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721por Richter, Ingrid, Radosa, Silvia, Cseresnyés, Zoltán, Ferling, Iuliia, Büttner, Hannah, Niehs, Sarah P., Gerst, Ruman, Scherlach, Kirstin, Figge, Marc Thilo, Hillmann, Falk, Hertweck, Christian“…By combining stereomicroscopy, automated image analysis, and quantification of nematode movement, we show that the fungivorous nematode Aphelenchus avenae actively feeds on R. microsporus that is lacking endosymbionts, whereas worms coincubated with symbiotic R. microsporus are significantly less lively. …”
Publicado 2022
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722por Kawanishi, Takeshi, Shiraishi, Takuya, Okano, Yukari, Sugawara, Kyoko, Hashimoto, Masayoshi, Maejima, Kensaku, Komatsu, Ken, Kakizawa, Shigeyuki, Yamaji, Yasuyuki, Hamamoto, Hiroshi, Oshima, Kenro, Namba, Shigetou“…To test whether the SMART method is applicable to a wide range of microorganisms, we developed selective media for Burkholderia glumae, Acidovorax avenae, Pectobacterium carotovorum, Ralstonia solanacearum, and Xanthomonas campestris. …”
Publicado 2011
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723por Sytykiewicz, Hubert, Chrzanowski, Grzegorz, Czerniewicz, Paweł, Sprawka, Iwona, Łukasik, Iwona, Goławska, Sylwia, Sempruch, Cezary“…The purpose of this report was to evaluate the expression patterns of selected glutathione transferase genes (gst1, gst18, gst23 and gst24) in the tissues of two maize (Zea mays L.) varieties (relatively resistant Ambrozja and susceptible Tasty Sweet) that were colonized with oligophagous bird cherry-oat aphid (Rhopalosiphum padi L.) or monophagous grain aphid (Sitobion avenae L.). Simultaneously, insect-triggered generation of superoxide anion radicals (O(2) (•−)) in infested Z. mays plants was monitored. …”
Publicado 2014
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724“…Tremblaya phenacola” PAVE, single endosymbiont of Phenacoccus avenae, suggests that the atypical reductive evolution of “Ca. …”
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725“…Parallel annual variation in the average maximum numbers of M. dirhodum, Sitobion avenae (Fabricius) (Homoptera: Aphididae), and Rhopalosiphum padi (Linné) (Homoptera: Aphididae) indicated the following factors that affected their abundance: temperature in winter and host plant quality. …”
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726“…We evaluated the performance of the grain aphid (Sitobion avenae) in wheat (Triticum aestivum L.) exposed to a combination of heat and drought stresses. …”
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727“…The plant growth-promoting rhizobacterium Acidovorax radicis N35 is known to increase barley (Hordeum vulgare) plant growth under laboratory conditions, and we tested the stability of the plant-bacterial interactions when exposed to elevated carbon dioxide (CO(2)) and ozone (O(3)) levels while infesting the aboveground leaves with cereal aphids (Sitobion avenae) and the soil with beneficial earthworms. Acidovorax radicis N35 increased plant growth and reduced insect growth – with greatest effect in a high-stress elevated O(3) environment, but reduced effects under elevated CO(2). …”
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728por Simon, Amma L., Caulfield, John C., Hammond-Kosack, Kim E., Field, Linda M., Aradottir, Gudbjorg I.“…Aphid (Rhopalosiphum padi (L.), Sitobion avenae (F.) and Metopolophium dirhodum (Wlk.)) populations and natural enemy presence (parasitised mummified aphids, ladybird adults and larvae and lacewing eggs and larvae) on two naturally susceptible wheat varieties, Triticum aestivum (L.) var. …”
Publicado 2021
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729por Villegas, Dolors, Bartaula, Radhika, Cantero‐Martínez, Carlos, Luster, Douglas, Szabo, Les, Olivera, Pablo, Berlin, Anna, Rodriguez‐Algaba, Julian, Hovmøller, Mogens S., McIntosh, Robert, Jin, Yue“…Infection assays using aeciospores resulted in stem rust infections on susceptible genotypes of wheat, barley, rye and oat, indicating the presence of the sexual cycle for P. graminis f. sp. tritici, f. sp. secalis and f. sp. avenae. Sequence analyses from aecial samples supported this finding as well as the presence of Puccinia brachypodii. …”
Publicado 2022
