Physiological responses of maca (Lepidium meyenii Walp.) plants to UV radiation in its high-altitude mountain ecosystem
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N. Salinas | A. Scartazza | L. Guglielminetti | E. Cosio | T. Huarancca Reyes | E. Esparza | Fabián Limonchi | Gaia Crestani | R. Cruz | Thais Huarancca Reyes
[1] A. Pompeiano,et al. Physiological responses of Lepidium meyenii plants to ultraviolet-B radiation challenge , 2019, BMC Plant Biology.
[2] É. Hideg,et al. Editorial: Interactive effects of UV-B radiation in a complex environment. , 2019, Plant physiology and biochemistry : PPB.
[3] Wei Dong,et al. MGH: a genome hub for the medicinal plant maca (Lepidium meyenii) , 2018, Database J. Biol. Databases Curation.
[4] A. Scartazza,et al. Drought induced changes of leaf-to-root relationships in two tomato genotypes. , 2018, Plant physiology and biochemistry : PPB.
[5] S. Neugart,et al. UVB and UVA as eustressors in horticultural and agricultural crops , 2018 .
[6] Filip Vandenbussche,et al. An ultraviolet B condition that affects growth and defense in Arabidopsis. , 2018, Plant science : an international journal of experimental plant biology.
[7] E. Blumwald,et al. Stress-induced senescence and plant tolerance to abiotic stress , 2018, Journal of experimental botany.
[8] S. Gahir,et al. Mechanism of Stomatal Closure in Plants Exposed to Drought and Cold Stress. , 2018, Advances in experimental medicine and biology.
[9] R. Pedreschi,et al. Bioactive Potential of Andean Fruits, Seeds, and Tubers. , 2018, Advances in food and nutrition research.
[10] A. Ranieri,et al. Physiological effects of short acute UVB treatments in Chenopodium quinoa Willd , 2018, Scientific Reports.
[11] A. Pompeiano,et al. Inter- and intraspecific variability in physiological traits and post-anoxia recovery of photosynthetic efficiency in grasses under oxygen deprivation. , 2017, Physiologia plantarum.
[12] G. Jenkins. Photomorphogenic responses to ultraviolet-B light. , 2017, Plant, cell & environment.
[13] É. Hideg,et al. Environmental plasticity of Pinot noir grapevine leaves: A trans-European study of morphological and biochemical changes along a 1,500-km latitudinal climatic gradient. , 2017, Plant, cell & environment.
[14] Influence of altitude and enhanced ultraviolet-B radiation on tuber production, seed viability, leaf pigments and morphology in the wild potato species Solanum kurtzianum Bitter & Wittm collected from an elevational gradient. , 2017, Plant science : an international journal of experimental plant biology.
[15] L. Cisneros-Zevallos,et al. UVA, UVB Light Doses and Harvesting Time Differentially Tailor Glucosinolate and Phenolic Profiles in Broccoli Sprouts , 2017, Molecules.
[16] H. Karam,et al. Ultraviolet solar radiation in the tropical central Andes (12.0°S) , 2017, Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology.
[17] S. Neugart,et al. UV-A radiation effects on higher plants: Exploring the known unknown. , 2017, Plant science : an international journal of experimental plant biology.
[18] A. Pompeiano,et al. The efficient physiological strategy of a tomato landrace in response to short-term salinity stress. , 2016, Plant physiology and biochemistry : PPB.
[19] A. Pompeiano,et al. Seedling Establishment of Tall Fescue Exposed to Long-Term Starvation Stress , 2016, PloS one.
[20] Filip Vandenbussche,et al. Hormone-controlled UV-B responses in plants. , 2016, Journal of experimental botany.
[21] Yang Dong,et al. Genome of Plant Maca (Lepidium meyenii) Illuminates Genomic Basis for High-Altitude Adaptation in the Central Andes. , 2016, Molecular plant.
[22] G. Agati,et al. UV radiation promotes flavonoid biosynthesis, while negatively affecting the biosynthesis and the de-epoxidation of xanthophylls: Consequence for photoprotection? , 2016 .
