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14 results for “Rhopalosiphum”
Figure 2 in The impact of wheat resistance and bio-rational insecticides toxicity against cherry-oat aphid, Rhopalosiphum padi L. (Hemiptera: Aphididae)
Figure 2: Trichomes density on mm 2 leaf area of various wheat varieties. Each value is the mean of five replications. *Mean followed by the same letter do not differ significantly at p = 0.05
Figure 3 in The impact of wheat resistance and bio-rational insecticides toxicity against cherry-oat aphid, Rhopalosiphum padi L. (Hemiptera: Aphididae)
Figure 3. Effect of IGR's and plant extracts application on the population of Rhopalosiphum padi. A. After the first spray, B. After the second spray DBT (day before treatment), DAT (day after treatment).
Figure 1 in The impact of wheat resistance and bio-rational insecticides toxicity against cherry-oat aphid, Rhopalosiphum padi L. (Hemiptera: Aphididae)
Figure 1: Rhopalosiphum padi preference at various time intervals and varieties. Each value is the mean of five replications. *Mean followed by the same letter do not differ significantly at p = 0.05
Fig. 1 in Regional susceptibilities of Rhopalosiphum padi (Hemiptera: Aphididae) to ten insecticides
Fig. 1. SaMpliNG reGioNs of Rhopalosiphum padi iN ChiNa. The reGioNs iNcluded BaicheNG of JiliN ProviNce (the populatioN code was NaMed as JLB), BaodiNG of Hebei ProviNce (HEB), LaNzhou of GaNsu ProviNce (GSL), TaiGu of ShaNxi ProviNce (SXT), Zibo of ShaNGdoNG ProviNce (SDZ), TaiaN of ShaNGdoNG ProviNce (SDT), XiaNyaNG of Shaaxi ProviNce (SAX), NaNyaNG of HeNaN ProviNce (HNN), Chuzhou of ANhui ProviNce (AHC), WuhaN of Hubei ProviNce (HBW), Beibei of ChoNGqiNG ProviNce (CQB), aNd GuiyaNG of Guizhou ProviNce (GZG).
Fig. 2 in Sublethal effects of indoxacarb and beta-cypermethrin on Rhopalosiphum padi (Hemiptera: Aphididae) under laboratory conditions
Fig. 2. Effects of beta-cypermethrin and indoxacarb sub-lethal concentrations on age-specific survival rate and age-specific fecundity of Rhopalosiphum padi F1 generation. CK: control treatment; B-LC10: LC10 of beta-cypermethrin; BLC30: LC30 of beta-cypermethrin; I-LC10: LC10 of indoxacarb; I-LC30: LC30 of indoxacarb.
Fig. 1 in Sublethal effects of indoxacarb and beta-cypermethrin on Rhopalosiphum padi (Hemiptera: Aphididae) under laboratory conditions
Fig. 1. Comparisons of development times of nymphs (mean ± SE) across all treatments (different letters indicate significant differences between populations at the P <0.05 level). CK: control treatment; B-LC10: LC10 of beta-cypermethrin; B-LC30: LC30 of beta-cypermethrin; I-LC10: LC10 of indoxacarb; I-LC30: LC30 of indoxacarb.
<em>Epichloë</em> endophytes impair performance and preference of <em>Rhopalosiphum padi</em> by disrupting aphid feeding behaviour in tall fescue
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Food quality of Ephestia eggs, the aphid Rhopalosiphum padi and mixed diet for Orius majusculus
<p>We studied the food quality of the aphid <em>Rhopalosiphum padi</em> to the pirate bug <em>Orius majusculus</em> using <em>Ephestia</em> eggs as high‐quality comparison prey. Several performance parameters were tested on individuals that had been reared and maintained on each of the two single‐prey diets or on a mixed diet. All fitness parameters were lower in individuals fed aphids only, indicating poor food quality of this prey. Compared with the pure <em>Ephestia</em> egg diet, the mixed diet enhanced teneral mass, while adult survival and female starvation tolerance were negatively affected and all other traits were unaffected. Body protein proportions were constant across diets, whereas lipid proportion was low in the aphid treatment. Preference for aphids was lower following a monotypic aphid diet than when reared on <em>Ephestia</em> eggs or a mixed diet. The results confirm that <em>R. padi</em> is low‐quality food for <em>O. majusculus</em> as it is for other generalist predators, even though <em>O. majusculus</em> may contribute significantly to population suppression of the aphid.</p>
Food quality of Ephestia eggs, the aphid Rhopalosiphum padi and mixed diet for Orius majusculus
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Influence of drought on interactions between Rhopalosiphum padi and ground dwelling predators - a mesocosm study
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Figure 1 from: Pérez-Hidalgo N, Martínez-Torres D, Collantes-Alegre J, Villalobos Muller W, Nieto Nafría J (2012) A new species of Rhopalosiphum (Hemiptera, Aphididae) on Chusquea tomentosa (Poaceae, Bambusoideae) from Costa Rica. ZooKeys 166: 59-73. https://doi.org/10.3897/zookeys.166.2387
Figure 1 - AView of the area where the types of Rhopalosipum chusqueae were captured, in Cerro de la Muerte (Costa Rica), with Chusquea tomentosa B view of the plant C and D details of the area where the aphids were located.
Figure 3 from: Pérez-Hidalgo N, Martínez-Torres D, Collantes-Alegre J, Villalobos Muller W, Nieto Nafría J (2012) A new species of Rhopalosiphum (Hemiptera, Aphididae) on Chusquea tomentosa (Poaceae, Bambusoideae) from Costa Rica. ZooKeys 166: 59-73. https://doi.org/10.3897/zookeys.166.2387
Figure 3 - A Neighbour joining tree based on Kimura 2P distances obtained for the COI sequences from our new species (Rhopalosiphum chusqueae) and different Aphidini representatives obtained from the NCBI database. B Maximum Likelihood tree obtained for the EF1α sequences for our new species (Rhopalosiphum chusqueae) and different Aphidini representatives obtained from the NCBI database. Bootstrap support values obtained after 1000 replicates in A and 100 in B are indicated above branches if higher than 50%. Initials for genera are as follows: A, Aphis; As, Asiphonaphis; B, Braggia; H, Hyalopterus, M, Melanaphis; P, Paradoxaphis; R, Rhopalosiphum; S, Schizaphis (Schizaphis); S. (E.), Schizaphis (Euschizaphis); S. (P.), Schizaphis (Paraschizaphis); T, Toxoptera.
Figure 2 from: Pérez-Hidalgo N, Martínez-Torres D, Collantes-Alegre J, Villalobos Muller W, Nieto Nafría J (2012) A new species of Rhopalosiphum (Hemiptera, Aphididae) on Chusquea tomentosa (Poaceae, Bambusoideae) from Costa Rica. ZooKeys 166: 59-73. https://doi.org/10.3897/zookeys.166.2387
Figure 2 - Rhopalosiphum chusqueae sp. n. A, B Habitus C antennal segment III D siphunculus E cauda. F (and B-a) detail of the cuticule of abdominal segment 3 G (and B-b) detail of cuticule of abdominal segment 8.
Microarray analysis of the interaction between Rhopalosiphum padi and partially resistant or susceptible barley lines
GEO Series GSE12584. Hordeum vulgare; Hordeum vulgare subsp. spontaneum. 24 samples. Type: Expression profiling by array.
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