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Nutrient and drought stress: implications for phenology and biomass quality in miscanthus.
Ann Bot. 2019 Oct 29;124(4):553-566. doi: 10.1093/aob/mcy155.
Ann Bot. 2019.
PMID: 30137291
Free PMC article.
Transgenic ZmMYB167 Miscanthus sinensis with increased lignin to boost bioenergy generation for the bioeconomy.
Bhatia R, Timms-Taravella E, Roberts LA, Moron-Garcia OM, Hauck B, Dalton S, Gallagher JA, Wagner M, Clifton-Brown J, Bosch M.
Bhatia R, et al. Among authors: timms taravella e.
Biotechnol Biofuels Bioprod. 2023 Feb 22;16(1):29. doi: 10.1186/s13068-023-02279-2.
Biotechnol Biofuels Bioprod. 2023.
PMID: 36814294
Free PMC article.
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Could Miscanthus replace maize as the preferred substrate for anaerobic digestion in the United Kingdom? Future breeding strategies.
Purdy SJ, Maddison AL, Nunn CP, Winters A, Timms-Taravella E, Jones CM, Clifton-Brown JC, Donnison IS, Gallagher JA.
Purdy SJ, et al. Among authors: timms taravella e.
Glob Change Biol Bioenergy. 2017 Jun;9(6):1122-1139. doi: 10.1111/gcbb.12419. Epub 2017 Jan 21.
Glob Change Biol Bioenergy. 2017.
PMID: 28603556
Free PMC article.
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Fructan synthesis, accumulation and polymer traits. II. Fructan pools in populations of perennial ryegrass (Lolium perenne L.) with variation for water-soluble carbohydrate and candidate genes were not correlated with biosynthetic activity and demonstrated constraints to polymer chain extension.
Gallagher JA, Cairns AJ, Thomas D, Timms-Taravella E, Skøt K, Charlton A, Williams P, Turner LB.
Gallagher JA, et al. Among authors: timms taravella e.
Front Plant Sci. 2015 Oct 15;6:864. doi: 10.3389/fpls.2015.00864. eCollection 2015.
Front Plant Sci. 2015.
PMID: 26528321
Free PMC article.
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Accumulation of chlorophyll catabolites photosensitizes the hypersensitive response elicited by Pseudomonas syringae in Arabidopsis.
Mur LA, Aubry S, Mondhe M, Kingston-Smith A, Gallagher J, Timms-Taravella E, James C, Papp I, Hörtensteiner S, Thomas H, Ougham H.
Mur LA, et al. Among authors: timms taravella e.
New Phytol. 2010 Oct;188(1):161-74. doi: 10.1111/j.1469-8137.2010.03377.x. Epub 2010 Aug 5.
New Phytol. 2010.
PMID: 20704660
Free article.
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Targeting expression of a fungal ferulic acid esterase to the apoplast, endoplasmic reticulum or golgi can disrupt feruloylation of the growing cell wall and increase the biodegradability of tall fescue (Festuca arundinacea).
Buanafina MM, Langdon T, Hauck B, Dalton S, Timms-Taravella E, Morris P.
Buanafina MM, et al. Among authors: timms taravella e.
Plant Biotechnol J. 2010 Apr;8(3):316-31. doi: 10.1111/j.1467-7652.2009.00485.x. Epub 2010 Jan 19.
Plant Biotechnol J. 2010.
PMID: 20102533
Free article.
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Functional co-expression of a fungal ferulic acid esterase and a β-1,4 endoxylanase in Festuca arundinacea (tall fescue) modifies post-harvest cell wall deconstruction.
Buanafina MM, Dalton S, Langdon T, Timms-Taravella E, Shearer EA, Morris P.
Buanafina MM, et al. Among authors: timms taravella e.
Planta. 2015 Jul;242(1):97-111. doi: 10.1007/s00425-015-2288-2. Epub 2015 Apr 9.
Planta. 2015.
PMID: 25854601
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