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85 results for “nectaries”
Figure 3 from: Wurdack KJ, Zartman CE (2019) Insights on the systematics and morphology of Humiriaceae (Malpighiales): androecial and extrafloral nectary variation, two new combinations, and a new Sacoglottis from Guyana. PhytoKeys 124: 87-121. https://doi.org/10.3897/phytokeys.124.34679
Figure 3 Stamen structure and anatomy of Humiriaceae. AVantaneacompacta anther, lateral BVantaneacompacta anther, dorsal CVantaneadepleta anther, lateral DVantaneaspiritu-sancti anther, lateral ESchistostemonoblongifolius clearing of androecium with 3 stamen types, ventral FVantaneaspiritu-sancti longitudinal section of ovary with 2 superposed ovules per locule; lower left ovule partial GHylocarpaheterocarpa anthers (left to right): disporangiate dorsal, ventral; sterile, dorsal. Sources: A, BHatschbach 21265CHammel & Trainer 12954D, FSilva et al. 1436EMaas et al. 6804GDucke [JBRJ-30137] (all US).
Figure 2 from: Heraty J, Carey B, Visscher K (2012) Nectary use for gaining access to an ant host by the parasitoid Orasema simulatrix (Hymenoptera, Eucharitidae). Journal of Hymenoptera Research 27: 47-65. https://doi.org/10.3897/jhr.27.3067
Figure 2 - Distribution of extrafloral nectaries (EFN) on shoots of Chilopsis linearis in AZ, 1999. Shoot defined as branch with new growth and leaves with EFN. a all EFN b filled EFN c wet EFN d dry EFN.
Figure 1 from: Heraty J, Carey B, Visscher K (2012) Nectary use for gaining access to an ant host by the parasitoid Orasema simulatrix (Hymenoptera, Eucharitidae). Journal of Hymenoptera Research 27: 47-65. https://doi.org/10.3897/jhr.27.3067
Figure 1 - a female of Orasema simulatrix b Chilopsis linearis, habitat c leaf shoot d head of Pheidole desertorum with planidium of Orasema simulatrix e extrafloral nectary (EFN) with planidium inside nectary and oviposition punctures (OVIP) along leaf f EFN with planidium (PL) g planidium with dorsal and ventral view divided by bar h male pupa of Orasema simulatrix.
Figure 4 from: Heraty J, Carey B, Visscher K (2012) Nectary use for gaining access to an ant host by the parasitoid Orasema simulatrix (Hymenoptera, Eucharitidae). Journal of Hymenoptera Research 27: 47-65. https://doi.org/10.3897/jhr.27.3067
Figure 4 - Distribution of immature stages among the three conditions of extrafloral nectaries (EFN) in AZ, 1999. a undeveloped eggs b developed eggs with mature planidia c planidia. Regrowth samples excluded.
Figure 3 from: Heraty J, Carey B, Visscher K (2012) Nectary use for gaining access to an ant host by the parasitoid Orasema simulatrix (Hymenoptera, Eucharitidae). Journal of Hymenoptera Research 27: 47-65. https://doi.org/10.3897/jhr.27.3067
Figure 3 - a–c Distribution of immature stages of Orasema simulatrix among leaf categories on Chilopsis linearis in AZ, 1999 d total number of oviposition punctures on Chilopsis linearis. Regrowth samples excluded (see text for details).
Figure 5 from: Heraty J, Carey B, Visscher K (2012) Nectary use for gaining access to an ant host by the parasitoid Orasema simulatrix (Hymenoptera, Eucharitidae). Journal of Hymenoptera Research 27: 47-65. https://doi.org/10.3897/jhr.27.3067
Figure 5 - Ant abundance at baits on or near Chilopsis linearis in AZ, 1998. a Pheidole desertorum on tree b Pheidole desertorum on ground c Solenopsis xyloni on ground. Only Pheidole desertorum was recovered at baits in the tree.
Transcriptome of Gossypium hirsutum floral and extrafloral nectaries
GEO Series GSE113373. Gossypium hirsutum. 120 samples. Type: Expression profiling by high throughput sequencing.
Uncovering the Arabidopsis thaliana nectary transcriptome: nectary and reference tissues
GEO Series GSE15617. Arabidopsis thaliana. 59 samples. Type: Expression profiling by array.
