1. Staff

Malay Saha, Ph.D. Publications

Publication List

Wang, Y., Dong, W., Saha, M. C., Udvardi, M. K. & Kang, Y. (2021). Improved node culture methods for rapid vegetative propagation of switchgrass (Panicum virgatum L.). BMC Plant Biology, 21 (128).

Wang, Y., Dong, W., Saha, M. C., Udvardi, M. K. & Kang, Y. (2021). Improved node culture methods for rapid vegetative propagation of switchgrass (Panicum virgatum L. BMC Plant Biology, 21 (128).

Lovell, J. T., MacQueen, A. H., Mamidi, S., Bonnette, J., Jenkins, J., Napier, J. D., Sreedasyam, A., Healey, A., Session, A., Shu, S., Barry, K. W., Boston, L., Daum, C., Deshpande, S., Ewing, A., Grabowskiy, P., Haque, T., Harrison, M., Jiang, J., Kudrna, D., Lipzen, A., Pendergast, IV, T. H., Plott, C., Qi, P., Saski, C. A., Shakirov, E. V., Sims, D., Sharma, M., Sharma, R., Stewart, A., Singan, V. R., Tang, Y., Thibivillier, S., Webber, J., Weng, X., Williams, M., Wu, G.A., Yoshinaga, Y., Zane, M., Zhang, L., Zhang, J., Behram, K. D., Boe, A., Fay, P. A., Fritschi, F., Jastrow, J. D., Lloyd-Reilley, J., Martínez-Reyna, J. M., Matamala, R., Mitchell, R. B., Rouquette, Jr., F. M., Ronald, P., Saha, M. C., Tobias, C., Udvardi, M. K., Wing, R. A., Wu, Y., Bartley, L. E., Casler, M. D., Devos, K. M., Lowry , D., Rokhsar, D. S., Grimwood, J., Juenger, T. & Schmutz, J. (2021). Genomic mechanisms of climate adaptation in polyploid bioenergy switchgrass. Nature, , https://doi.org/10.1038/s41586-020-03127-1.

Sharma, N., Schneider-Canny, R., Chekhovskiy, K., Kwon, S. & Saha, M. C. (2020). Opportunities for Increased Nitrogen Use Efficiency in Wheat for Forage Use. Plants, 9 (12), 1738 doi:10.3390/plants9121738.

Ray, P., Guo, Y., Chi, M-H, Krom, N., Saha, M. C. & Craven, K. D. (2020). Serendipita besciipromotes winter wheat growth and modulates the host root transcriptome under phosphorus and nitrogen starvation. Environmental Microbiology, (epub ahead of print), doi: 10.1111/1462-2920.15242.

Jensen, E., Shafiei, R., Ma, X - F., Serba, D. D., Smith, D. P., Slavov, G., Robson, P., Farrar, K., Jones, S.T., Swaller, T., Flavell, R., Clifton-Brown, J., Saha, M. C. & Donnison, I. (2020). Linkage mapping evidence for a synteny QTL associated with flowering time in perennial C4 rhizomatous grasses Miscanthus and switchgrass. GCB Bioenergy, (epub ahead of print).

Talukder, S. K., Bhamidimarri, S., Chekhovskiy, K. & Saha, M. C. (2020). Mapping QTL for summer dormancy related traits in tall fescue (Festuca arundinacea Schreb.). Scientific Reports, 10 (1), 14539 doi: https://doi.org/10.1038/s41598-020-71488-8.

Ali, S., Serba, D. D., Walker, D. W., Jenkins, J., Schmutz, J., Bhamidimarri, S. & Saha, M. C. (2020). Genome-wide quantitative trait loci detection for biofuel traits in switchgrass (Panicum virgatum L.). GCB Bioenergy, 2020, 1-18 doi: 10.1111/gcbb.12731.

Slessarev, E. W., Nuccio, E., McFarlane, K. J., Ramon, C. E., Saha, M. C., Firestone, M. & Pett-Ridge, J. (2020). Quantifying deep organic C accumulation under switchgrass (Panicum virgatum) using natural abundance 14C in three marginal soils. GCB Bioenergy, 12 (10), https://doi.org/10.1111/gcbb.12729.

