Increased freezing stress tolerance of Nicotiana tabacum L. cv. Bright Yellow-2 cell cultures with the medium addition of Ascophyllum nodosum (L.) Le Jolis extract
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Ali N, Farrell A, Ramsubhag A, Jayaraman J (2016) The effect of Ascophyllum nodosum extract on the growth, yield and fruit quality of tomato grown under tropical conditions. J Appl Phycol 28:1353–1362
Ashraf M, Foolad M (2007) Roles of glycine betaine and proline in improving plant abiotic stress resistance. Environ Exp Bot 59:206–216
Banu MNA, Hoque MA, Watanabe-Sugimoto M, Matsuoka K, Nakamura Y, Shimoishi Y, Murata Y (2009) Proline and glycinebetaine induce antioxidant defense gene expression and suppress cell death in cultured tobacco cells under salt stress. J Plant Physiol 166:146–156
Battacharyya D, Babgohari MZ, Rathor P, Prithiviraj B (2015) Seaweed extracts as biostimulants in horticulture. Sci Hortic 196:39–48
Couée I, Sulmon C, Gouesbet G, El Amrani A (2006) Involvement of soluble sugars in reactive oxygen species balance and responses to oxidative stress in plants. J Exp Bot 57:449–459
de Pinto M, Francis D, De Gara L (1999) The redox state of the ascorbate-dehydroascorbate pair as a specific sensor of cell division in tobacco BY-2 cells. Protoplasma 209:90–97
de Pinto MC, Tommasi F, De Gara L (2002) Changes in the antioxidant systems as part of the signaling pathway responsible for the programmed cell death activated by nitric oxide and reactive oxygen species in tobacco Bright-Yellow 2 cells. J Plant Physiol 130:698–708
Degenkolbe T, Giavalisco P, Zuther E, Seiwert B, Hincha DK, Willmitzer L (2012) Differential remodeling of the lipidome during cold acclimation in natural accessions of Arabidopsis thaliana. Plant J 72:972–982
Dombrowski JE, Baldwin JC, Martin RC (2008) Cloning and characterization of a salt stress-inducible small GTPase gene from the model grass species Lolium temulentum. J Plant Physiol 165:651–661
Du C, Hu K, Xian S, Liu C, Fan J, Tu J, Fu T (2016) Dynamic transcriptome analysis reveals AP2/ERF transcription factors responsible for cold stress in rapeseed (Brassica napus L.). Mol Gen Genomics 291:1053–1067
Fan D, Hodges DM, Zhang J, Kirby CW, Ji X, Locke SJ, Critchley AT, Prithiviraj B (2011) Commercial extract of the brown seaweed Ascophyllum nodosum enhances phenolic antioxidant content of spinach (Spinacia oleracea L.), which protects Caenorhabditis elegans against oxidative and thermal stress. Food Chem 124:195–202
Greenspan P, Mayer EP, Fowler SD (1985) Nile red: a selective fluorescent stain for intracellular lipid droplets. J Cell Biol 100:965–973
Guo F-X, Zhang M-X, Chen Y, Zhang W-H, Xu S-J, Wang J-H, An L-Z (2006) Relation of several antioxidant enzymes to rapid freezing resistance in suspension cultured cells from alpine Chorispora bungeana. Cryobiology 52:241–250
Haroun-Bouhedja F, Ellouali M, Sinquin C, Boisson-Vidal C (2000) Relationship between sulfate groups and biological activities of fucans. Thromb Res 100:453–459
Hasanuzzaman M, Nahar K, Fujita M, Vahdati K, Leslie C (2013) Extreme temperature responses, oxidative stress and antioxidant defense in plants. InTech Open Access Publisher. https://doi.org/10.5772/54833
Jan N, Andrabi KI (2009) Cold resistance in plants: a mystery unresolved. Electron J Biotechnol 12:14–15
Karunatilleke RNC (2014) Mitigation of drought stress in tomato with Ascophyllum nodosum (L.) le jol. extracts. Dissertation Dalhousie University, Faculty of Agriculture, Truro, http://hdl.handle.net/10222/53945 . Accessed 08-19-2014
Khan W, Rayirath UP, Subramanian S, Jithesh MN, Rayorath P, Hodges DM, Critchley AT, Craigie JS, Norrie J, Prithiviraj B (2009) Seaweed extracts as biostimulants of plant growth and development. J Plant Growth Regul 28:386–399
Kishitani S, Watanabe K, Yasuda S, Arakawa K, Takabe T (1994) Accumulation of glycinebetaine during cold acclimation and freezing tolerance in leaves of winter and spring barley plants. Plant Cell Environ 17:89–95
Le Martret B, Poage M, Shiel K, Nugent GD, Dix PJ (2011) Tobacco chloroplast transformants expressing genes encoding dehydroascorbate reductase, glutathione reductase, and glutathione-S-transferase, exhibit altered anti-oxidant metabolism and improved abiotic stress tolerance. Plant Biotechnol J 9:661–673
