Search Results - "Tobias, Christian M ."

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  1. 1

    Downregulation of Cinnamyl-Alcohol Dehydrogenase in Switchgrass by RNA Silencing Results in Enhanced Glucose Release after Cellulase Treatment by Saathoff, Aaron J, Sarath, Gautam, Chow, Elaine K, Dien, Bruce S, Tobias, Christian M, Herrera-Estrella, Alfredo

    Published in PloS one (27-01-2011)
    “…Cinnamyl alcohol dehydrogenase (CAD) catalyzes the last step in monolignol biosynthesis and genetic evidence indicates CAD deficiency in grasses both decreases…”
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  2. 2

    Chloroplast Genome Variation in Upland and Lowland Switchgrass by Young, Hugh A, Lanzatella, Christina L, Sarath, Gautam, Tobias, Christian M, Newbigin, Edward

    Published in PloS one (24-08-2011)
    “…Switchgrass (Panicum virgatum L.) exists at multiple ploidies and two phenotypically distinct ecotypes. To facilitate interploidal comparisons and to…”
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  3. 3

    Contrasting metabolism in perenniating structures of upland and lowland switchgrass plants late in the growing season by Palmer, Nathan A, Saathoff, Aaron J, Tobias, Christian M, Twigg, Paul, Xia, Yuannan, Vogel, Kenneth P, Madhavan, Soundararajan, Sattler, Scott E, Sarath, Gautam

    Published in PloS one (18-08-2014)
    “…Switchgrass (Panicum virgatum L.) is being developed as a bioenergy crop for many temperate regions of the world. One way to increase biomass yields is to move…”
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  4. 4

    Haploidy and aneuploidy in switchgrass mediated by misexpression of CENH3 by Yoon, Sangwoong, Bragg, Jennifer, Aucar‐Yamato, Sheyla, Chanbusarakum, Lisa, Dluge, Kurtis, Cheng, Prisca, Blumwald, Eduardo, Gu, Yong, Tobias, Christian M.

    Published in The plant genome (01-06-2023)
    “…Cross bred species such as switchgrass may benefit from advantageous breeding strategies requiring inbred lines. Doubled haploid production methods offer…”
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  5. 5

    Mapping quantitative trait loci for biomass yield and yield-related traits in lowland switchgrass (Panicum virgatum L.) multiple populations by Shrestha, Surya L, Tobias, Christian M, Bhandari, Hem S, Bragg, Jennifer, Nayak, Santosh, Goddard, Ken, Allen, Fred

    Published in G3 : genes - genomes - genetics (02-05-2023)
    “…Abstract Switchgrass can be used as an alternative source for bioenergy production. Many breeding programs focus on the genetic improvement of switchgrass for…”
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  6. 6

    Genomic prediction accuracy for switchgrass traits related to bioenergy within differentiated populations by Fiedler, Jason D, Lanzatella, Christina, Edmé, Serge J, Palmer, Nathan A, Sarath, Gautam, Mitchell, Rob, Tobias, Christian M

    Published in BMC plant biology (09-07-2018)
    “…Switchgrass breeders need to improve the rates of genetic gain in many bioenergy-related traits in order to create improved cultivars that are higher yielding…”
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  7. 7

    Generation of Octaploid Switchgrass by Seedling Treatment with Mitotic Inhibitors by Yoon, Sangwoong, Aucar, Sheyla, Hernlem, Bradley J., Edme, Serge, Palmer, Nathan, Sarath, Gautam, Mitchell, Robert, Blumwald, Eduardo, Tobias, Christian M .

    Published in Bioenergy research (01-06-2017)
    “…Switchgrass ( Panicum virgatum L.) exists as multiple cytotypes with octaploid (8 x ) and tetraploid (4 x ) populations occupying distinct, overlapping ranges…”
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  8. 8

    Brachypodium sylvaticum, a Model for Perennial Grasses: Transformation and Inbred Line Development by Steinwand, Michael A, Young, Hugh A, Bragg, Jennifer N, Tobias, Christian M, Vogel, John P, Harmon, Frank G

    Published in PloS one (20-09-2013)
    “…Perennial species offer significant advantages as crops including reduced soil erosion, lower energy inputs after the first year, deeper root systems that…”
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  9. 9

    Karyotype variation is indicative of subgenomic and ecotypic differentiation in switchgrass by Young, Hugh A, Sarath, Gautam, Tobias, Christian M

    Published in BMC plant biology (26-07-2012)
    “…Karyotypes can provide information about taxonomic relationships, genetic aberrations, and the evolutionary origins of species. However, differentiation of the…”
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  10. 10