Sher, Y., Baker, N. R., Herman, D., Fossum, C., Hale, L., Zhang, X., Nuccio, E., Saha, M. C., Zhou, J., Pett-Ridge, J. & Firestone, M. (2020). Microbial extracellular polysaccharide production and aggregate stability controlled by switchgrass (Panicum virgatum) root biomass and soil water potential. Soil Biology and Biochemistry, 143 (107742), https://doi.org/10.1016/j.soilbio.2020.107742.

Islam, M. S., Buttelmann, G. L., Chekhovskiy, K., Kwon, T. & Saha, M. C. (2019). Isolation of Intact Chloroplast for Sequencing Plastid Genomes of Five Festuca Species. Planta, 8 (12), 606 doi: https://doi.org/10.3390/plants8120606.

Ayyappan, V., Sripathi, V. R., Kalavacharla, V., Saha, M. C., Thimmapuram, J., Bhide, K. & Fiedler, E. (2019). Genome-wide identification of histone methylation (H3K9me2) and acetylation (H4K12ac) marks in two ecotypes of switchgrass (Panicum virgatum L.). BMC Genomics, 20 (1), 667 doi: 10.1186/s12864-019-6038-x.

Kopecký, D., Talukder, S. K., Zwyrtková, J., Trammell, M. A., Dolezel, J. & Saha, M. C. (2019). Inter-morphotype hybridization in tall fescue (Festuca arundinacea Schreb.): exploration of meiotic irregularities and potential for breeding. Euphytica, 215 (97), 5 https://doi.org/10.1007/s10681-019-2419-0.

Schneider-Canny, R., Chekhovskiy, K., Munoz, P., Kwon, S. & Saha, M. C. (2019). Characterization of bermudagrass (Cynodon dactylon L.) germplasm for nitrogen use efficiency. Euphytica, 215 (3), doi: 10.1007/s10681-019-2347-z.

Jiang, Q., Webb, S. L., Bhandari, H., Bouton, J. H. & Saha, M. C. (2019). Ecotypic and genotypic effects on regrowth and heading date in switchgrass (Panicum virgatum). Plant Direct, 3 (1), e00111 https://doi.org/10.1002/pld3.111.

Ali, S., Serba, D. D., Jenkins, J., Kwon, S., Schmutz, J. & Saha, M. C. (2018). High Density Linkage map reveals QTL underlying growth traits in AP13xVS16 bi-parental population of switchgrass. GCB Bioenergy, 11 (5), 672-690 doi: 10.1111/gcbb.12592.

Saha, M. C. (2018). Drought tolerance: an important characteristic for tall fescue persistence. Noble News & Views, August 1, pg.10-11.

Ramstein, G. P., Evans, J., Nandety, A., Saha, M. C., Brummer, E. C., Kaeppler, S. M., Buell, C. R. & Casler, M. D. (2018). Candidate variants for additive and interactive effects on bioenergy traits in switchgrass (Panicum Virgatum L.) identified by genome-wide association analyses. Plant Genome, 11 (3), 180002 doi:10.3835/plantgenome2018.01.0002.

Talukder, S. K., Azhaguvel, P., Chekhovskiy, K. & Saha, M. C. (2018). Molecular discrimination of tall fescue morphotypes in association with Festuca relatives. PLoS ONE, (epub ahead of print), https://doi.org/10.1371/journal.pone.0191343 .

Talukder, S. K. & Saha, M. C. (2017). Toward Genomics-Based Breeding in C3 Cool-Season Perennial Grasses. Frontiers in Plant Science, 8 (1317), doi: 10.3389/fpls.2017.01317.

Dworkin, M., Xie, S., Saha, M. C., Thimmapuram, J. & Kalavacharla, V. (2017). Analyses of methylomes of upland and lowland switchgrass (Panicum virgatum) ecotypes using MeDIP-seq and BS-seq. BMC Genomics, 18 (851), doi: 10.1186/s12864-017-4218-0.

Saha, M. C. & Ma, X - F. (2016). Noble Foundation brings cereal forage to forefront. Hay & Forage Grower , 11, 28.

