American Journal of Plant Sciences

American Journal of Plant Sciences

ISSN Print: 2158-2742
ISSN Online: 2158-2750
www.scirp.org/journal/ajps
E-mail: ajps@scirp.org
"Responses of Transgenic Tobacco Plants with Increased Proline Content to Drought and/or Heat Stress"
written by Jana Pospisilova, Daniel Haisel, Radomira Vankova,
published by American Journal of Plant Sciences, Vol.2 No.3, 2011
has been cited by the following article(s):
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[1] Assessment of proline function in higher plants under extreme temperatures
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[2] Intriguing Role of Proline in Redox Potential Conferring High Temperature Stress Tolerance
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[3] Salicylic acid: a key signal molecule ameliorating plant stresses
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[4] Using Proline Metabolism Genes in Plant Genetic Engineering
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[5] Dissection of physiological, transcriptional, and metabolic traits in two tall fescue genotypes with contrasting drought tolerance
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[6] Physiological responses of Triplaris gardneriana Wedd. seedlings (Polygonaceae) under intermittent drought
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[7] Plant Performance and Defensive Role of Proline Under Environmental Stress
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[8] CLONING AND SEQUENCING OF FIVE LEA2 GENES FROM DATE PALM CV. KHALAS AND FUNCTIONAL CHARACTERIZATION TO HEAT AND SALT STRESS …
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[9] EFFECT OF Bradyrhizobium japonicum AND SALICYLIC ACID ON PHOTOSYNTHETIC PIGMENTS CONTENTS AND SOYBEAN GROWTH UNDER …
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[10] Proline and Abiotic Stresses: Responses and Adaptation
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[11] Role of Proline and Glycine Betaine in Overcoming Abiotic Stresses
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[12] Emerging Trends of Proline Metabolism in Abiotic Stress Management
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[13] Effect of Bradyrhizobium japonicum and salicylic acid on photosynthetic pigments contents and soybean growth under phosphorus and water deficit conditions.
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[14] Effect of Salicylic Acid and Glycine Betaine Foliar Application on Morpho-Physiological Characteristics of Carla (Momordica charantia L.) under Water Deficit Stress
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[15] 5 Proline–A Key Regulator Conferring Plant Tolerance to Salinity and Drought
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[16] GmSYP24, a putative syntaxin gene, confers osmotic/drought, salt stress tolerances and ABA signal pathway
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[17] Plant tolerance to environmental stress: Role of phytoprotectants
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[18] Proline–A key regulator conferring plant tolerance to salinity and drought
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[19] Magnetopriming Alleviates Adverse Effects of Abiotic Stresses in Plants
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[20] Altered physiological responses of LlaNAC gene of Lepidium latifolium over-expressing tobacco plants
2019
[21] Regulation of L-proline biosynthesis, signal transduction, transport, accumulation and its vital role in plants during variable environmental conditions
2019
[22] Distribution of Amino Acids in Buckwheat
Buckwheat Germplasm in the World, 2018
[23] Proline accumulation induces the production of total phenolics in transgenic tobacco plants under water deficit without increasing the G6PDH activity
Theoretical and Experimental Plant Physiology, 2018
[24] Plant Tolerance to Salinity and Drought
Proline–A Key Regulator Conferring, 2018
[25] Cloning of a DHN gene from Pinus massoniana and characterization of the responses to drought stress in Arabidopsis thaliana.
