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        Performance of Bemisia tabaci MEAM1 on soybean and resistance traits of cultivars

        Carolina Farias e Silva Maria,de Sousa Rodrigues Arielly,Henrique Ferreira Rodrigues Raimundo,Ettore Pavan Bruno,Barboza Silva Luciana 한국응용곤충학회 2023 Journal of Asia-Pacific Entomology Vol.26 No.2

        Bemisia tabaci MEAM1, known as whitefly, poses a significant threat to soybean crops worldwide. To develop effective pest management strategies, it is crucial to understand how this insect pest performs on different soybean cultivars and identify resistance traits in these cultivars. This study aimed to assess the biological development of B. tabaci MEAM1 and the performance of five consecutive whitefly generations on various soybean cultivars to determine the stability of resistance across multiple insect generations. Additionally, the study aimed to estimate genetic parameters associated with resistance traits. To conduct the experiment, twenty individuals of B. tabaci were released and confined within cages attached to soybean leaf petioles. The experi ment followed a completely randomized design with eleven treatments and five replicates. The emerging insects from the bioassay were confined to plants of their respective cultivars. This process was repeated for five consecutive generations of whiteflies to evaluate the cultivars’ ability to exhibit resistance across multiple generations of the pest. The results showed that the cultivars M 8808 and AS 3810 had a negative impact on B. tabaci oviposition. Additionally, the cultivar BRS 9280 influenced the development of the insect. Based on the selection index, cultivars BRS 9280, AS 3810, M 8808, and BRS 8383 exhibited resistance traits. Furthermore, cultivars BRS 9280, AS 3810, and M 8808 demonstrated resistance characteristics consistently over five gen erations when subjected to whitefly pressure. These cultivars can be considered valuable sources of resistance against B. tabaci MEAM1 for breeding programs aimed at developing resistant soybean cultivars.

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        Genotype–environment interaction for milk production of Gyr cattle in Brazil and Colombia

        Alejandra Maria Toro‑Ospina,Ricardo Antonio Faria,Dominguez-Castaño Pablo,Santana Mario Luiz,Gonzalez Luis Gabriel,Espasandin Ana Carolina,Silva Josineudson Augusto II Vasconcelos 한국유전학회 2023 Genes & Genomics Vol.45 No.2

        Background Genotype by environment interactions (G × E) can play an important role in cattle populations and should be included in breeding programs in order to select the best animals for different environments. Objective The aim of this study was to investigate the G × E for milk production of Gyr cattle in Brazil and Colombia by applying a reaction norm model used genomics information, and to identify genomic regions associated with milk production in the two countries. Methods The Brazilian and Colombian database included 464 animals (273 cows and 33 sires from Brazil and 158 cows from Colombia) and 27,505 SNPs. A two-trait animal model was used for milk yield adjusted to 305 days in Brazil and Colombia as a function of country of origin, which included genomic information obtained with a single-step genomic reaction norm model. The GIBBS3F90 and POSTGSf90 programs were used. Results The results obtained indicate G × E based on the reranking of bulls between Brazil and Colombia, demonstrating environmental differences between the two countries. The findings highlight the importance of considering the environment when choosing breeding animals in order to ensure the adequate performance of their progeny. Within this context, the reranking of bulls and the different SNPs associated with milk production in the two countries suggest that G × E is an important effect that should be included in the genetic evaluation of Dairy Gyr cattle in Brazil and Colombia. Conclusion The Gyr breeding program can be optimized by choosing a selection environment that will allow maximum genetic progress in milk production in different environments within and between countries.

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