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PUBMED FOR HANDHELDS

Journal Abstract Search


214 related items for PubMed ID: 35618915

  • 1. Genomic prediction of zinc-biofortification potential in rice gene bank accessions.
    Rakotondramanana M, Tanaka R, Pariasca-Tanaka J, Stangoulis J, Grenier C, Wissuwa M.
    Theor Appl Genet; 2022 Jul; 135(7):2265-2278. PubMed ID: 35618915
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  • 2. Genomic marker assisted identification of genetic loci and genes associated with variation of grain zinc concentration in rice.
    Kumari K, Kumar P, Sharma VK, Singh SK.
    J Genet; 2019 Dec; 98():. PubMed ID: 31819017
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  • 3. Grain Fe and Zn contents linked SSR markers based genetic diversity in rice.
    Raza Q, Riaz A, Saher H, Bibi A, Raza MA, Ali SS, Sabar M.
    PLoS One; 2020 Dec; 15(9):e0239739. PubMed ID: 32986755
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  • 5. From gene banks to farmer's fields: using genomic selection to identify donors for a breeding program in rice to close the yield gap on smallholder farms.
    Tanaka R, Lui-King J, Mandaharisoa ST, Rakotondramanana M, Ranaivo HN, Pariasca-Tanaka J, Kanegae HK, Iwata H, Wissuwa M.
    Theor Appl Genet; 2021 Oct; 134(10):3397-3410. PubMed ID: 34264372
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  • 6. The acceptance of zinc biofortified rice in Latin America: A consumer sensory study and grain quality characterization.
    Woods BJ, Gallego-Castillo S, Talsma EF, Álvarez D.
    PLoS One; 2020 Oct; 15(11):e0242202. PubMed ID: 33175890
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  • 7. Improving Zinc and Iron Biofortification in Wheat through Genomics Approaches.
    Wani SH, Gaikwad K, Razzaq A, Samantara K, Kumar M, Govindan V.
    Mol Biol Rep; 2022 Aug; 49(8):8007-8023. PubMed ID: 35661970
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  • 10. Down regulation of a heavy metal transporter gene influences several domestication traits and grain Fe-Zn content in rice.
    Kappara S, Neelamraju S, Ramanan R.
    Plant Sci; 2018 Nov; 276():208-219. PubMed ID: 30348320
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  • 11. Linkage disequilibrium mapping for grain Fe and Zn enhancing QTLs useful for nutrient dense rice breeding.
    Pradhan SK, Pandit E, Pawar S, Naveenkumar R, Barik SR, Mohanty SP, Nayak DK, Ghritlahre SK, Sanjiba Rao D, Reddy JN, Patnaik SSC.
    BMC Plant Biol; 2020 Feb 04; 20(1):57. PubMed ID: 32019504
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  • 12. Meta-analysis of grain iron and zinc associated QTLs identified hotspot chromosomal regions and positional candidate genes for breeding biofortified rice.
    Raza Q, Riaz A, Sabar M, Atif RM, Bashir K.
    Plant Sci; 2019 Nov 04; 288():110214. PubMed ID: 31521222
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  • 13. Genotype × environment interactions for grain iron and zinc content in rice.
    Naik SM, Raman AK, Nagamallika M, Venkateshwarlu C, Singh SP, Kumar S, Singh SK, Tomizuddin Ahmed, Das SP, Prasad K, Izhar T, Mandal NP, Singh NK, Yadav S, Reinke R, Swamy BPM, Virk P, Kumar A.
    J Sci Food Agric; 2020 Aug 30; 100(11):4150-4164. PubMed ID: 32421211
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  • 18. Impact of selenium, zinc and their interaction on key enzymes, grain yield, selenium, zinc concentrations, and seedling vigor of biofortified rice.
    Ei HH, Zheng T, Farooq MU, Zeng R, Su Y, Zhang Y, Liang Y, Tang Z, Ye X, Jia X, Zhu J.
    Environ Sci Pollut Res Int; 2020 May 30; 27(14):16940-16949. PubMed ID: 32144709
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  • 19. Genetic Analysis of Agronomic Traits and Grain Iron and Zinc Concentrations in a Doubled Haploid Population of Rice (Oryza sativa L.).
    Calayugan MIC, Formantes AK, Amparado A, Descalsota-Empleo GI, Nha CT, Inabangan-Asilo MA, Swe ZM, Hernandez JE, Borromeo TH, Lalusin AG, Mendioro MS, Diaz MGQ, Viña CBD, Reinke R, Swamy BPM.
    Sci Rep; 2020 Feb 10; 10(1):2283. PubMed ID: 32042046
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