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[26] Approaches in modulating proline metabolism in plants for salt and drought stress tolerance: Phytohormones, mineral nutrients and transgenics
Plant Physiology and Biochemistry, 2017
[27] Cloning and sequence analysis of the Δ1-pyrroline-5-carboxylate synthase gene (MP5CS) from mulberry (Morus alba) and patterns of MP5CS gene expression …
The Journal of Horticultural Science and Biotechnology, 2016
[28] An analysis of transcripts and enzyme profiles in drought stressed jute (Corchorus capsularis) and rice (Oryza sativa) seedlings treated with CaCl2, hydroxyapatite …
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[29] Kusdianti, DS Diningrat, Iriawati and SN Widiyanto
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[30] Genetic engineering and cell selection for enhancing of crops osmotolerance
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[31] An analysis of transcripts and enzyme profiles in drought stressed jute (Corchorus capsularis) and rice (Oryza sativa) seedlings treated with CaCl2, hydroxyapatite nano-particle and β-amino butyric acid
Plant Growth Regulation, 2016
[32] Cloning and sequence analysis of the Δ1-pyrroline-5-carboxylate synthase gene (MP5CS) from mulberry (Morus alba) and patterns of MP5CS gene expression under abiotic stress conditions
The Journal of Horticultural Science and Biotechnology, 2016
[33] Osmotic Adjustment and Plant Adaptation to Drought Stress
Drought Stress Tolerance in Plants, Vol 1, 2016
[34] Характеристика трансгенних рослин соняшника (Helianthus annuus L.) з дволанцюговим РНК супрессором гена проліндегідрогенази
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[35] Proline accumulation and osmotic stress: an overview of P5CS gene in plants
Journal of Plant Molecular Breeding, 2015
[36] Effects of high proline accumulation on chloroplast and mitochondrial ultrastructure and on osmotic adjustment in tobacco plants
Acta Scientiarum. Agronomy, 2015
[37] Salicylic acid supplementation improves photosynthesis and growth in mustard through changes in proline accumulation and ethylene formation under drought stress
South African Journal of Botany, 2015
[38] Engineering crop plants against abiotic stress: Current achievements and prospects
Emirates Journal of Food and Agriculture, 2015
[39] 石蒜 LrP5CS 基因的克隆与表达特性分析
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[40] Genetic regulation of maize and sorghum under abiotic stress
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[41] Salicylic acid supplementation improves photosynthesis and growth in mustard through changes in proline accumulation and ethylene formation under …
South African Journal of Botany, 2015
[42] Efeitos do alto acúmulo de prolina na ultraestrutura de cloroplastos e mitocôndrias e no ajustamento osmótico de plantas de tabaco
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[43] Isolation and characterization of a Δ1-pyrroline-5-carboxylate synthetase (NtP5CS) from Nitraria tangutorum Bobr. and functional comparison with its Arabidopsis …
Molecular Biology Reports, 2014
[44] The role of carbohydrates in plant resistance to abiotic stresses
Emerging Technologies and Management of Crop Stress Tolerance, Volume 1, 2014
[45] Modulation of proline: implications in plant stress tolerance and development
Plant adaptation to environmental change: significance of amino acids and their derivatives. CABI, Oxfordshire, 2014
[46] 5 Modulation of Proline: Implications in Plant Stress Tolerance and Development
Plant Adaptation to …, 2014
[47] ENGINEERING CROPS PLANTS AGAINST ABIOTIC STRESS CURRENT ACHIEVEMENTS AND FUTURE PROSPECTS
Emirates Journal of Food and Agriculture, 2014
[48] Isolation and characterization of a Δ1-pyrroline-5-carboxylate synthetase (NtP5CS) from Nitraria tangutorum Bobr. and functional comparison with its Arabidopsis homologue
Molecular biology reports, 2014
[49] Photosynthetic Differences in Mustard Genotypes under Salinity Stress: Significance of Proline Metabolism
Annual Review of Materials Research, 2014
[50] Genetic engineering to improve plant performance under drought: physiological evaluation of achievements, limitations, and possibilities
Journal of experimental botany, 2013
[51] The accumulation of endogenous proline induces changes in gene expression of several antioxidant enzymes in leaves of transgenic Swingle citrumelo
Molecular biology …, 2013
[52] Генетическая инженерия с использованием генов метаболизма L-пролина для повышения осмотолерантности растений
Физиология растений и генетика, 2013
[53] Relative distribution of free amino acids in buckwheat
Food Science and …, 2013
[54] АКТИВНОСТЬ ФОТОСИНТЕТИЧЕСКОГО АППАРАТА И СУПЕРОКСИДДИСМУТАЗЫ В ЛИСТЬЯХ SOLANUM LICOPERSICUM С ВВЕДЕННЫМ …
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[55] Genetic architecture of stay-green in maize
ProQuest Dissertations Publishing, 2012
[56] Proline Accumulation Role on Drought-Induced Rice Genotypes
Journal of …, 2012
[57] 建立水稻種原 (Oryza sativa L.) 耐旱性之幼苗篩選方法
屏東科技大學熱帶農業暨國際合作系所學位論文, 2011
[58] Establishment of Rice (Oryza sativa L.) Seedling Screening Methods for Drought Tolerance
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