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Duranensis etc. show very high levels of resistance/tolerance to biotic and abiotic stresses (Pande and Rao, 2001). These species will be suitable targets for studying the differences at molecular level that determine resistance or susceptibility to stress conditions. The best strategy to avoid significant economic loss is to identify resistance genes under stress conditions by differential gene expression analyses and development of stress tolerance cultivars. Low temperature is a major environmental factor that limits plant growth, development and yield. Cold stress causes different degrees of damage to the peanut plant at the seedling, flowering, and all other growth stages. They seek fresh ways of innovation and enhancement in HR and ensure that human resources align with the company’s broader purpose and goals. HR professionals must be able to adjust quickly to new situations, policies, and technologies to meet evolving challenges and opportunities. This could involve adapting recruitment strategies to attract diverse talent, modifying employee benefits to meet changing needs or implementing remote work policies in response to external factors like a pandemic. HR professionals must listen actively to employees’ concerns, questions, and feedback, demonstrating empathy and understanding. Differential gene expression in Arachis diogoi upon interaction with peanut late leaf spot pathogen, Phaeoisariopsis personata and characterization of a pathogen induced cyclophilin. 75, 497–513. Jiang, C., Zhang, H., Ren, J., Dong, J., Zhao, X., Wang, X., et al. (2020). Comparative transcriptome-based mining and expression profiling of transcription factors related to cold tolerance in peanut. Small RNA and degradome deep sequencing reveals the roles of microRNAs in seed expansion in peanut (Arachis hypogaea L.). Lloyd, A., Plaisier, C. L., Carroll, D., Drews, G. N. Targeted mutagenesis using zinc-finger nucleases in Arabidopsis. 102, 2232–2237. Li, G., Chen, D., Tang, X., https://www.villanovaestatewinery.ca Liu, Y. The list of transgenic plants deploying differentially expressed peanut genes is provided in Table 4. Application of CRISPR/Cas9-based gene editing technique would provide genetic improvement in peanut cultivars against biotic and abiotic stresses. However, application of this breakthrough gene editing technology to peanut is still rare. Till date, there is limited report of CRISPAR/Cas9-based gene editing in peanut. Macovei, A., Sevilla, N. R., Cantos, C., Jonson, G. B., Slamet-Loedin, I., Čermák, T., et al. (2018). Novel alleles of rice eIF4G generated by CRISPR/Cas9-targeted mutagenesis confer resistance to Rice tungro spherical virus. 16, 1918–1927. Liu, H.-H., Tian, X., Li, Y.-J., Wu, C.-A., Zheng, C.-C. It includes journals, conferences, and standards published by the IEEE and IET. Conference papers are presentations made at academic conferences. They often showcase the latest research findings before they are published in journals. They provide a glimpse into emerging trends and cutting-edge studies.

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