Vermicompost leachate, seaweed extract and smoke-water alleviate drought stress in cowpea by influencing phytochemicals, compatible solutes and photosynthetic pigments
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[1] J. van Staden,et al. Interactive effects of plant growth-promoting rhizobacteria and a seaweed extract on the growth and physiology of Allium cepa L. (onion). , 2021, Journal of plant physiology.
[2] J. van Staden,et al. Interactions Between Microorganisms and a Seaweed-Derived Biostimulant on the Growth and Biochemical Composition of Amaranthus hybridus L. , 2020, Natural Product Communications.
[3] S. Fahad,et al. Drought Tolerance Strategies in Plants: A Mechanistic Approach , 2020, Journal of Plant Growth Regulation.
[4] A. Abdalla,et al. Role of melatonin in improving growth, yield quantity and quality of Moringa oleifera L. plant under drought stress , 2020, Bulletin of the National Research Centre.
[5] M. Tomaszewska,et al. Changes in Biochemistry and Yield in Response to Biostimulants Applied in Bean (Phaseolus vulgaris L.) , 2020, Agronomy.
[6] J. van Staden,et al. The effect of biostimulants and light wavelengths on the physiology of Cleome gynandra seeds , 2019, Plant Growth Regulation.
[7] J. van Staden,et al. Role of Smoke Stimulatory and Inhibitory Biomolecules in Phytochrome-Regulated Seed Germination of Lactuca sativa1[OPEN] , 2019, Plant Physiology.
[8] J. Staden,et al. Effect of organic biostimulants on the growth and biochemical composition of Amaranthus hybridus L. , 2019, South African Journal of Botany.
[9] Wei Sun,et al. Chalcone Isomerase a Key Enzyme for Anthocyanin Biosynthesis in Ophiorrhiza japonica , 2019, Front. Plant Sci..
[10] O. Novák,et al. Preparation and Standardisation of Smoke-Water for Seed Germination and Plant Growth Stimulation , 2019, Journal of Plant Growth Regulation.
[11] A. Sher,et al. Research Progress and Perspective on Drought Stress in Legumes: A Review , 2019, International journal of molecular sciences.
[12] Xiyan Yang,et al. A novel cotton WRKY gene, GhWRKY6-like, improves salt tolerance by activating the ABA signaling pathway and scavenging of reactive oxygen species. , 2018, Physiologia plantarum.
[13] Sandeep Sharma,et al. Natural variation identifies genes affecting drought-induced abscisic acid accumulation in Arabidopsis thaliana , 2017, Proceedings of the National Academy of Sciences.
[14] G. Wright,et al. Vermicompost leachate reduces some negative effects of salt stress in pomegranate , 2017, International Journal of Recycling of Organic Waste in Agriculture.
[15] M. Sadak,et al. Glutathione Induced Antioxidant Protection Against Salinity Stress in Chickpea (Cicer arietinum L.) Plant , 2017 .
[16] Xiyan Yang,et al. Drought coping strategies in cotton: increased crop per drop , 2017, Plant biotechnology journal.
[17] S. S. Bidabadi,et al. The effect of vermicompost leachate on morphological, physiological and biochemical indices of Stevia rebaudiana Bertoni in a soilless culture system , 2016, International Journal of Recycling of Organic Waste in Agriculture.
[18] S. Hussain,et al. Effect of progressive drought stress on growth, leaf gas exchange, and antioxidant production in two maize cultivars , 2016, Environmental Science and Pollution Research.
[19] Sandhya Vardharajula,et al. Enhancement of drought stress tolerance in crops by plant growth promoting rhizobacteria. , 2016, Microbiological research.
[20] M. Świeca,et al. Enhancement of yield, nutritional and nutraceutical properties of two common bean cultivars following the application of seaweed extract (Ecklonia maxima) , 2016, Saudi journal of biological sciences.
[21] B. Prithiviraj,et al. Seaweed extracts as biostimulants in horticulture , 2015 .
[22] P. Jardin. Plant biostimulants: Definition, concept, main categories and regulation , 2015 .
[23] Scott A. Staggenborg,et al. Impacts of Drought and/or Heat Stress on Physiological, Developmental, Growth, and Yield Processes of Crop Plants , 2015 .
[24] S. Daryanto,et al. Global Synthesis of Drought Effects on Food Legume Production , 2015, PloS one.
[25] A. Alderfasi,et al. Effect of drought stress on mungbean (Vigna radiata L.) under arid climatic conditions of Saudi Arabia , 2015 .
[26] M. Strnad,et al. Evidence of phytohormones and phenolic acids variability in garden-waste-derived vermicompost leachate, a well-known plant growth stimulant , 2015, Plant Growth Regulation.