Serba, D. D., Uppalapati, S. R., Krom, N., Mukherjee, S., Tang, Y., Mysore, K. S. & Saha, M. C. (2016). Transcriptome analysis in switchgrass discloses ecotype difference in photosynthetic efficiency. BMC Genomics, 17 (1), 1040 doi: 10.1186/s12864-016-3377-8.

Saha, M. C., Brummer, E. C., Kaeppler, S.M. & Bhandari, H. (2016). Deciphering Natural Allelic Variation in Switchgrass for Biomass Yield and Quality Using a Nested Association Mapping Population. SciTech Connect, October 28 (epub ), doi: 10.2172/1330376.

Ayyappan, V., Saha, M. C., Thimmapuram, J., Sripathi, V. R., Bhide, K., Fiedler, E., Hayford, R. K. & Kalavacharla, V. (Ka (2016). Comparative transcriptome profiling of upland (VS16) and lowland (AP13) ecotypes of switchgrass. Plant Cell Reports, 36 (1), 129-150 doi: 10.1007/s00299-016-2065-0.

Crampton, M. C., Sripathi, V. R., Ayyappan, V., Saha, M. C. & Kalavacharla, V. (Ka (2016). Comparison of AP13 and VS16 switchgrass (panicum virgatum) methylomes using high-throughput sequencing. In International Plant and Animal Genome Conference XXIV Jan 9-13, 2016 .San Diego, California: Plant & Animal Genome.

Fiedler, E., Ayyappan, V., Sripathi, V. R., Saha, M. C., Thimmapuram, J., Bhide, K. & Kalavacharla, V. (Ka (2016). Transcriptome analysis of two switchgrass ecotypes: AP13 (lowland) and VS16 (upland). In International Plant and Animal Genome Conference XXIV Jan 9-13, 2016 .San Diego, California: Plant & Animal Genome.

Ali, S., Chang, J., Serba, D. D., Bhandari, H., Bartley, L.E. & Saha, M. C. (2016). Cataloging natural allelic variations in switchgrass (panicum virgatum L.) NAM parental genomes. In International Plant and Animal Genome Conference XXIV Jan 9-13, 2016 .San Diego, California: Plant & Animal Genome.

Talukder, S. K., Chang, J., Mukherjee, S., Sun, L., Chekhovskiy, K., Tang, Y. & Saha, M. C. (2016). Transcriptomics study in tall fescue for summer dormancy. In International Plant and Animal Genome Conference XXIV Jan 9-13, 2016 .San Diego, California: Plant & Animal Genome.

Bartley, L.E., Wu, G.A., Wu, Y., Rokhsar, D. S., Schmutz, J., Saha, M. C., Barry, K. W., Thibivilliers, S., Juenger, T., Lowry , D., Buell, C.R, Evans, J. K., Casler, M.D., Auer, C., Devos, K. M. & Brummer, E. C. (2016). Expected and unexpected patterns of chromosomal inheritance from resequencing of tetraploid switchgrass. In International Plant and Animal Genome Conference XXIV Jan 9-13, 2016 .San Diego, California: Plant & Animal Genome.

Saha, M. C., Talukder, S. K., Azhaguvel, P., Mukherjee, S. & Tang, Y. (2016). A composite approach to study drought tolerance in tall fescue. In International Plant and Animal Genome Conference XXIV Jan 9-13, 2016 .San Diego, California: Plant & Animal Genome.

Serba, D. D., Sykes, R., Gjersing, E., Decker, S. R., Daverdin, G., Devos, K. M., Brummer, E. C. & Saha, M. C. (2016). Cell Wall Composition and Underlying QTL in an F1 Pseudo-Testcross Population of Switchgrass. BioEnergy Research, 9 (3), 836-850 doi:10.1007/s12155-016-9733-3 .

Bartley, L. E., Zhao, K., Zhang, C., Thibivilliers, S., Nandety, A., Acharya, A., Serba, D. D., Li, X., Brummer, E. C., Santoro, N., Saha, M. C. & Zhu, L. (2015). Genomics and genetics of switchgrass cell wall quality. In International Plant and Animal Genome ..

