Publications

247 Papers

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RAD-seq-Based High-Density Linkage Map Construction and QTL Mapping of Biomass-Related Traits in Sorghum using the Japanese Landrace Takakibi NOG.

Kajiya-Kanegae H, Takanashi H, Fujimoto M, Ishimori M, Ohnishi N, Wacera WF, Omollo EA, Kobayashi M, Yano K, Nakano M, Kozuka T, Kusaba M, Iwata H, Tsutsumi N, Sakamoto W

Published: 1 May 2020 in Plant & cell physiology
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Pubmed ID: 32353144
DOI: 10.1093/pcp/pcaa056

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Transcriptome analysis of drought-tolerant sorghum genotype SC56 in response to water stress reveals an oxidative stress defense strategy.

Azzouz-Olden F, Hunt AG, Dinkins R

Published: 19 April 2020 in Molecular biology reports
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Pubmed ID: 32303956
DOI: 10.1007/s11033-020-05396-5

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Consumer Acceptance and Willingness to Pay for Instant Cereal Products With Food-to-Food Fortification in Eldoret, Kenya.

De Groote H, Mugalavai V, Ferruzzi M, Onkware A, Ayua E, Duodu KG, Ndegwa M, Hamaker BR

Published: 17 March 2020 in Food and nutrition bulletin
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Pubmed ID: 32174149
DOI: 10.1177/0379572119876848

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Drought delays development of the sorghum root microbiome and enriches for monoderm bacteria.

Xu L, Naylor D, Dong Z, Simmons T, Pierroz G, Hixson KK, Kim YM, Zink EM, Engbrecht KM, Wang Y, Gao C, DeGraaf S, Madera MA, Sievert JA, Hollingsworth J, Birdseye D, Scheller HV, Hutmacher R, Dahlberg J, Jansson C, Taylor JW, Lemaux PG, Coleman-Derr D

Published: 19 April 2018 in Proceedings of the National Academy of Sciences of the United States of America
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Pubmed ID: 29666229
DOI: 10.1073/pnas.1717308115

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Metabolomics of sorghum roots during nitrogen stress reveals compromised metabolic capacity for salicylic acid biosynthesis.

Sheflin AM, Chiniquy D, Yuan C, Goren E, Kumar I, Braud M, Brutnell T, Eveland AL, Tringe S, Liu P, Kresovich S, Marsh EL, Schachtman DP, Prenni JE

Published: 28 June 2019 in Plant direct
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Pubmed ID: 31245765
DOI: 10.1002/pld3.122

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A new reference genome for Sorghum bicolor reveals high levels of sequence similarity between sweet and grain genotypes: implications for the genetics of sugar metabolism.

Cooper EA, Brenton ZW, Flinn BS, Jenkins J, Shu S, Flowers D, Luo F, Wang Y, Xia P, Barry K, Daum C, Lipzen A, Yoshinaga Y, Schmutz J, Saski C, Vermerris W, Kresovich S

Published: 28 May 2019 in BMC genomics
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Pubmed ID: 31133004
DOI: 10.1186/s12864-019-5734-x

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Conserved defense responses between maize and sorghum to Exserohilum turcicum.

Zhang X, Fernandes SB, Kaiser C, Adhikari P, Brown PJ, Mideros SX, Jamann TM

Published: 12 February 2020 in BMC plant biology
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Pubmed ID: 32041528
DOI: 10.1186/s12870-020-2275-z

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Genome-wide association study reveals that different pathways contribute to grain quality variation in sorghum (Sorghum bicolor).

Kimani W, Zhang LM, Wu XY, Hao HQ, Jing HC

Published: 2 February 2020 in BMC genomics
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Pubmed ID: 32005168
DOI: 10.1186/s12864-020-6538-8

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Transcriptome Analysis of Drought-Resistant and Drought-Sensitive Sorghum (Sorghum bicolor) Genotypes in Response to PEG-Induced Drought Stress.

Abdel-Ghany SE, Ullah F, Ben-Hur A, Reddy ASN

Published: 30 January 2020 in International journal of molecular sciences
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Pubmed ID: 31991584
DOI: 10.3390/ijms21030772

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Common metabolic networks contribute to carbon sink strength of sorghum internodes: implications for bioenergy improvement.

Li Y, Tu M, Feng Y, Wang W, Messing J

Published: 14 December 2019 in Biotechnology for biofuels
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Pubmed ID: 31832097
DOI: 10.1186/s13068-019-1612-7

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Interaction Between Induced and Natural Variation at oil yellow1 Delays Reproductive Maturity in Maize.

