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
"Alterations of Endogenous Hormonal Levels in Plants under Drought and Salinity"
written by Analía Llanes, Andrea Andrade, Sergio Alemano, Virginia Luna,
published by American Journal of Plant Sciences, Vol.7 No.9, 2016
has been cited by the following article(s):
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[14] Effect of low-temperature stress on germination, growth, and phenology of plants: A review
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[54] Abiotic Stress Signaling in Wheat–An Inclusive Overview of Hormonal Interactions During Abiotic Stress Responses in Wheat
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[55] Transcriptomic profiling of maize (Zea mays L.) seedlings in response to Pseudomonas putida stain FBKV2 inoculation under drought stress
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[56] Correlations between Phytohormones and Drought Tolerance in Selected Brassica Crops: Chinese Cabbage, White Cabbage and Kale
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[57] Indole-3-acetic acid modulates phytohormones and polyamines metabolism associated with the tolerance to water stress in white clover
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[58] Salt Stress-induced Injury is Associated with Hormonal Alteration in Kentucky Bluegrass
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[59] Differences in Physiological, Biochemical, and Molecular Mechanisms of Water Stress Tolerance in Chickpea Varieties
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[60] Exogenous Melatonin Confers Cadmium Tolerance by Counterbalancing the Hydrogen Peroxide Homeostasis in Wheat Seedlings
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[61] Differential physiological and metabolic response to low temperature in two zoysiagrass genotypes native to high and low latitude
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[62] Seasonal changes in morphophysiological traits of two native Patagonian shrubs from Argentina with different drought resistance strategies
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[63] Possible role of molecular mass of medium supplemented phenolics in improving rice growth in puddled saline condition
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[69] Overexpression of SoCYP85A1, a spinach cytochrome p450 gene in transgenic tobacco enhances root development and drought stress tolerance
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[71] Auxin-like compounds act as protectors against UV-B irradiation in garden pea plants
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[72] Barley brassinosteroid mutants provide an insight into phytohormonal homeostasis in plant reaction to drought stress
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