Exogenous melatonin induces phenolic compounds production in Linum album cells by altering nitric oxide and salicylic acid
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[1] M. Sharifi,et al. Interactions between second messengers, SA and MAPK6 signaling pathways lead to chitosan-induced lignan production in Linum album cell culture , 2022, Industrial Crops and Products.
[2] P. Ahmad,et al. Melatonin Improves Drought Stress Tolerance of Tomato by Modulating Plant Growth, Root Architecture, Photosynthesis, and Antioxidant Defense System , 2022, Antioxidants.
[3] M. Sharifi,et al. Changes in phenolic compounds production as a defensive mechanism against hydrogen sulfide pollution in Scrophularia striata. , 2022, Plant physiology and biochemistry : PPB.
[4] M. B. Arnao,et al. Phytomelatonin: an unexpected molecule with amazing performances in plants. , 2022, Journal of experimental botany.
[5] M. Sharifi,et al. Piriformospora indica induces phenylethanoid glycosides production and defense responses in Scrophularia striata cell culture , 2022, Plant Cell, Tissue and Organ Culture (PCTOC).
[6] M. Behmanesh,et al. Physiological, biochemical, and molecular responses of Linum album to digested cell wall of Piriformospora indica , 2021, Physiology and Molecular Biology of Plants.
[7] Marco Piñón,et al. I Overview , 2020, The Diaries and Letters of Lord Woolton 1940-1945.
[8] María López-Delacalle,et al. ROS and NO Regulation by Melatonin Under Abiotic Stress in Plants , 2020, Antioxidants.
[9] Seyed Mousa Mousavi Kouhi,et al. Optimization of Callus Induction with Enhancing Production of Phenolic Compounds Production and Antioxidants Activity in Callus Cultures of Nepeta binaloudensis Jamzad (Lamiaceae) , 2020, Iranian journal of biotechnology.
[10] K. Back. Melatonin metabolism, signaling, and possible roles in plants. , 2020, The Plant journal : for cell and molecular biology.
[11] R. Marchiosi,et al. Biosynthesis and metabolic actions of simple phenolic acids in plants , 2020, Phytochemistry Reviews.
[12] Longfei He,et al. Crosstalk between melatonin and nitric oxide in plant development and stress responses. , 2020, Physiologia plantarum.
[13] Jingjing Ren,et al. Melatonin alleviates iron stress by improving iron homeostasis, antioxidant defense and secondary metabolism in cucumber , 2020 .
[14] P. Sabbatini,et al. Exogenous melatonin improves glutathione content, redox state and increases essential oil production in two Salvia species under drought stress , 2020, Scientific Reports.
[15] G. Ahammed,et al. Melatonin alleviates nickel phytotoxicity by improving photosynthesis, secondary metabolism and oxidative stress tolerance in tomato seedlings. , 2020, Ecotoxicology and environmental safety.
[16] B. Abbasi,et al. Interactive Effect of Melatonin and UV-C on Phenylpropanoid Metabolite Production and Antioxidant Potential in Callus Cultures of Purple Basil (Ocimum basilicum L. var purpurascens) , 2020, Molecules.
[17] Jingjing Ren,et al. Role of melatonin in arbuscular mycorrhizal fungi-induced resistance to Fusarium wilt in cucumber. , 2020, Phytopathology.
[18] Jingjing Ren,et al. Dopamine alleviates bisphenol A-induced phytotoxicity by enhancing antioxidant and detoxification potential in cucumber. , 2020, Environmental pollution.
[19] M. B. Arnao,et al. Is Phytomelatonin a New Plant Hormone? , 2020, Agronomy.
[20] M. Sharifi,et al. Chitosan-induced phenolics production is mediated by nitrogenous regulatory molecules: NO and PAs in Linum album hairy roots , 2020, Plant Cell, Tissue and Organ Culture (PCTOC).
[21] S. Kilic,et al. Melatonin influence on in vitro callus induction and phenolic compound production in sweet basil (Ocimum basilicum L.) , 2019, In Vitro Cellular & Developmental Biology - Plant.
[22] S. Kilic,et al. Striking effects of melatonin on secondary metabolites produced by callus culture of rosemary (Rosmarinus officinalis L.) , 2019, Plant Cell, Tissue and Organ Culture (PCTOC).
[23] R. Reiter,et al. Mitochondria: the birth place, battle ground and the site of melatonin metabolism in cells , 2019, Melatonin Research.
[24] Morteza Soleimani Aghdam,et al. Exogenous melatonin ameliorates chilling injury in cut anthurium flowers during low temperature storage , 2019, Postharvest Biology and Technology.
[25] M. Sharifi,et al. Hydrogen sulfide directs metabolic flux towards the lignan biosynthesis in Linum album hairy roots. , 2019, Plant physiology and biochemistry : PPB.
[26] M. B. Arnao,et al. Melatonin and Its Effects on Plant Systems , 2018, Molecules.
[27] M. Behmanesh,et al. Piriformospora indica cell wall modulates gene expression and metabolite profile in Linum album hairy roots , 2018, Planta.
[28] M. B. Arnao,et al. Relationship of Melatonin and Salicylic Acid in Biotic/Abiotic Plant Stress Responses , 2018 .
[29] R. Reiter,et al. Phytomelatonin: a universal abiotic stress regulator , 2018, Journal of experimental botany.