Uncovering the Arabidopsis thaliana nectary transcriptome
GEO Series GSE15601. Arabidopsis thaliana. 8 samples. Type: Expression profiling by array.
Affymetrix data from Populus nectaries versus leaves
GEO Series GSE23897. Populus tremula x Populus tremuloides; Populus sp.. 6 samples. Type: Expression profiling by array.
Gene expression in Jaltomata (species herrerae and procumbens) nectaries
GEO Series GSE191201. Jaltomata procumbens; Jaltomata herrerae. 23 samples. Type: Expression profiling by high throughput sequencing.
Figure 5 in Extrafloral nectaries mediate the arboreal beetle community (Coleoptera) in a Neotropical rainforest
Figure 5. Number of beetles (Coleoptera) sampled per date during the leaf flush on a crown of Licania hebantha (N = 18) and on five tree crowns (in staggered flushing) of Moquilea subarachnophylla (N = 62) (Chrysobalanaceae), Venezuela, January-March 1999.
Figure 2 in Extrafloral nectaries mediate the arboreal beetle community (Coleoptera) in a Neotropical rainforest
Figure 2. Diversity of EF-nectar feeding Chrysomelidae. (a) Antitypona cf. lateralis Baly (Eumolpinae). (b) Asphaera limitata (Harold) (Alticini). (c) stegnocephala cf. xanthocephala (Suffrian) (Cryptocephalinae). (d) Potamobrotica Blake (Galerucinae).
Figure 1 in Extrafloral nectaries mediate the arboreal beetle community (Coleoptera) in a Neotropical rainforest
Figure 1. Extrafloral nectaries. (a) Albizia pedicellaris (DC.) L. Rico (Fabaceae), arrows indicate leaf petiole EFN, Venezuela, October 1997. (b) Photo: Brigitte Marazzi: Ichneumonid wasp (Cryptinae) feeding on EF nectar of sebastiana Spreng sp. (Euphorbiaceae), Argentinia, June 2015.
Figure 3 in Extrafloral nectaries mediate the arboreal beetle community (Coleoptera) in a Neotropical rainforest
Figure 3. Species-level taxonomic diversity of beetles (Coleoptera) feeding at extrafloral nectaries (EFNs) on seven canopy tree species from four families in a lowland rainforest canopy, Venezuela, 1997–1999.
FIGURES 28–40 in Immature stages of the Rubiaceae-feeding metalmark butterflies (Lepidoptera: Riodinidae), and a new function for the tentacle nectary organs
FIGURES 28–40. Immature stages of Mesosemia cippus. 28, freshly laid egg cluster, note the microparasitoid wasp; 29, detail of yellow eggs about to hatch; grey eggs are parasitized; 30, first instar feeding; 31, first instar premolt, note the cycloalexic behavior; 32, second instar feeding; 33, second instar premolt, note the cycloalexic behavior; 34, third instar; 35, fourth instar, the uppermost caterpillar is clipping the principal leaf vein; 36, fourth instar premolt; 37, fifth (last) instar; 38, fifth instar in prepupa; 39, cluster of pupae on host plant; 40, Pupa.
FIG. 1. Besleria iara. A. Habit. B. Open Corolla showing stamens and staminode. C. Gynoecium and Nectary. D in A new species of Besleria (Gesneriaceae) from the western Amazon rainforest
FIG. 1. Besleria iara. A. Habit. B. Open Corolla showing stamens and staminode. C. Gynoecium and Nectary. D. Close up of the inflorescence and stem. E. Calyx and Corolla in side view. (A–E from G.E. Ferreira 355).
Transcriptome of Acacia cornigera extrafloral nectaries
GEO Series GSE113932. Vachellia cornigera. 24 samples. Type: Expression profiling by high throughput sequencing.
Nicotiana nectary development
GEO Series GSE8245. Nicotiana langsdorffii x Nicotiana sanderae; Solanum tuberosum. 30 samples. Type: Expression profiling by array.
Gene expression in tobacco (Nicotiana) nectaries
GEO Series GSE112526. Nicotiana rustica; Nicotiana bonariensis; Nicotiana glauca; Nicotiana benthamiana; Nicotiana plumbaginifolia; Nicotiana clevelandii. 81 samples. Type: Expression profiling by high throughput sequencing.
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