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730por Sytykiewicz, Hubert“…The survey was aimed to evaluate impact of bird cherry-oat aphid (Rhopalosiphum padi L.) or grain aphid (Sitobion avenae F.) herbivory on expression of genes related to ascorbate-glutathione (AsA-GSH) cycle in seedlings of six maize varieties (Ambrozja, Nana, Tasty Sweet, Touran, Waza, Złota Karłowa), differing in resistance to the cereal aphids. …”
Publicado 2016
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731por Charlermroj, Ratthaphol, Himananto, Orawan, Seepiban, Channarong, Kumpoosiri, Mallika, Warin, Nuchnard, Oplatowska, Michalina, Gajanandana, Oraprapai, Grant, Irene R., Karoonuthaisiri, Nitsara, Elliott, Christopher T.“…A novel multiplex detection method was developed based on microsphere immunoassays to simultaneously detect four important plant pathogens: a fruit blotch bacterium Acidovorax avenae subsp. citrulli (Aac), chilli vein-banding mottle virus (CVbMV, potyvirus), watermelon silver mottle virus (WSMoV, tospovirus serogroup IV) and melon yellow spot virus (MYSV, tospovirus). …”
Publicado 2013
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732por Sytykiewicz, Hubert“…Tasty Sweet (susceptible) and Ambrozja (relatively resistant) cultivars infested with one of two hemipteran species, namely monophagous Sitobion avenae F. (grain aphid) or oligophagous Rhopalosiphum padi L. …”
Publicado 2014
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733“…RESULTS: Rs-CPS of R. similis, Hg-CPS of Heterodera glycines and Ha-CPS of H. avenae are closely genetically related and share the same branch of the phylogenetic tree. …”
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734“…(Pc280) and Heterodera avenae (Pc60) biotypes, including 16 pairwise isolates combinations in four replicates. …”
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735“…An sid-1-like full-length transcript was amplified from the cotton/melon aphid, Aphis gossypii Glover (Homopera: Aphididae), and a fragment was amplified from the grain aphid, Sitobion avenae (F.). The trancript from A. gossypii was 3067 bp long, with an open reading frame encoding 766 amino acids. …”
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736por Tous-Fandos, Alba, Gallinger, Jannicke, Enting, Arnoud, Chamorro-Lorenzo, Lourdes, Sans Serra, F. Xavier, Ninkovic, Velemir“…English grain aphids (Sitobion avenae) were less attracted to the odors of Florence-Aurora and Forment when grown as a mixture than the combination of the odors from Florence-Aurora and Forment monocultures. …”
Publicado 2023
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737“…BACKGROUND: The sesquiterpene (E)-ß-farnesene is the main component of the alarm pheromone system of various aphid species studied to date, including the English grain aphid, Sitobion avenae. Aphid natural enemies, such as the marmalade hoverfly Episyrphus balteatus and the multicolored Asian lady beetle Harmonia axyridis, eavesdrop on aphid chemical communication and utilize (E)-ß-farnesene as a kairomone to localize their immediate or offspring preys. …”
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738“…Aphid communities in the organically managed fields almost exclusively consisted of a single ear-colonizing species, Sitobion avenae, while highly fertilized conventional fields were mainly infested by leaf-colonizing aphids that benefit from the nutritional status of winter wheat. …”
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739“…A total of 97 nematode populations were used to evaluate the specificity and sensitivity of this assay, including 45 populations of B. xylophilus and 36 populations of 21 other species of Bursaphelenchus which belong to the abietinus, cocophilus, eggersi, fungivorus, hofmanni, kevini, leoni, sexdentati, and xylophilus groups and one unassigned group from a total of 13 groups in the genus Bursaphelenchus; 15 populations of Aphelenchoides besseyi, A. fragariae, Aphelenchoides species and Aphelenchus avenae; and one population of mixed nematode species from a soil sample. …”
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740por Huang, Qiulan, Li, Lin, Zheng, Minghui, Chen, Fang, Long, Hai, Deng, Guangbing, Pan, Zhifen, Liang, Junjun, Li, Qiao, Yu, Maoqun, Zhang, Haili“…Cereal cyst nematode (CCN, Heterodera avenae) is a most important pathogen of wheat and causes tremendous yield loss annually over the world. …”
Publicado 2018
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