eprintid: 11273 rev_number: 8 eprint_status: archive userid: 1305 dir: disk0/00/01/12/73 datestamp: 2019-09-03 09:12:32 lastmod: 2019-09-03 09:13:29 status_changed: 2019-09-03 09:12:32 type: article metadata_visibility: show creators_name: Abbai, R creators_name: Singh, V K creators_name: Nachimuthu, V V creators_name: Sinha, P creators_name: Selvaraj, R creators_name: Vipparla, A K creators_name: Singh, A K creators_name: Singh, U M creators_name: Varshney, R K creators_name: Kumar, A creators_gender: Female icrisatcreators_name: Sinha, P icrisatcreators_name: Varshney, R K affiliation: International Rice Research Institute, South-Asia Hub, ICRISAT Campus (Hyderabad) affiliation: ICRISAT (Patancheru) affiliation: International Rice Research Institute (Metro Manila) country: India country: Philippines title: Haplotype analysis of key genes governing grain yield and quality traits across 3K RG panel reveals scope for the development of tailor-made rice with enhanced genetic gains ispublished: pub subjects: S2021 subjects: s2.13 divisions: CRPS3 crps: crp1.8 full_text_status: public keywords: 3K RG panel, cloned genes, haplotype mining, haplotypebased breeding, genetics, rice note: Authors are thankful to the Department of Biotechnology (DBT), Government of India, Bill and Melinda Gates Foundation (BMGF), Indian Council of Agricultural Research (ICAR), New Delhi and the CGIAR Research Program on Rice for providing financial support. abstract: Though several genes governing various major traits have been reported in rice, their superior haplotype combinations for developing ideal variety remains elusive. In this study, haplotype analysis of 120 previously functionally characterized genes, influencing grain yield (87 genes) and grain quality (33 genes) revealed significant variations in the 3K rice genome (RG) panel. For selected genes, meta‐expression analysis using already available datasets along with co‐expression network provided insights at systems level. Also, we conducted candidate gene based association study for the 120 genes and identified 21 strongly associated genes governing 10‐grain yield and quality traits. We report superior haplotypes upon phenotyping the subset of 3K RG panel, SD1‐H8 with haplotype frequency (HF) of 30.13% in 3K RG panel, MOC1‐H9 (HF: 23.08%), IPA1‐H14 (HF: 6.64%), DEP3‐H2 (HF: 5.59%), DEP1‐H2 (HF: 37.53%), SP1‐H3 (HF: 5.05%), LAX1‐H5 (HF: 1.56%), LP‐H13 (3.64%), OSH1‐H4 (5.52%), PHD1‐H14 (HF: 15.21%), AGO7‐H15 (HF: 3.33%), ROC5‐H2 (31.42%), RSR1‐H8 (HF: 4.20%) and OsNAS3‐H2 (HF: 1.00%). For heading date, Ghd7‐H8 (HF: 3.08%), TOB1‐H10 (HF: 4.60%) flowered early, Ghd7‐H14 (HF: 42.60%), TRX1‐H9 (HF: 27.97%), OsVIL3‐H14 (HF: 1.72%) for medium duration flowering, while Ghd7‐H6 (HF: 1.65%), SNB‐H9 (HF: 9.35%) were late flowering. GS5‐H4 (HF: 65.84%) attributed slender, GS5‐H5 (HF: 29.00%), GW2‐H2 (HF: 4.13%) were medium slender and GS5‐H9 (HF: 2.15%) for bold grains. Furthermore, haplotype analysis explained possible genetic basis for superiority of selected mega‐varieties. Overall, this study suggests the possibility for developing next‐generation tailor‐made rice with superior haplotype combinations of target genes suiting future food and nutritional demands via haplotype‐based breeding. date: 2019-01 date_type: published publication: Plant Biotechnology Journal (TSI) volume: 17 number: 8 publisher: Wiley pagerange: 1612-1622 id_number: 10.1111/pbi.13087 refereed: TRUE issn: 14677644 official_url: https://doi.org/10.1111/pbi.13087 related_url_url: https://scholar.google.co.in/scholar?hl=en&as_sdt=0%2C5&q=Haplotype+analysis+of+key+genes+governing+grain+yield+and+quality+traits+across+3K+RG+panel+reveals+scope+for+the+development+of+tailor-made+rice+with+enhanced+genetic+gains.&btnG= related_url_type: pub citation: Abbai, R and Singh, V K and Nachimuthu, V V and Sinha, P and Selvaraj, R and Vipparla, A K and Singh, A K and Singh, U M and Varshney, R K and Kumar, A (2019) Haplotype analysis of key genes governing grain yield and quality traits across 3K RG panel reveals scope for the development of tailor-made rice with enhanced genetic gains. Plant Biotechnology Journal (TSI), 17 (8). pp. 1612-1622. ISSN 14677644 document_url: http://oar.icrisat.org/11273/1/pbi.13087.pdf