Khangura RS, Venkata BP, Marla SR, Mickelbart MV, Dhungana S, Braun DM, Dilkes BP, Johal GS

Published: 12 December 2019 in G3 (Bethesda, Md.)
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Pubmed ID: 31822516
DOI: 10.1534/g3.119.400838

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Deterioration of ovary plays a key role in heat stress-induced spikelet sterility in sorghum.

Chiluwal A, Bheemanahalli R, Kanaganahalli V, Boyle D, Perumal R, Pokharel M, Oumarou H, Jagadish SVK

Published: 9 November 2019 in Plant, cell & environment
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Pubmed ID: 31702833
DOI: 10.1111/pce.13673

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Sorghum MSD3 Encodes an ω-3 Fatty Acid Desaturase that Increases Grain Number by Reducing Jasmonic Acid Levels.

Dampanaboina L, Jiao Y, Chen J, Gladman N, Chopra R, Burow G, Hayes C, Christensen SA, Burke J, Ware D, Xin Z

Published: 31 October 2019 in International journal of molecular sciences
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Pubmed ID: 31661847
DOI: 10.3390/ijms20215359

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Large-scale GWAS in sorghum reveals common genetic control of grain size among cereals.

Tao Y, Zhao X, Wang X, Hathorn A, Hunt C, Cruickshank AW, van Oosterom EJ, Godwin ID, Mace ES, Jordan DR

Published: 30 October 2019 in Plant biotechnology journal
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Pubmed ID: 31659829
DOI: 10.1111/pbi.13284

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Transcriptome analysis reveals candidate genes related to phosphorus starvation tolerance in sorghum.

Zhang J, Jiang F, Shen Y, Zhan Q, Bai B, Chen W, Chi Y

Published: 13 July 2019 in BMC plant biology
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Pubmed ID: 31296169
DOI: 10.1186/s12870-019-1914-8

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Genome-Wide Association Mapping of Anthracnose (Colletotrichum sublineolum) Resistance in NPGS Ethiopian Sorghum Germplasm.

Cuevas HE, Prom LK, Cruet-Burgos CM

Published: 11 July 2019 in G3 (Bethesda, Md.)
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Pubmed ID: 31289022
DOI: 10.1534/g3.119.400350

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Response of Sorghum Enhanced in Monolignol Biosynthesis to Stalk Rot Pathogens.

Funnell-Harris DL, Sattler SE, O'Neill PM, Gries T, Tetreault HM, Clemente TE

Published: 20 June 2019 in Plant disease
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Pubmed ID: 31215851
DOI: 10.1094/PDIS-09-18-1622-RE

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A Large-Scale Genome-Wide Association Analyses of Ethiopian Sorghum Landrace Collection Reveal Loci Associated With Important Traits.

Girma G, Nida H, Seyoum A, Mekonen M, Nega A, Lule D, Dessalegn K, Bekele A, Gebreyohannes A, Adeyanju A, Tirfessa A, Ayana G, Taddese T, Mekbib F, Belete K, Tesso T, Ejeta G, Mengiste T

Published: 14 June 2019 in Frontiers in plant science
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Pubmed ID: 31191590
DOI: 10.3389/fpls.2019.00691

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New candidate loci and marker genes on chromosome 7 for improved chilling tolerance in sorghum.

Moghimi N, Desai JS, Bheemanahalli R, Impa SM, Vennapusa AR, Sebela D, Perumal R, Doherty CJ, Jagadish SVK

Published: 6 April 2019 in Journal of experimental botany
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Pubmed ID: 30949711
DOI: 10.1093/jxb/erz143

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An Integrated Genotyping-by-Sequencing Polymorphism Map for Over 10,000 Sorghum Genotypes.

Hu Z, Olatoye MO, Marla S, Morris GP

Published: 6 April 2019 in The plant genome
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Pubmed ID: 30951089
DOI: 10.3835/plantgenome2018.06.0044

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Global Responses of Resistant and Susceptible Sorghum (Sorghum bicolor) to Sugarcane Aphid (Melanaphis sacchari).

Tetreault HM, Grover S, Scully ED, Gries T, Palmer NA, Sarath G, Louis J, Sattler SE

Published: 12 March 2019 in Frontiers in plant science
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Pubmed ID: 30853964
DOI: 10.3389/fpls.2019.00145

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Genome-scale identification, classification, and tissue specific expression analysis of late embryogenesis abundant (LEA) genes under abiotic stress conditions in Sorghum bicolor L.

