Results 41 to 50 of about 399 (135)
ABSTRACT Green oil‐in‐water (O/W) nanoemulsions incorporating essential oils (EOs) and food‐derived compounds are gaining prominence as biopesticidal platforms that address the growing demand for sustainable agriculture, food safety, and reduced chemical inputs.
Anna Paula Azevedo de Carvalho +2 more
wiley +1 more source
The mirid bug Apolygus lucorum (Meyer‐Dür) is a major pest affecting tea. Identifying the dominant predatory spiders of the mirid bug can provide a scientific basis for developing biological control technologies. Xysticus ephippiatus demonstrates the greatest potential as a biological control agent against A. lucorum.
Meng Zhang +6 more
wiley +1 more source
INFLUENCE OF SOME ORGANIC AND CHEMICAL FERTILIZERS ON THE INCIDENCE OF COWPEA APHID, APHIS CRACCIVORA KOCH. [PDF]
Seven treatments of organic (peanut residue) incubated and non-incubated and chemical fertilizers (urea and potassium sulphate) were evaluated on the fertility of wingless females of Aphis craccivora Koch.
Kout EI-Koloub Abdel Fattah, Nagwa Salem
doaj +1 more source
Commodity risk assessment of Vitis spp. plants from Moldova
Abstract The European Commission requests EFSA to provide scientific opinions in the field of plant health in accordance with Article 29 of Regulation (EC) No 178/2002. Annex VI of Commission Implementing Regulation (EU) 2019/2072 lists plants, plant products and other objects whose introduction into the Union from certain third countries is prohibited.
EFSA Panel on Plant Health (PLH) +37 more
wiley +1 more source
The loss of the urea cycle and ornithine metabolism in different insect orders: An omics approach
Among urea cycle enzymes, only the nitric oxide synthase gene is universally present across insect genomes. All Hemiptera species lack the enzymes needed to convert citrulline to arginine, and some also lack the pathway from arginine to ornithine. Putrescine and spermidine synthesis is conserved in all insects, but aphids lack the capability to produce
Jessica Cristina Silva Martins +7 more
wiley +1 more source
16. A. (A.) craccivora Koch Distribution in Georgia: ABK.: Sokhumi, Gudauta, Kelasuri, Gulripshi, Kashtaki, Chuburkhinji (Dzhibladze 1967);ADJ.: Batumi, Batumi Botanical Garden, Chakvi, Kakhaberi (Dzhibladze 1953); IME.: Nogha, Nakhakhulevi, Joneti (Barjadze et al. 2008; Bakhtadze et al. 2010); SHK.: riv.
Barjadze, Shalva +5 more
openaire +2 more sources
The Tianfu 22 (TF22) variety was identified as resistant to thrips based on field screening carried out over two consecutive years. Metabolomic profiling showed that thrip‐infested TF22 leaves exhibited differentially accumulated metabolites, particularly enriched in phenylpropanoid and secondary metabolite biosynthesis.
Qian Wang +10 more
wiley +1 more source
Aphis (Aphis) craccivora Koch 1854
Published as part of Abdullaev, Ikram, Khusanov, Alijon, Voronova-Bartet, Nina, Abdullayeva, Maxbuba, Gandjaeva, Lola, Jumanazarov, Xasanbay, Kholmatov, Bakhtiyor, Rahimov, Matnazar, Matyakubov, Zafar, Iskandarov, Abdulla, Ruzmetov, Rasul, Ollaberganova, Mavluda, Joraev, Muhammadyusuf & Doschanova, Manzura, 2024, Annotated Checklist of the Aphids ...
Abdullaev, Ikram +13 more
openaire +2 more sources
Molecular mechanism of ATP‐binding cassette transporter‐mediated insecticide resistance
Advances in functional genomics (RNAi and CRISPR/Cas9) and artificial intelligence‐driven structure prediction (e.g., AlphaFold) are elucidating how ATP‐binding cassette transporters mediate insecticide resistance to both synthetic chemicals and Bacillus thuringiensis toxins.
Yuntong Lv +3 more
wiley +1 more source
Studies on the transmission of groundnut rosette virus by Aphis craccivora Koch
SUMMARYFour strains of groundnut rosette virus were transmitted by a race of Aphis craccivora (Koch) from groundnut in Nigeria. Two of these strains, both from East Africa, were transmitted only by A. craccivora from Kenya. A fifth isolate, from Nigeria, was not transmissible by either race.
Watson, M. A., Okusanya, B. A. M.
openaire +1 more source

