Publications

7 Papers

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Shifts in plant architecture drive species-specific responses to drought in a Sorghum recombinant inbred line population.

Lehrer MA, Govindarajulu R, Smith F, Hawkins JS

Published: 30 October 2024 in Plant biology (Stuttgart, Germany)
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Pubmed ID: 39476337
DOI: 10.1111/plb.13733

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Genomic prediction of cereal crop architectural traits using models informed by gene regulatory circuitries from maize.

Bertolini E, Manjunath M, Ge W, Murphy MD, Inaoka M, Fliege C, Eveland AL, Lipka AE

Published: 23 October 2024 in Genetics
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Pubmed ID: 39441092
DOI: 10.1093/genetics/iyae162

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Parallel tuning of semi-dwarfism via differential splicing of Brachytic1 in commercial maize and smallholder sorghum.

Jiao S, Mamidi S, Chamberlin MA, Beatty M, Thatcher S, Simcox KD, Maina F, Wang-Nan H, Johal GS, Heetland L, Marla SR, Meeley RB, Schmutz J, Morris GP, Multani DS

Published: 22 September 2023 in The New phytologist
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Pubmed ID: 37737036
DOI: 10.1111/nph.19273

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Integrating stay-green and PIN-FORMED genes: PIN-FORMED genes as potential targets for designing climate-resilient cereal ideotypes.

Wong ACS, van Oosterom EJ, Godwin ID, Borrell AK

Published: 14 July 2023 in AoB PLANTS
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Pubmed ID: 37448862
DOI: 10.1093/aobpla/plad040

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Genome-Wide Identification of Gramineae Brassinosteroid-Related Genes and Their Roles in Plant Architecture and Salt Stress Adaptation.

Huang J, Ma S, Zhang K, Liu X, Hu L, Wang W, Zheng L

Published: 29 May 2022 in International journal of molecular sciences
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Pubmed ID: 35628372
DOI: 10.3390/ijms23105551

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Integration of high-density genetic mapping with transcriptome analysis uncovers numerous agronomic QTL and reveals candidate genes for the control of tillering in sorghum.

Govindarajulu R, Hostetler AN, Xiao Y, Chaluvadi SR, Mauro-Herrera M, Siddoway ML, Whipple C, Bennetzen JL, Devos KM, Doust AN, Hawkins JS

Published: 14 March 2021 in G3 (Bethesda, Md.)
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Pubmed ID: 33712819
DOI: 10.1093/g3journal/jkab024

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Genotyping by Sequencing of 393 Sorghum bicolor BTx623 × IS3620C Recombinant Inbred Lines Improves Sensitivity and Resolution of QTL Detection.

Kong W, Kim C, Zhang D, Guo H, Tan X, Jin H, Zhou C, Shuang LS, Goff V, Sezen U, Pierce G, Compton R, Lemke C, Robertson J, Rainville L, Auckland S, Paterson AH

Published: 2 June 2018 in G3 (Bethesda, Md.)
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Pubmed ID: 29853656
DOI: 10.1534/g3.118.200173

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