Saha, M. C., Baker, J. L. & Bouton, J. H. (2015). Registration of 'NF201' Forage Triticale. Journal of Plant Registrations, 9 (2)185-189.

Dierking, R.M., Azhaguvel, P., Kallenbach, R. L., Saha, M. C., Bouton, J. H., Chekhovskiy, K., Hopkins, A. A. & Kopecký, D. (2015). Linkage maps of a mediterranean × continental tall fescue population and their comparative analysis with other poaceae species. Plant Genome, 8 (1), 1-18 doi: 35/plantgenome2014.07.0032.

Daverdin, G., Bahri, B. A., Wu, X., Serba, D. D., Tobias, C., Saha, M. C. & Devos, K. M. (2015). Comparative relationships and chromosome evolution in switchgrass (panicum virgatum) and its genomic model, foxtail millet (setaria italica). BioEnergy Research, 8 (1), 137-151 doi: 10.1007/s12155-014-9508-7.

Saha, M. C., Talukder, S. K., Azhaguvel, P., Mukhergee, S. & Chekhovskiy, K. (2015). Deciphering Drought Tolerance in Tall Fescue [Lolium arundinaceum (Schreb.) Darbysh.]. In Budak, Hikmet, Spangenberg, G. (eds.), Molecular Breeding of Forage and Turf. (pp. 1-7). Cham: Springer International Publishing.

Saha, M. C., Baker, J. L. & Bouton, J. H. (2015). Registration of ‘NF402’ Forage Oat. Journal of Plant Registrations, 9 (3)311-314.

Talukder, S. K., Azhaguvel, P., Mukherjee, S., Young, C. A., Tang, Y., Krom, N. & Saha, M. C. (2015). De novo assembly and characterization of tall fescue transcriptome under water stress. Plant Genome, 8 (2), doi:10.3835/plantgenome2014.09.0050.

Serba, D. D., Uppalapati, S. R., Mukherjee, S., Krom, N., Tang, Y., Mysore, K. S. & Saha, M. C. (2015). Transcriptome profiling of rust resistance in switchgrass using RNA-seq analysis. Plant Genome, 8 (12), 1-12 doi: 10.3835/plantgenome2014.10.0075.

Azhaguvel, P., Mornhinweg, D., Vidya-Saraswathi, D., Rudd, J.C., Chekhovskiy, K., Saha, M. C., Close, T. J., Dahleen, L. S. & Weng, Y. (2014). Molecular mapping of greenbug (Schizaphis graminum) resistance gene Rsg1 in barley. Plant Breeding, 133, 227-233 doi: 10.1111/pbr.12143.

Serba, D. D., Daverdin, G., Bouton, J. H., Devos, K. M., Brummer, E. C. & Saha, M. C. (2014). Quantitative trait loci (QTL) underlying biomass yield and plant height in switchgrass. BioEnergy Research, 8, 307-324 doi: 10.1007/s12155-014-9523-8.

Jiang, Q., Webb, S. L., Yesudas, C. R., Bhandari, H., Narasimhamoorthy, B., Bouton, J. H. & Saha, M. C. (2014). Variance components and heritability of biomass yield in switchgrass (Panicum virgatum L.) grown in the southern. Field Crops Research, 168, 148-155.

Li, G., Serba, D. D., Saha, M. C., Bouton, J. H., Lanzatella, C. & Tobias, C. (2014). Genetic linkage mapping and transmission ratio distortion in a three-generation four-founder population of panicum virgatum. G3: Genes|Genomes|Genetics, 4 (5), 913-923 doi:10.1534/g3.114.011825.

Bhandari, H., Webb, S. L., Bouton, J. H. & Saha, M. C. (2014). Reciprocal effects for biomass yield in lowland switchgrass. Crop Science, 54 (3), 955-962 doi:10.2135/cropsci2013.08.0532.

Bhandari, H., Walker, D. W., Bouton, J. H. & Saha, M. C. (2013). Effects of ecotypes and morphotypes in feedstock composition of switchgrass (Panicum virgatum L.). GCB Bioenergy, 6, 26-34 doi: 10.1111/gcbb.12053.