Nagaraju M, Kumar SA, Reddy PS, Kumar A, Rao DM, Kavi Kishor PB

Published: 17 January 2019 in PloS one
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Pubmed ID: 30650107
DOI: 10.1371/journal.pone.0209980

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Deleterious Mutation Burden and Its Association with Complex Traits in Sorghum (Sorghum bicolor).

Valluru R, Gazave EE, Fernandes SB, Ferguson JN, Lozano R, Hirannaiah P, Zuo T, Brown PJ, Leakey ADB, Gore MA, Buckler ES, Bandillo N

Published: 10 January 2019 in Genetics
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Pubmed ID: 30622134
DOI: 10.1534/genetics.118.301742

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Systemic signaling contributes to the unfolded protein response of the plant endoplasmic reticulum.

Lai YS, Stefano G, Zemelis-Durfee S, Ruberti C, Gibbons L, Brandizzi F

Published: 27 September 2018 in Nature communications
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Pubmed ID: 30254194
DOI: 10.1038/s41467-018-06289-9

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Association mapping by aerial drone reveals 213 genetic associations for Sorghum bicolor biomass traits under drought.

Spindel JE, Dahlberg J, Colgan M, Hollingsworth J, Sievert J, Staggenborg SH, Hutmacher R, Jansson C, Vogel JP

Published: 19 September 2018 in BMC genomics
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Pubmed ID: 30223789
DOI: 10.1186/s12864-018-5055-5

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Modulating plant growth-metabolism coordination for sustainable agriculture.

Li S, Tian Y, Wu K, Ye Y, Yu J, Zhang J, Liu Q, Hu M, Li H, Tong Y, Harberd NP, Fu X

Published: 17 August 2018 in Nature
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Pubmed ID: 30111841
DOI: 10.1038/s41586-018-0415-5

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Transcriptome and metabolome reveal distinct carbon allocation patterns during internode sugar accumulation in different sorghum genotypes.

Li Y, Wang W, Feng Y, Tu M, Wittich PE, Bate NJ, Messing J

Published: 28 July 2018 in Plant biotechnology journal
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Pubmed ID: 30051585
DOI: 10.1111/pbi.12991

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Field-based high-throughput phenotyping of plant height in sorghum using different sensing technologies.

Wang X, Singh D, Marla S, Morris G, Poland J

Published: 13 July 2018 in Plant methods
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Pubmed ID: 29997682
DOI: 10.1186/s13007-018-0324-5

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Engineering linear, branched-chain triterpene metabolism in monocots.

Kempinski C, Jiang Z, Zinck G, Sato SJ, Ge Z, Clemente TE, Chappell J

Published: 7 July 2018 in Plant biotechnology journal
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Pubmed ID: 29979490
DOI: 10.1111/pbi.12983

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A new high-throughput assay for determining soluble sugar in sorghum internode-extracted juice.

Li Y, Mehta R, Messing J

Published: 28 June 2018 in Planta
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Pubmed ID: 29948129
DOI: 10.1007/s00425-018-2932-8

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High-Polyphenol Sorghum Bran Extract Inhibits Cancer Cell Growth Through ROS Induction, Cell Cycle Arrest, and Apoptosis.

Smolensky D, Rhodes D, McVey DS, Fawver Z, Perumal R, Herald T, Noronha L

Published: 8 May 2018 in Journal of medicinal food
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Pubmed ID: 29733262
DOI: 10.1089/jmf.2018.0008

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Population genomics of sorghum (Sorghum bicolor) across diverse agroclimatic zones of Niger.

Maina F, Bouchet S, Marla SR, Hu Z, Wang J, Mamadou A, Abdou M, Saïdou AA, Morris GP

Published: 13 February 2018 in Genome
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Pubmed ID: 29432699
DOI: 10.1139/gen-2017-0131

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Whole-Genome Sequence Accuracy Is Improved by Replication in a Population of Mutagenized Sorghum.

Addo-Quaye C, Tuinstra M, Carraro N, Weil C, Dilkes BP

Published: 31 January 2018 in G3 (Bethesda, Md.)
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Pubmed ID: 29378822
DOI: 10.1534/g3.117.300301

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Sorghum root-system classification in contrasting P environments reveals three main rooting types and root-architecture-related marker-trait associations.

