view; e. genitalia, dorsal view.
FIGURE 13. Paraphaenocladius exagitans. a in Metriocnemus erythranthei sp. nov. and Limnophyes viribus sp. nov. (Diptera: Chironomidae: Orthocladiinae): leafminers of monkeyflowers, speedwells, and other herbaceous plants, with new observations on the ecology and habitats of other leaf-mining Chironomidae
FIGURE 13. Paraphaenocladius exagitans. a. frass-covered cocoon and pupal exuviae on Marchantia polymorpha thallus; b. adult female.
Data from: Aging in an herbaceous plant: increases in mortality and decreases in physiology and seed mass
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