    Divergent Metabolic Changes in Rhizomes of Lowland and Upland Switchgrass ( Panicum virgatum ) from Early Season through Dormancy Onset by Palmer, Nathan A, Sarath, Gautam, Bowman, Michael J, Saathoff, Aaron J, Edmé, Serge J, Mitchell, Robert B, Tobias, Christian M, Madhavan, Soundararajan, Scully, Erin D, Sattler, Scott E

    Published in Plants (Basel) (21-04-2023)
    “…High-biomass-yielding southerly adapted switchgrasses ( L.) frequently suffer from unpredictable winter hardiness at more northerly sites arising from damage…”
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  11. 11

    The Switchgrass Genome: Tools and Strategies by Casler, Michael D., Tobias, Christian M., Kaeppler, Shawn M., Buell, C. Robin, Wang, Zeng‐Yu, Cao, Peijian, Schmutz, Jeremy, Ronald, Pamela

    Published in The plant genome (01-11-2011)
    “…Switchgrass (Panicum virgatum L.) is a perennial grass species receiving significant focus as a potential bioenergy crop. In the last 5 yr the switchgrass…”
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  12. 12

    Global changes in mineral transporters in tetraploid switchgrasses (Panicum virgatum L.) by Palmer, Nathan A, Saathoff, Aaron J, Waters, Brian M, Donze, Teresa, Heng-Moss, Tiffany M, Twigg, Paul, Tobias, Christian M, Sarath, Gautam

    Published in Frontiers in plant science (02-01-2014)
    “…Switchgrass (Panicum virgatum L) is perennial, C4 grass with great potential as a biofuel crop. An in-depth understanding of the mechanisms that control…”
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    High‐Density Single Nucleotide Polymorphism Linkage Maps of Lowland Switchgrass using Genotyping‐by‐Sequencing by Fiedler, Jason D., Lanzatella, Christina, Okada, Miki, Jenkins, Jerry, Schmutz, Jeremy, Tobias, Christian M.

    Published in The plant genome (01-07-2015)
    “…Switchgrass (Panicum virgatum L.) is a warm‐season perennial grass with promising potential as a bioenergy crop in the United States. However, the lack of…”
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  15. 15

    Complete switchgrass genetic maps reveal subgenome collinearity, preferential pairing and multilocus interactions by Okada, Miki, Lanzatella, Christina, Saha, Malay C, Bouton, Joe, Wu, Rongling, Tobias, Christian M

    Published in Genetics (Austin) (01-07-2010)
    “…Polyploidy is an important aspect of the evolution of flowering plants. The potential of gene copies to diverge and evolve new functions is influenced by…”
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  16. 16

    Environmentally responsive QTL controlling surface wax load in switchgrass by Bragg, Jennifer, Tomasi, Pernell, Zhang, Li, Williams, Tina, Wood, Delilah, Lovell, John T., Healey, Adam, Schmutz, Jeremy, Bonnette, Jason E., Cheng, Prisca, Chanbusarakum, Lisa, Juenger, Thomas, Tobias, Christian M.

    Published in Theoretical and applied genetics (01-11-2020)
    “…Key message Quantitation of leaf surface wax on a population of switchgrass identified three significant QTL present across six environments that contribute to…”
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  17. 17

    Seasonal below‐ground metabolism in switchgrass by Palmer, Nathan A., Saathoff, Aaron J., Scully, Erin D., Tobias, Christian M., Twigg, Paul, Madhavan, Soundararajan, Schmer, Marty, Cahoon, Rebecca, Sattler, Scott E., Edmé, Serge J., Mitchell, Robert B., Sarath, Gautam

    “…Summary Switchgrass (Panicum virgatum), a perennial, polyploid, C4 warm‐season grass is among the foremost herbaceous species being advanced as a source of…”
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    Salt tolerance of two perennial grass Brachypodium sylvaticum accessions by Sade, Nir, del Mar Rubio Wilhelmi, Maria, Ke, Xiaojuan, Brotman, Yariv, Wright, Matthew, Khan, Imran, De Souza, Wagner, Bassil, Elias, Tobias, Christian M., Thilmony, Roger, Vogel, John P., Blumwald, Eduardo

    Published in Plant molecular biology (01-02-2018)
    “…Key message We studied the salt stress tolerance of two accessions isolated from different areas of the world (Norway and Tunisia) and characterized the…”
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  20. 20

    Abolishing activity against ascorbate in a cytosolic ascorbate peroxidase from switchgrass by Kovacs, Frank A., Sarath, Gautam, Woodworth, Kyle, Twigg, Paul, Tobias, Christian M.

    Published in Phytochemistry (Oxford) (01-10-2013)
    “…Cytosolic ascorbate peroxidase from switchgrass was cloned and expressed to obtain purified active monomeric protein. R172S mutation removed ascorbate activity…”
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