[27] A. Aremu,et al. Physiological role of phenolic biostimulants isolated from brown seaweed Ecklonia maxima on plant growth and development , 2015, Planta.
[28] J. Staden,et al. Vermicompost Leachate Reduces Temperature and Water Stress Effects in Tomato Seedlings , 2014 .
[29] F. Cruz,et al. Growth, nutritional status and nitrogen metabolism in Vigna unguiculata (L.) Walp is affected by aluminum , 2014 .
[30] A. Aremu,et al. Smoke–water stimulates secondary metabolites during in vitro seedling development in Tulbaghia species , 2014 .
[31] M. Strnad,et al. Abscisic acid, gibberellins and brassinosteroids in Kelpak®, a commercial seaweed extract made from Ecklonia maxima , 2014, Journal of Applied Phycology.
[32] S. Roytrakul,et al. Physiological and comparative proteomic analyses of Thai jasmine rice and two check cultivars in response to drought stress , 2014 .
[33] Sumeet Singh,et al. Genetic dissection of drought tolerance in chickpea (Cicer arietinum L.) , 2013, Theoretical and Applied Genetics.
[34] F. Dédaldéchamp,et al. Source-to-sink transport of sugar and regulation by environmental factors , 2013, Front. Plant Sci..
[35] J. Staden,et al. Garden-waste-vermicompost leachate alleviates salinity stress in tomato seedlings by mobilizing salt tolerance mechanisms , 2013, Plant Growth Regulation.
[36] P. Etienne,et al. Brassica napus Growth is Promoted by Ascophyllum nodosum (L.) Le Jol. Seaweed Extract: Microarray Analysis and Physiological Characterization of N, C, and S Metabolisms , 2013, Journal of Plant Growth Regulation.
[37] R. Tuberosa. Phenotyping for drought tolerance of crops in the genomics era , 2012, Front. Physio..
[38] K. Shinozaki,et al. Effects of abiotic stress on plants: a systems biology perspective , 2011, BMC Plant Biology.
[39] M. E. Light,et al. Plant-derived smoke: Old technology with possibilities for economic applications in agriculture and horticulture , 2011 .
[40] J. van Staden,et al. Natural Antioxidants: Fascinating or Mythical Biomolecules? , 2010, Molecules.
[41] G. Erice,et al. Plant physiology and proteomics reveals the leaf response to drought in alfalfa (Medicago sativa L.) , 2010, Journal of experimental botany.
[42] L. Luo. Breeding for water-saving and drought-resistance rice (WDR) in China. , 2010, Journal of experimental botany.
[43] M. Stitt,et al. Arabidopsis Plants Acclimate to Water Deficit at Low Cost through Changes of Carbon Usage: An Integrated Perspective Using Growth, Metabolite, Enzyme, and Gene Expression Analysis1[C][W][OA] , 2010, Plant Physiology.
[44] B. Usadel,et al. Ribosome and transcript copy numbers, polysome occupancy and enzyme dynamics in Arabidopsis , 2009, Molecular systems biology.
[45] C. A. Jaleel,et al. Understanding water deficit stress-induced changes in the basic metabolism of higher plants – biotechnologically and sustainably improving agriculture and the ecoenvironment in arid regions of the globe , 2009, Critical reviews in biotechnology.
[46] A. Keutgen,et al. Impacts of NaCl stress on plant growth and mineral nutrient assimilation in two cultivars of strawberry , 2009 .
[47] U. P. de Albuquerque,et al. A new approach to study medicinal plants with tannins and flavonoids contents from the local knowledge. , 2008, Journal of ethnopharmacology.
[48] J. Staden,et al. Smoke-water and a Smoke-isolated Butenolide Improve Growth and Yield of Tomatoes under Greenhouse Conditions , 2008 .
[49] A. Fehér,et al. The effect of drought and heat stress on reproductive processes in cereals. , 2007, Plant, cell & environment.
[50] M. Stitt,et al. Coordination of carbon supply and plant growth. , 2007, Plant, cell & environment.
[51] Sare Outreach. Managing Cover Crops Profitably , 2007 .
[52] W. A. Stirk,et al. World seaweed resources , 2006 .
[53] J. Burke. Evaluation of Source Leaf Responses to Water-Deficit Stresses in Cotton Using a Novel Stress Bioassay1[OA] , 2006, Plant Physiology.
[54] N. Tuteja,et al. Cold, salinity and drought stresses: an overview. , 2005, Archives of biochemistry and biophysics.
[55] M. Ashraf,et al. Drought stress induced changes in some organic substances in nodules and other plant parts of two potential legumes differing in salt tolerance , 2005 .
[56] T. Kozai,et al. Temperature stress can alter the photosynthetic efficiency and secondary metabolite concentrations in St. John's wort. , 2005, Plant physiology and biochemistry : PPB.
