The scientific and economic impact of the foliar disease-resistant peanut variety GPBD 4

Author:

Bhat R SORCID,Motagi B N,Naidu G K,Nadaf H L,Giritammannavar V A,Hunje R V

Publisher

Springer Science and Business Media LLC

Reference41 articles.

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2. Ajay B, Kumar N, Kona P, Gangadhar K, Rani K, Rajanna G, Bera S (2023) Integrating data from asymmetric multi-models can identify drought-resistant groundnut genotypes for drought hot-spot locations. Sci Rep 13(1):12705

3. Bertioli DJ, Cannon SB, Froenicke L, Huang G, Farmer AD, Cannon EK, Liu X, Gao D, Clevenger J, Dash S, Ren L, Moretzsohn MC, Shirasawa K, Huang W, Vidigal B, Abernathy B, Chu Y, Niederhuth CE, Umale P, Araujo AC, Kozik A, Do Kim K, Burow MD, Varshney RK, Wang X, Zhang X, Barkley N, Guimaraes PM, Isobe S, Guo B, Liao B, Stalker HT, Schmitz RJ, Scheffler BE, Leal-Bertioli SC, Xun X, Jackson SA, Michelmore R, Ozias-Akins P (2016) The genome sequences of Arachis duranensis and Arachis Ipaensis, the diploid ancestors of cultivated peanut. Nat Genet 48(4):438–446

4. Bertioli DJ, Clevenger J, Godoy IJ, Stalker H, Wood S, Santos JF, Ballén-Taborda C, Abernathy B, Azevedo V, Campbell J (2021) Legacy genetics of Arachis Cardenasii in the peanut crop shows the profound benefits of international seed exchange. Proc Natl Acad Sci USA 118(38):e2104899118

5. Bhat RS, Rockey J, Shirasawa K, Tilak IS, Brijesh Patil MP, Reddy VB (2019) DNA methylation and expression analyses reveal epialleles for the foliar disease resistance genes in peanut (Arachis hypogaea L). BMC Res Notes 13(1):20

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