[30] M. Brosché,et al. Interaction points in plant stress signaling pathways. , 2018, Physiologia plantarum.
[31] R. Reiter,et al. Melatonin as a mitochondria-targeted antioxidant: one of evolution’s best ideas , 2017, Cellular and Molecular Life Sciences.
[32] Yu Zhao,et al. Chloroplastic biosynthesis of melatonin and its involvement in protection of plants from salt stress , 2017, Scientific Reports.
[33] G. Pazour,et al. Ror2 signaling regulates Golgi structure and transport through IFT20 for tumor invasiveness , 2017, Scientific Reports.
[34] X. Zhang,et al. Antioxidant Enzyme Responses Induced by Whiteflies in Tobacco Plants in Defense against Aphids: Catalase May Play a Dominant Role , 2016, PloS one.
[35] M. Behmanesh,et al. Induced-differential changes on lignan and phenolic acid compounds in Linum album hairy roots by fungal extract of Piriformospora indica , 2016, Plant Cell, Tissue and Organ Culture (PCTOC).
[36] N. Zhang,et al. Melatonin Improved Anthocyanin Accumulation by Regulating Gene Expressions and Resulted in High Reactive Oxygen Species Scavenging Capacity in Cabbage , 2016, Front. Plant Sci..
[37] J. L. Liu,et al. Exogenous melatonin improves growth and photosynthetic capacity of cucumber under salinity-induced stress , 2016, Photosynthetica.
[38] M. Sharifi,et al. Modulation of Pb-induced stress in Prosopis shoots through an interconnected network of signaling molecules, phenolic compounds and amino acids. , 2016, Plant physiology and biochemistry : PPB.
[39] F. Baluška,et al. Regulatory roles of serotonin and melatonin in abiotic stress tolerance in plants , 2015, Plant signaling & behavior.
[40] R. Kohli,et al. Exogenous Nitric Oxide (NO) Interferes with Lead (Pb)-Induced Toxicity by Detoxifying Reactive Oxygen Species in Hydroponically Grown Wheat (Triticum aestivum) Roots , 2015, PloS one.
[41] R. Reiter,et al. Melatonin induces nitric oxide and the potential mechanisms relate to innate immunity against bacterial pathogen infection in Arabidopsis , 2015, Journal of pineal research.
[42] N. Anjum,et al. Salicylic acid-induced abiotic stress tolerance and underlying mechanisms in plants , 2015, Front. Plant Sci..
[43] A. Roychoudhury,et al. Reactive oxygen species (ROS) and response of antioxidants as ROS-scavengers during environmental stress in plants , 2014, Front. Environ. Sci..
[44] M. Behmanesh,et al. Analysis of 6-methoxy podophyllotoxin and podophyllotoxin in hairy root cultures of Linum album Kotschy ex Boiss , 2013, Medicinal Chemistry Research.
[45] Yao Xu,et al. Production of transgenic Nicotiana sylvestris plants expressing melatonin synthetase genes and their effect on UV-B-induced DNA damage , 2012, In Vitro Cellular & Developmental Biology - Plant.
[46] Jung-Hee Hong,et al. Protective Effect of Nitric Oxide against Oxidative Stress under UV-B Radiation in Maize Leaves , 2010 .
[47] M. Behmanesh,et al. Salicylic acid improves podophyllotoxin production in cell cultures of Linum album by increasing the expression of genes related with its biosynthesis , 2010, Biotechnology Letters.
[48] M. Posmyk,et al. Antioxidant enzymes activity and phenolic compounds content in red cabbage seedlings exposed to copper stress. , 2009, Ecotoxicology and environmental safety.
[49] T. Umezawa,et al. Biosynthesis of lignans and norlignans , 2007, Journal of Wood Science.
[50] H. Bartsch,et al. Isolation, structure elucidation and antioxidant potential of the major phenolic and flavonoid compounds in brined olive drupes. , 2003, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[51] I. Baldwin,et al. Rapid HPLC screening of jasmonate-induced increases in tobacco alkaloids, phenolics, and diterpene glycosides in Nicotiana attenuata , 2001 .
[52] V. Velikova,et al. Oxidative stress and some antioxidant systems in acid rain-treated bean plants Protective role of exogenous polyamines , 2000 .
[53] R. Gabbrielli,et al. Nickel toxicity and peroxidase activity in seedlings of Triticum aestivum L. , 1992 .
[54] H. Marschner,et al. Magnesium deficiency and high light intensity enhance activities of superoxide dismutase, ascorbate peroxidase, and glutathione reductase in bean leaves. , 1992, Plant physiology.
[55] T. Thorpe,et al. Tyrosine and Phenylalanine Ammonia Lyase Activities during Shoot Initiation in Tobacco Callus Cultures. , 1985, Plant physiology.
[56] R. R. Stewart,et al. Lipid peroxidation associated with accelerated aging of soybean axes. , 1980, Plant physiology.
[57] M. M. Bradford. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. , 1976, Analytical biochemistry.
[58] F. Skoog,et al. A revised medium for rapid growth and bio assays with tobacco tissue cultures , 1962 .
[59] M. B. Arnao,et al. Melatonin: A New Plant Hormone and/or a Plant Master Regulator? , 2019, Trends in plant science.
[60] E. Fuss. Lignans in plant cell and organ cultures: An overview , 2004, Phytochemistry Reviews.