Saha, M. C. (2013). Tall Fescue. In Cai, H,. Yamada, T., Kole, C. (eds), Genetics, Genomics and Breeding of Forage Crops. (pp. 58). Boca Raton, FL: CRC Press.

Serba, D. D., Wu, L., Daverdin, G., Bahri, B. A., Wang, X., Kilian, A., Bouton, J. H., Brummer, E. C., Saha, M. C. & Devos, K. M. (2013). Linkage maps of lowland and upland tetraploid switchgrass ecotypes. BioEnergy Research, 6 (3), 953-965 doi: 10.1007/s12155-013-9315-6.

Zhang, J., Lee, Y., Torres-Jerez, I., Wang, M., Yin, Y., Chou, W-C., He, J., Shen, H., Srivastava, A. C., Pennacchio, C., Lindquist, E., Grimwood, J., Schmutz, J., Xu, Y., Sharma, M., Sharma, R., Bartley, L.E., Ronald, P., Saha, M. C., Dixon, R. A., Tang, Y. & Udvardi, M. K. (2013). Development of an integrated transcript sequence database and a gene expression atlas for gene discovery and analysis in switchgrass (Panicum virgatum L.). Plant Journal, 74 (1), 160-173 doi:10.1111/tpj.12104.

Acharya, A., Wei, Y., Saha, M. C., Devos, K. M. & Brummer, E. C. (2013). Genotyping-by-sequencing in switchgrass (Panicum virgatum): Method development and use in genetic diversity assessment. In International Plant & Animal Genome Conference Proceedings XXI January 12-16, 2013 .San Deigo, California: Plant & Animal Genome.

Serba, D. D., Uppalapati, S. R., Krom, N., Tang, Y., Mysore, K. S., Bouton, J. H., Brummer, E. C. & Saha, M. C. (2013). Transcriptome analysis using RNA-Seq for rust resistance in Switchgrass. In International Plant & Animal Genome Conference Proceedings XXI January 12-16, 2013 .San Deigo, Calafornia: Plant & Animal Genome.

Daverdin, G., Bahri, B. A., Serba, D. D., Bouton, J. H., Brummer, E. C., Saha, M. C. & Devos, K. M. (2013). Foxtail millet as a model for switchgrass – comparative relationships. In International Plant & Animal Genome Conference Proceedings XXI January 12-16,2013 .San Diego, California: Plant & Animal Genome.

Ricci, A., Chekhovskiy, K., Azhaguvel, P., Albertini, E., Falcinelli, M. & Saha, M. C. (2012). Molecular characterization of Jatropha curcas resources and identification of population-specific markers. BioEnergy Research, 5, 215–224 doi:10.1007/s12155-011-9150-6.

Uppalapati, S. R., Serba, D. D., Ishiga, Y., Szabo, L. J., Mittal, S., Bhandari, H., Bouton, J. H., Mysore, K. S. & Saha, M. C. (2012). Characterization of the rust fungus, Puccinia emaculata, and evaluation of genetic variability of rust resistance in switchgrass populations. BioEnergy Research, October, doi:10.1007/s12155-012-9263-6.

Kopecký, D., Bartoš, J., Lukaszewski, A. J., Baird, J. H., Sandve, S. R., Rognli, O. A., Kölliker, R., Byrne, S. L., Tomaszewski, C., Barth, S., Kilian, A., Cernoch, V., Klíma, M., Azhaguvel, P., Saha, M. C. & Doležel, J. (2012). DArTFest DNA Array—Applications and perspectives for grass genetics, genomics and breeding. In Barth, S., Milbourne, D. (eds.), Breeding strategies for sustainable forage and turf grass improvement. (pp. 115-119). New York, NY: Springer, Dordrecht.

Bhamidimarri, S., Saha, M. C., Payton, M. & Hopkins, A. A. (2012). Phenotyping summer dormancy in tall fescue. Crop Science, 52 (1), 413-421 doi:10.2135/cropsci2010.11.0660.

