Alcohol dehydrogenase 1 (ADH1) confers both abiotic and biotic stress resistance in Arabidopsis

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Alcohol dehydrogenase 1 (ADH1) confers both abiotic and biotic stress resistance in Arabidopsis is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1016/J.PLANTSCI.2017.05.013
P8608Fatcat IDrelease_htqy5bh74ndplivuzxqyoyehqa
P698PubMed publication ID28716417

P2093author name stringWen Liu
Yue Yao
Haitao Shi
Zhulong Chan
Yunxie Wei
P2860cites workAn "Electronic Fluorescent Pictograph" browser for exploring and analyzing large-scale biological data setsQ33293530
P304page(s)24-31
P577publication date2017-06-06
P1433published inPlant ScienceQ15746538
P1476titleAlcohol dehydrogenase 1 (ADH1) confers both abiotic and biotic stress resistance in Arabidopsis
P478volume262

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cites work (P2860)
Q64084841Acts as a Negative Regulator in Both Transgenic and Cotton During Drought and Salt Stress
Q58699125Arabidopsis thaliana alcohol dehydrogenase is differently affected by several redox modifications
Q58617463Combined multivariate analysis and machine learning reveals a predictive module of metabolic stress response in Arabidopsis thaliana
Q92619198Depicting the Core Transcriptome Modulating Multiple Abiotic Stresses Responses in Sesame (Sesamum indicum L.).
Q104064703Linking diverse salinity responses of 14 almond rootstocks with physiological, biochemical, and genetic determinants
Q90683258Quantitative proteomic, physiological and biochemical analysis of cotyledon, embryo, leaf and pod reveals the effects of high temperature and humidity stress on seed vigor formation in soybean
Q55158787The Arabidopsis AtUNC-93 Acts as a Positive Regulator of Abiotic Stress Tolerance and Plant Growth via Modulation of ABA Signaling and K+ Homeostasis.
Q92620787The PHOSPHATE1 genes participate in salt and Pi signaling pathways and play adaptive roles during soybean evolution
Q98163351The alcohol dehydrogenase gene family in sugarcane and its involvement in cold stress regulation
Q99711921The photo-inhibition of camphor leaves (Cinnamomum camphora L.) by NaCl stress based on physiological, chloroplast structure and comparative proteomic analysis
Q92259506Transcriptome Analysis Identifies Candidate Genes and Functional Pathways Controlling the Response of Two Contrasting Barley Varieties to Powdery Mildew Infection

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