[57] A. Gupta,et al. Seed Priming Increases Crop Yield Possibly by Modulating Enzymes of Sucrose Metabolism in Chickpea , 2005 .
[58] A. Ramachandra Reddy,et al. Drought-induced responses of photosynthesis and antioxidant metabolism in higher plants. , 2004, Journal of plant physiology.
[59] L. H. Allen,et al. The carbohydrate metabolism enzymes sucrose-P synthase and ADG-pyrophosphorylase in phaseolus bean leaves are up-regulated at elevated growth carbon dioxide and temperature , 2004 .
[60] J. Flexas,et al. Is photosynthesis limited by decreased Rubisco activity and RuBP content under progressive water stress? , 2004, The New phytologist.
[61] J. Acosta-Gallegos,et al. Biomass distribution, maturity acceleration and yield in drought-stressed common bean cultivars , 2004 .
[62] P. J. Andralojc,et al. Rubisco activity: effects of drought stress. , 2002, Annals of botany.
[63] J. van Staden,et al. The release of cytokinin-like compounds from Gingko biloba leaf material during composting. , 2001, Environmental and experimental botany.
[64] A Sturm,et al. Invertases. Primary structures, functions, and roles in plant development and sucrose partitioning. , 1999, Plant physiology.
[65] Mengcheng Tang,et al. The determination of flavonoid contents in mulberry and their scavenging effects on superoxide radicals , 1999 .
[66] J. Prioul,et al. Effect of water restriction on carbohydrate metabolism and photosynthesis in mature maize leaves , 1997 .
[67] C. Rice-Evans,et al. Antioxidant properties of phenolic compounds , 1997 .
[68] C. Sgherri,et al. Activated oxygen production and detoxification in wheat plants subjected to a water deficit programme , 1995 .
[69] 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.
[70] J. van Staden,et al. Influence of biostimulants-seed-priming on Ceratotheca triloba germination and seedling growth under low temperatures, low osmotic potential and salinity stress. , 2018, Ecotoxicology and environmental safety.
[71] N. A. Masondo. The role of biostimulants on the physiology, nutrition, phytochemistry and endogenous phytohormone content in Ceratotheca triloba under abiotic stress conditions. , 2017 .
[72] M. Ashraf,et al. Effects of organic fertilizers on the growth and yield of bush bean, winged bean and yard long bean , 2016 .
[73] Heike Freud,et al. Plant Biochemistry And Molecular Biology , 2016 .
[74] T. A. Masenya. Evaluation of introduced cowpea breeding lines in South Africa , 2016 .
[75] A. García,et al. Potentialities of vermicompost humic acids to alleviate water stress in rice plants (Oryza sativa L.) , 2014 .
[76] J. van Staden,et al. Physiological effects of a novel aromatic cytokinin analogue in micropropagated Aloe arborescens and Harpagophytum procumbens , 2013, Plant Cell, Tissue and Organ Culture (PCTOC).
[77] I. Rao,et al. Effects of water stress on leaves and seeds of bean (Phaseolus vulgaris L.) , 2013 .
[78] J. Gready,et al. Applying photosynthesis research to improvement of food crops , 2013 .
[79] A. Maleki,et al. Physiological Performance of Soybean Cultivars under Drought Stress , 2013 .
[80] Wang Lei,et al. Morphological, physiological and biochemical responses of plants to drought stress , 2011 .
[81] M. Farooq,et al. Plant drought stress: effects, mechanisms and management , 2011, Agronomy for Sustainable Development.
[82] P. Struik,et al. Effect of drought stress on yield, proline and chlorophyll contents in three chickpea cultivars , 2010 .
[83] M. Foolad,et al. Pre‐Sowing Seed Treatment—A Shotgun Approach to Improve Germination, Plant Growth, and Crop Yield Under Saline and Non‐Saline Conditions , 2005 .
[84] M. Kilkenny,et al. COOPERATIVE STATE RESEARCH, EDUCATION, AND EXTENSION SERVICE , 2004 .
[85] K. Nahar,et al. Effect of water stress on nutrient uptake, yield and quality of tomato (Lycopersicon esculentum Mill.) under subtropical conditions , 2002 .
[86] H. Medrano,et al. Water stress and the diurnal activity of ribulose-1, 5-bisphosphate carboxylase in field grown Nicotiana tabacum genotypes selected for survival at low CO2 concentrations , 1993 .
[87] Graham D. Farquhar,et al. Carbon Isotope Fractionation and Plant Water-Use Efficiency , 1989 .
[88] H. Lichtenthaler. CHLOROPHYLL AND CAROTENOIDS: PIGMENTS OF PHOTOSYNTHETIC BIOMEMBRANES , 1987 .
[89] W. Gebhardt. Photosynthetic efficiency , 1986, Radiation and environmental biophysics.