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  1. Industry perspective, genetics and genomics of peanut blanchability by Shah, Priya, Wright, Graeme, Nwosu, Chigozie V., O’Connor, Daniel, Satsos, Panagiota, Pasupuleti, Janila, Kona, Praveen, Singh, Kuldeep, Bera, Sandip K., Thudi, Mahendar, Kole, Chittaranjan, Varshney, Rajeev K., Pandey, Manish K.

    Published 2025
    “…These factors, include the high cost operations to measure blanchability and the relatively large seed size in particular, prevent testing in early generations. …”
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    Journal Article
  2. Ecological status as the basis for the holistic environmental flow assessment of a tropical highland river in Ethiopia by Abebe, Wubneh B., Tilahun, Seifu A., Moges, Michael M., Wondie, Ayalew, Dersseh, Minychl G., Assefa, Workiye W., Mhiret, Demesew A., Adem, Anwar A., Zimale, Fasikaw A., Abera, Wuletawu, Steenhuis, Tammo S., McClain, Michael E.

    Published 2021
    “…Macroinvertebrate diversity was observed to decrease downstream. Both the fish and macroinvertebrate diversity indices were less than the expected maximum, being 3.29 and 4.5, respectively. …”
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    Journal Article
  3. Approaches and progress in breeding drought-tolerant maize hybrids for tropical lowlands in west and central Africa by Menkir, A., Dieng, I., Gedil, M., Mengesha Abera, W., Oyekunle, M., Riberio, P.F., Adu, G.B., Yacoubou, A.M., Coulibaly, M., Bankole, F.A., Derera, J., Bossey, B., Unachukwu, N., Ilesanmi, Y., Meseka, S.

    Published 2024
    “…The present review provides a historical overview of the approaches used and progress made in developing drought-tolerant hybrids over the years. Breeders made a shift from a wide area testing approach, to the use of managed screening sites, to precisely control the intensity, and timing of drought stress for developing drought-tolerant maize varieties. …”
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    Journal Article
  4. Calls to action by International Food Policy Research Institute

    Published 2016
    Subjects: “…obesity…”
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    Book Chapter
  5. Dissecting the genomic regions, candidate genes and pathwaysusing multi-locus genome-wide association study for stem rotdisease resistance in groundnut by Veerendrakumar, H. V., Sudini, Hari Kishan, Kiranmayee, Bangaru, Devika, Talwar, Gangurde, Sunil S., Vasanthi, R. P., Kumar, Nirmal A. R., Bera, Sandip K., Guo, Baozhu, Liao, Boshou, Varshney, Rajeev K., Pandey, Manish K.

    Published 2025
    “…To dissect the genetic basis of resistance, we evaluated a diverse minicore germplasm panel over 3 years in stem rot sick-field conditions. Multi-locus genome-wide association study with the 58K single nucleotide polymorphisms (SNPs) Axiom_Arachis array genotyping identified 13 significant genomic regions associated with resistance across eight chromosomes with logarithm of the odds (LOD) scores ranging from 4.5 to 12.4 and R2 values between 6.9% and 58%. …”
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    Journal Article

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