Li W, Wang R, Li M, Li L, Wang C, Welti R, Wang X (2008) Differential degradation of extraplastidic and plastidic lipids during freezing and post-freezing recovery in Arabidopsis thaliana. J Biol Chem 283:461–468
Linsmaier F, Skoog F (1965) Organic growth factor requirements of tobacco tissue monocotyledonous and dicotyledonous plant cell cultures. Can J Bot 50:199–204
Liu Y, Jiang H, Zhao Z, An L (2010) Nitric oxide synthase like activity-dependent nitric oxide production protects against chilling-induced oxidative damage in Chorispora bungeana suspension cultured cells. Plant Physiol Biochem 48:936–944
Melo TA, Serra IM, Sousa AA, Sousa TY, Pascholati SF (2018) Effect of Ascophyllum nodosum seaweed extract on post-harvest ‘Tommy Atkins’ mangoes. Rev Bras Frutic 40. https://doi.org/10.1590/0100-29452018621
Moghadam AA, Ebrahimie E, Taghavi SM, Niazi A, Babgohari MZ, Deihimi T, Djavaheri M, Ramezani A (2013) How the nucleus and mitochondria communicate in energy production during stress: nuclear MtATP6, an early-stress responsive gene, regulates the mitochondrial F1F0-ATP synthase complex. Mol Biotechnol 54:756–769
Mullet JE, Whisitt MS (1996) Plant cellular responses to water deficit. In: Belhassen E (ed) Drought tolerance in higher plants: genetical, physiological and molecular biological analysis. Springer, Dordrecht, pp 41–46
Nabati D, Schmidt R, Parrish D (1994) Alleviation of salinity stress in Kentucky bluegrass by plant growth regulators and iron. Crop Sci 34:198–202
Nabati DA (1991) Responses of two grass species to plant growth regulators, fertilizer N, chelated Fe, salinity and water stress dissertation. Dissertation Virginia Polytechnic Institute and State University, Blacksburg http://hdl.handle.net/10919/39783 . Accessed 11-15-1991
Nagata T, Nemoto Y, Hasezawa S (1992) Tobacco BY-2 cell line as the “HeLa” cell in the cell biology of higher plants. Int Rev Cytol 132:30
Nair P, Kandasamy S, Zhang J, Ji X, Kirby C, Benkel B, Hodges MD, Critchley AT, Hiltz D, Prithiviraj B (2012) Transcriptional and metabolomic analysis of Ascophyllum nodosum mediated freezing tolerance in Arabidopsis thaliana. BMC Genomics 13:643
Nishizawa A, Yabuta Y, Shigeoka S (2008) Galactinol and raffinose constitute a novel function to protect plants from oxidative damage. J Plant Physiol 147:1251–1263
Qin F, Shinozaki K, Yamaguchi-Shinozaki K (2011) Achievements and challenges in understanding plant abiotic stress responses and tolerance. Plant Cell Physiol 52:1569–1582
Rayirath P, Benkel B, Hodges DM, Allan-Wojtas P, MacKinnon S, Critchley AT, Prithiviraj B (2009) Lipophilic components of the brown seaweed, Ascophyllum nodosum, enhance freezing tolerance in Arabidopsis thaliana. Planta 230:135–147
Reape TJ, McCabe PF (2013) Commentary: the cellular condensation of dying plant cells: programmed retraction or necrotic collapse? Plant Sci 207:135–139
Santaniello A, Scartazza A, Gresta F, Loreti E, Biasone A, Di Tommaso D, Piaggesi A, Perata P (2017) Ascophyllum nodosum seaweed extract alleviates drought stress in Arabidopsis by affecting photosynthetic performance and related gene expression. Front Plant Sci 8:1362
Sasaki Y, Nagano Y (2004) Plant acetyl-CoA carboxylase: structure, biosynthesis, regulation, and gene manipulation for plant breeding. Biosci Biotechnol Biochem 68:1175–1184
Sinha S, Kukreja B, Arora P, Sharma M, Pandey GK, Agarwal M (2015) The omics of cold stress responses in plants. In: Pandey GK. (ed) Elucidation of abiotic stress signaling in plants: functional genomics perspectives. Vol 2. Springer, New York, New York, pp 143–194
Thomashow MF (1998) Role of cold-responsive genes in plant freezing tolerance. Plant Physiol 118:1–8
Van Breusegem F, Dat JF (2006) Reactive oxygen species in plant cell death. Plant Physiol 141:384–390
Wolfe J, Bryant G (1999) Freezing, drying, and/or vitrification of membrane–solute–water systems. Cryobiology. 39:103–129
Wu Y, Williams M, Bernard S, Driouich A, Showalter AM, Faik A (2010) Functional identification of two nonredundant Arabidopsis α (1, 2) fucosyltransferases specific to arabinogalactan proteins. J Biol Chem 285:13638–13645
Xiao S, Chye M-L (2011) New roles for acyl-CoA-binding proteins (ACBPs) in plant development, stress responses and lipid metabolism. Prog Lipid Res 50:141–151
Zhang X, Ervin E (2008) Impact of seaweed extract-based cytokinins and zeatin riboside on creeping bentgrass heat tolerance. Crop Sci 48:364–370