[23] Xiangdong Fu,et al. Shoot-to-Root Mobile Transcription Factor HY5 Coordinates Plant Carbon and Nitrogen Acquisition , 2016, Current Biology.
[24] Lydie Huché-Thélier,et al. Light signaling and plant responses to blue and UV radiations—Perspectives for applications in horticulture , 2016 .
[25] Axel Mithöfer,et al. Bioactive maca (Lepidium meyenii) alkamides are a result of traditional Andean postharvest drying practices. , 2015, Phytochemistry.
[26] A. Jajoo,et al. Impact of increasing Ultraviolet-B (UV-B) radiation on photosynthetic processes. , 2014, Journal of photochemistry and photobiology. B, Biology.
[27] G. Jenkins,et al. Ultraviolet-B-Induced Stomatal Closure in Arabidopsis Is Regulated by the UV RESISTANCE LOCUS8 Photoreceptor in a Nitric Oxide-Dependent Mechanism1[C][W] , 2014, Plant Physiology.
[28] Yan Zhu,et al. The role and interactions of cytosolic alkalization and hydrogen peroxide in ultraviolet B-induced stomatal closure in Arabidopsis. , 2014, Plant science : an international journal of experimental plant biology.
[29] G. Jenkins. The UV-B Photoreceptor UVR8: From Structure to Physiology , 2014, Plant Cell.
[30] Marcel A K Jansen,et al. UV-B exposure, ROS, and stress: inseparable companions or loosely linked associates? , 2013, Trends in plant science.
[31] D. Gallie,et al. Violaxanthin de-epoxidase is rate-limiting for non-photochemical quenching under subsaturating light or during chilling in Arabidopsis. , 2012, Plant physiology and biochemistry : PPB.
[32] Marcel Fuciman,et al. Role of xanthophylls in light harvesting in green plants: a spectroscopic investigation of mutant LHCII and Lhcb pigment-protein complexes. , 2012, The journal of physical chemistry. B.
[33] R. Ulm,et al. Arabidopsis MAP kinase phosphatase 1 and its target MAP kinases 3 and 6 antagonistically determine UV-B stress tolerance, independent of the UVR8 photoreceptor pathway. , 2011, The Plant journal : for cell and molecular biology.
[34] R. Pedreschi,et al. Glucosinolate content and myrosinase activity evolution in three maca (Lepidium meyenii Walp.) ecotypes during preharvest, harvest and postharvest drying , 2011 .
[35] M. Agrawal,et al. Growth, yield and tuber quality of Solanum tuberosum L. under supplemental ultraviolet-B radiation at different NPK levels. , 2011, Plant biology.
[36] J. González,et al. Morphological and physiological responses of two varieties of a highland species (Chenopodium quinoa Willd.) growing under near-ambient and strongly reduced solar UV-B in a lowland location. , 2009, Journal of photochemistry and photobiology. B, Biology.
[37] J. Libarkin,et al. Rise of the Andes , 2008, Science.
[38] A. Hale,et al. Genotype, location, and year influence antioxidant activity, carotenoid content, phenolic content, and composition in specialty potatoes. , 2007, Journal of agricultural and food chemistry.
[39] M. Matringe,et al. Engineering Plant Shikimate Pathway for Production of Tocotrienol and Improving Herbicide Resistance1 , 2004, Plant Physiology.
[40] J. Vivanco,et al. Andean root and tuber crops: Underground rainbows , 2003 .
[41] K. Newsham. UV-B radiation arising from stratospheric ozone depletion influences the pigmentation of the Antarctic moss Andreaea regularis , 2003, Oecologia.
[42] M. R. Hemm,et al. The Arabidopsis ref2 Mutant Is Defective in the Gene Encoding CYP83A1 and Shows Both Phenylpropanoid and Glucosinolate Phenotypes Article, publication date, and citation information can be found at www.plantcell.org/cgi/doi/10.1105/tpc.006544. , 2003, The Plant Cell Online.
[43] G. Tenore,et al. Glucosinolates from Maca (Lepidium meyenii) , 2002 .