BM_2024v15n3

Bioscience Methods 2024, Vol.15, No.3, 139-148 http://bioscipublisher.com/index.php/bm 148 Xuan J., 2024, Advances in biological control methods for managing sugarcane insects, Molecular Entomology, 15(1): 23-31. Yadav S., Jackson P., Wei X., Ross E., Aitken K., Deomano E., Atkin F., Hayes B., and Voss-Fels K., 2020, Accelerating genetic gain in sugarcane breeding using genomic selection, Agronomy, 10(4): 585. https://doi.org/10.3390/agronomy10040585 Yang L., Deng Y., Wang X., Zhang W., Shi X., Chen X., Lakshmanan P., and Zhang F., 2020, Global direct nitrous oxide emissions from the bioenergy crop sugarcane (Saccharumspp. inter-specific hybrids), The Science of the Total Environment, 752: 141795. https://doi.org/10.1016/j.scitotenv.2020.141795 Yang X., Sood S., Luo Z., Todd J., and Wang J., 2019, Genome-wide association studies identified resistance loci to orange rust and yellow leaf virus diseases in sugarcane (Saccharumspp.), Phytopathology, 109(4): 623-631. Zhou D., Liu X., Gao S., Guo J., Su Y., Ling H., Wang C., Li Z., Xu L., and Que Y., 2018, Foreign cry1Ac gene integration and endogenous borer stress-related genes synergistically improve insect resistance in sugarcane, BMC Plant Biology, 18: 342.

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