Chaluvadi, S. R., Young, P. F., Tompson, K. P., Thomas, P. E., Saha, M. C., Brummer, E. C., Devos, K. M. & Bennetzen, J. (2011). Plant genetic contributions to microbial colonization in the rhizosphere and roots of switchgrass and Setaria. BESC Bioenergy Science Center, (June 18-2, 2011).

Bhandari, H., Saha, M. C., Fasoula, V. A. , & Bouton, J. H. (2011). Estimation of genetic parameters for biomass yield in lowland switchgrass (Panicum virgatum). Crop Science, 51 (4), 1525-1533 doi:10.2135/cropsci2010.10.0588.

Pfender, W. F., Saha, M. C., Johnson, E. A. , & Slabaugh, M. B. (2011). Mapping with RAD (restriction-site associated DNA) markers to rapidly identify QTL for stem rust resistance in Lolium perenne . Theoretical and Applied Genetics, 122 (8), 1467-1480 doi:10.1007/s00122-011-1546-3.

Mosali,J., Guretzky,J., Saha,M., Norton,S. (2011). Forage yields from 2008-2009 ryegrass variety trial NF-FO-09-02. Ardmore, Oklahoma: Noble Foundation.

Serba, D. D., Vidya-Saraswathi, D., Saha, M. C. & Bouton, J. H. (2011). Mapping of QTLs for biomass, plant composition, and agronomic traits in switchgrass (abstract). In International Plant & Animal Genomes XIX Conference .Town & Country Convention Center San Diego, CA: Plant & Animal Genomes.

Bhandari, H., Saha, M. C., Mascia, P., Fasoula, V. A. , & Bouton, J. H. (2010). Variation among half-sib families and heritability for biomass yield and other traits in lowland switchgrass (Panicum virgatum L.). Crop Science, 50, 2355–2363 DOI:10.2135/cropsci2010.02.0109.

Rognli, O. A., Saha, M. C., Bhamidimarri, S. & van der Heijden, S. (2010). Fescues. In B. Boller, U.K. Posselt, F. Veronesi (eds), Handbook of Plant Breeding: Fodder Crops and Amenity Grasses vol 5. (pp. 261-292). New York, NY: Springer.

Okada, M., Lanzatella, C. , Saha, M. C., Bouton, J. H., Wu, R., & Tobias, C. (2010). Complete switchgrass genetic maps reveal subgenome collinearity, preferential pairing, and multilocus interactions. Genetics, 185, 745 - 760 DOI:10.1534/genetics.110.113910 .

Zeid, M., Yu, J., Goldowitz, I., Denton, M. E., Costich, D. E. , Jayasuriya, C. T., Saha, M. C., Elshire, R., Benscher, D., Breseghello, F., Munkvold, J., Varshney, R. K. , Belay, G., & Sorrells, M. E. (2010). Cross-amplification of EST-derived markers among 16 grass species. Field Crops Research, 116 (1), 28-35 DOI:10.1016/j.fcr.2010.03.014.

Yang, J., Worley, E., Wang, M., Lahner, B., Salt, D. E., Saha, M. C. & Udvardi, M. K. (2009). Natural variation for nutrient use and remobilization efficiencies in switchgrass. BioEnergy Research, 2 (4), 257-266 doi:10.1007/s12155-009-9055-9.

Saha, M. C., Young, C. A. & Hopkins, A. A. (2009). Genetic variation within and among wildrye (Elymus canadensis and E. virginicus) populations from the Southern Great Plains. Crop Science, 49 (3), 913-922 DOI:10.2135/cropsci2008.04.0239.

Wang, J., Bughrara, S., Mian, R. M. , Saha, M. C., & Sleper, D. A. (2009). Parental genome composition and genetic classifications of derivatives from intergeneric crosses of Festuca mairei and Lolium perenne. Molecular Breeding, 23 (2), 299-309 DOI:10.1007/s11032-008-9236-9.

Saha, M. C. & Bouton, J. H. (2009). Improved small grain varieties for livestock forage. Ag News and Views, 27 (1), 4.

Narasimhamoorthy, B., Saha, M. C., Swaller, T., & Bouton, J. H. (2008). Genetic diversity in switchgrass collections assessed by EST-SSR markers. BioEnergy Research, 1 (2), 136-146 DOI:10.1007/s12155-008-9011-0.