Parra-Londono S, Kavka M, Samans B, Snowdon R, Wieckhorst S, Uptmoor R

Published: 20 January 2018 in Annals of botany
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Pubmed ID: 29351588
DOI: 10.1093/aob/mcx157

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Genetic architecture of photosynthesis in Sorghum bicolor under non-stress and cold stress conditions.

Ortiz D, Hu J, Salas Fernandez MG

Published: 6 October 2017 in Journal of experimental botany
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Pubmed ID: 28981780
DOI: 10.1093/jxb/erx276

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Development of a phenotyping platform for high throughput screening of nodal root angle in sorghum.

Joshi DC, Singh V, Hunt C, Mace E, van Oosterom E, Sulman R, Jordan D, Hammer G

Published: 14 July 2017 in Plant methods
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Pubmed ID: 28702072
DOI: 10.1186/s13007-017-0206-2

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Validation of QTL mapping and transcriptome profiling for identification of candidate genes associated with nitrogen stress tolerance in sorghum.

Gelli M, Konda AR, Liu K, Zhang C, Clemente TE, Holding DR, Dweikat IM

Published: 13 July 2017 in BMC plant biology
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Pubmed ID: 28697783
DOI: 10.1186/s12870-017-1064-9

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Dynamics of gene expression during development and expansion of vegetative stem internodes of bioenergy sorghum.

Kebrom TH, McKinley B, Mullet JE

Published: 27 June 2017 in Biotechnology for biofuels
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Pubmed ID: 28649278
DOI: 10.1186/s13068-017-0848-3

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Expression of the Maize Dof1 Transcription Factor in Wheat and Sorghum.

Peña PA, Quach T, Sato S, Ge Z, Nersesian N, Changa T, Dweikat I, Soundararajan M, Clemente TE

Published: 21 April 2017 in Frontiers in plant science
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Pubmed ID: 28424717
DOI: 10.3389/fpls.2017.00434

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Salmon provides fast and bias-aware quantification of transcript expression.

Patro R, Duggal G, Love MI, Irizarry RA, Kingsford C

Published: 7 March 2017 in Nature methods
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Pubmed ID: 28699261
DOI: 10.1038/nmeth.4197

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Genetic architecture of kernel composition in global sorghum germplasm.

Rhodes DH, Hoffmann L, Rooney WL, Herald TJ, Bean S, Boyles R, Brenton ZW, Kresovich S

Published: 7 January 2017 in BMC genomics
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Pubmed ID: 28056770
DOI: 10.1186/s12864-016-3403-x

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Forward Genetics by Sequencing EMS Variation-Induced Inbred Lines.

Addo-Quaye C, Buescher E, Best N, Chaikam V, Baxter I, Dilkes BP

Published: 4 January 2017 in G3 (Bethesda, Md.)
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Pubmed ID: 28040779
DOI: 10.1534/g3.116.029660

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Transcriptomic analysis comparing stay-green and senescent Sorghum bicolor lines identifies a role for proline biosynthesis in the stay-green trait.

Johnson SM, Cummins I, Lim FL, Slabas AR, Knight MR

Published: 1 September 2015 in Journal of experimental botany
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Pubmed ID: 26320239
DOI: 10.1093/jxb/erv405

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Identification of novel drought-responsive microRNAs and trans-acting siRNAs from Sorghum bicolor (L.) Moench by high-throughput sequencing analysis.

Katiyar A, Smita S, Muthusamy SK, Chinnusamy V, Pandey DM, Bansal KC

Published: 4 August 2015 in Frontiers in plant science
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Pubmed ID: 26236318
DOI: 10.3389/fpls.2015.00506

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Tobacco drought stress responses reveal new targets for Solanaceae crop improvement.

Rabara RC, Tripathi P, Reese RN, Rushton DL, Alexander D, Timko MP, Shen QJ, Rushton PJ

Published: 1 July 2015 in BMC genomics
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Pubmed ID: 26123791
DOI: 10.1186/s12864-015-1575-4

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MOROKOSHI: transcriptome database in Sorghum bicolor.

Makita Y, Shimada S, Kawashima M, Kondou-Kuriyama T, Toyoda T, Matsui M

Published: 17 December 2014 in Plant & cell physiology
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Pubmed ID: 25505007
DOI: 10.1093/pcp/pcu187

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Arabidopsis drought-induced protein Di19-3 participates in plant response to drought and high salinity stresses.

Qin LX, Li Y, Li DD, Xu WL, Zheng Y, Li XB

Published: 15 September 2014 in Plant molecular biology
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Pubmed ID: 25516281
DOI: 10.1007/s11103-014-0251-4

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