Category:Rishikesh Upadhyay

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<nowiki>Rishikesh Upadhyay; হৃষিকেশ উপাধ্যায়; Rishikesh Upadhyay; Rishikesh Upadhyay; Rishikesh Upadhyay; ऋषिकेश उपाध्याय; హృషికేష్ ఉపాధ్యాయ; Rishikesh Upadhyay; Rishikesh Upadhyay; Rishikesh Upadhyay; Rishikesh Upadhyay; Rishikesh Upadhyay; india escritora y profesora; ভারতীয় লেখক এবং অধ্যাপক; изилдөөчү; forskare; Indiach scríbhneoir agus ollamh; Indian writer and professor; Indiase auteur en professor; indiano scrittrice e professore; भारतीय लेखक और प्रोफ़ेसर; భారతీయ రచయిత మరియు ప్రొఫెసర్; 연구원; indian shkrimtar dhe profesor; Indian writer and professor; 研究者; indien écrivaine et professeur; Upadhyay Rishikesh; Rishikesh Upadhyay PhD; Dr Rishikesh Upadhyay; R K Upadhyay; Rishi Kesh Upadhyay; Upadhyay Rishikesh; Rishikesh Upadhyay PhD; Dr Rishikesh Upadhyay; R K Upadhyay</nowiki>
Rishikesh Upadhyay 
Indian writer and professor
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Name in native language
  • ऋषिकेश उपाध्याय
Country of citizenship
Educated at
  • Assam University (Doctor of Philosophy, Master of Philosophy, Master of Science, 2002–)
  • Haflong Government College (Bachelor of Science (Honours), 1999–)
  • Don Bosco School (Higher Secondary School Certificate, 1994–)
Occupation
Employer
Position held
Field of work
Father
  • Pitambar Upadhaya
Mother
  • Nandakala (Bawni) Upadhaya
Sibling
  • Sandhya Upadhyay
  • Ramu Upadhaya
Notable work
  • The Life of Plants in a Changing Environment
  • The Secret of Plants in the Environment
  • Plant Heavy Metal Stress: Physiological and Biochemical adaptations
  • Plant Stress Physiology: Physiological and Biochemical perspectives
  • Salt tolerance of two aquatic macrophytes, Pistia stratiotes and Salvinia molesta
  • Zinc reduces copper toxicity induced oxidative stress by promoting antioxidant defense in freshly grown aquatic duckweed Spirodela polyrhiza L.
  • Copper-induced growth inhibition, oxidative stress and ultrastructural alterations in freshly grown water lettuce (Pistia stratiotes L.).
  • Metal stress in plants: its detoxification in natural environment
  • Influence of chromium salts on increased lipid peroxidation and differential pattern in antioxidant metabolism in Pistia stratiotes L
  • How Rice (Oryza sativa L.), a Semi-Aquatic Plant Adapt to Natural Flood or Submerged Condition? A Physiological Perspective
  • Oxidative Injury and its Detoxification in Rice Plants after Submergence Stress
  • Study on plants: Towards a reason or purpose
  • Programmed Cell Death and Abiotic Stress Responses in Plants
  • Does salinity stress amend the morphology and physiological appearance of young betel nut (Areca catechu L.) seedlings?
  • Plant-rhizobacteria interaction: Physiological implication for heavy metal stress in plants—A review
  • Lead phyto-toxicity induced by accumulation and uptake potentially inhibits morpho-physiological depression and alterations in an aquatic model plant, Eichhornia crassipes
  • Arsenic accumulation and associated toxic effects in Spirodela polyrhiza L.
  • Secondary Metabolites: the Plant Physiological Tale of Stress Response
  • What alters plant photosynthetic regulatory mechanism in environments?
  • Plant life in future perspective
  • Responses of antioxidant metabolism and defense mechanism of aquatic macrophyte, Pistia stratiotes L. to zinc treatment under copper stress
  • Biochemical impact of re-oxygenation in rice seedlings after submergence stress.
  • Growth, Chlorophyll and electric conductivity responses of rice cultivars to different levels of submergence and post submergence stress
  • Biochemical changes and oxidative damage in Azolla pinnata L. under chromium phytotoxicity stress
  • Salinity stress induced physiological and biochemical changes in Azolla pinnata
  • Biochemical changes in Azolla pinnata under Chromium toxicity.
  • Thermosensitivity and regulation of activities of superoxide dismutase and guaiacol peroxidase by chromium ions in plants
  • Biochemical responses and oxidative stress induction in the roots of freshly grown Spirodella polyrhiza L. exposed to different levels of salinity
  • Salt stress responses in the roots of Lemna minor L. under NaCl salinity
  • Salt stress injury induces oxidative alterations and antioxidative defense in the roots of Lemna minor L
Authority file
Wikidata Q84066265
ISNI: 0000000507292509
VIAF ID: 9164354280513000823
GND ID: 1250255902
Library of Congress authority ID: no2023080374
IdRef ID: 266090400
Libraries Australia ID: 70267178
Open Library ID: OL9880224A
ORCID iD: 0000-0002-4207-8813
ResearcherID: F-3091-2012
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Media in category "Rishikesh Upadhyay"

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