Baker, J. L., Saha, M. C., & Bouton, J. H. (2008). Registration of ‘Maton II’ forage rye. Journal of Plant Registrations, 2 (1), 18-19 DOI:10.3198/jpr2007.02.0077crc .

Bhandari, H., Narasimhamoorthy, B., Saha, M. C., Wood, D., & Bouton, J. H. (2008). Two methods of selecting parents to produce high yielding, lowland switchgrass synthetic cultivars(abstract). In Proceedings of ASA-CSSA-SSSA Annual Meeting 5-9 October (pp. 719-814). Houston, Texas: ASA-CSSA-SSSA.

Saha, M. C., Baker, J. L., Black, B., Guretzky, J., Hopkins, A. A. & Bouton, J. H. (2008). Forage Wheat Cultivar Development for Southern Great Plains. In Proceedings of ASA-CSSA-SSSA Annual meeting (pp. 654-657). .

Kirigwi, F. M., Zwonitzer, J. C., Mian, M. A. , Wang, Z - Y., & Saha, M. C. (2008). Microsatellite markers and genetic diversity assessment in Lolium temulentum. Genetic Resources and Crop Evolution, 55, 105-114 DOI:10.1007/s10722-007-9218-5.

Saha, M. C., Hopkins, A. A., & Wang, Z - Y. (2007). Genomic tools for tall fescue improvement. In H. A. Fribourg & D. B. Hannaway (Eds.), Tall Fescue On-line Monograph. Corvallis, Oregon: Oregon State University.

Wang, Z - Y., Hopkins, A. A., & Saha, M. C. (2007). Transgenesis in tall fescue. In H. A. Fribourg & D. B. Hannaway (Eds.), Tall Fescue On-line Monograph. Corvallis, Oregon: Oregon State University.

Dixon, R. A., Bouton, J. H., Narasimhamoorthy, B., Saha, M. C., Wang, Z - Y., & May, G. D. (2007). Beyond structural genomics for plant science. Advances in Agronomy. (pp. 77-161). Amsterdam, Netherlands: Elsevier, Inc..

Narasimhamoorthy, B., Bouton, J. H., Swaller, T., Mascia, P., & Saha, M. C. (2007). Genetic diversity in switchgrass populations assessed by SSR markers(abstract). In Proceedings of the ASA-CSSA-SSSA Annual Meetings ..

Saha, M. C., Baker, J. L., & Bouton, J. H. (2006). Breeding rye (Secale cereale L.) for early fall-winter forage production(abstract). In 13th Australasian Plant Breeding Conference Proceedings CD-ROM .Dunedin 9030 New Zealand: NZ Grassland Assoc..

Saha, M. C., Cooper, J. D., Mian, M. A. , Chekhovskiy, K., & May, G. D. (2006). Tall fescue genomic SSR markers: Development and transferability across multiple grass species. Theoretical and Applied Genetics, 113 (8), 1449-1458 doi:10.1007/s00122-006-0391-2.

Mian, R. M. , Zwonitzer, J. C., Chen, Y., Saha, M. C., & Hopkins, A. A. (2005). AFLP diversity within and among Hardinggrass populations. Crop Science, 45, 2591-2597 doi:10.2135/cropsci2005.04-0029.

Saha, M. C., Mian, R. M. , Zwonitzer, J. C., Chekhovskiy, K., & Hopkins, A. A. (2005). An SSR- and AFLP-based genetic linkage map of tall fescue (Festuca arundinacea Schreb.). Theoretical and Applied Genetics, 110, 323-336.

Mian, R. M. , Saha, M. C., Hopkins, A. A., & Wang, Z - Y. (2005). Use of tall fescue EST-SSR markers in phylogenetic analysis of cool-season forage grasses. Genome, 48, 637-647.

Warnke, S. E., Barker, R., Jung, H-J. G, Sim, S - C., Mian, M. A. , Saha, M. C., Brilman, L. A., Dupal, M. P., & Forster, J. (2004). Genetic linkage mapping of an annual X perennial ryegrass population. Theoretical and Applied Genetics, 109, 294-304.

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