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Characterization of the gene cluster involved in isoprene metabolism in Rhodococcus sp. strain AD45Ozone quenching properties of isoprene and its antioxidant role in leavesIsoprene increases thermotolerance of fosmidomycin-fed leavesIsoprene produced by leaves protects the photosynthetic apparatus against ozone damage, quenches ozone products, and reduces lipid peroxidation of cellular membranesPhysiological responses of forest trees to heat and drought.Long-term acclimation of plants to elevated CO2 and its interaction with stresses.Dephosphorylation of photosystem II reaction center proteins in plant photosynthetic membranes as an immediate response to abrupt elevation of temperature.Release and uptake of volatile organic compounds by human hepatocellular carcinoma cells (HepG2) in vitro.Blood and breath profiles of volatile organic compounds in patients with end-stage renal disease.Identification and characterization of 2'-deoxyadenosine adducts formed by isoprene monoepoxides in vitro.Breath isoprene: muscle dystrophy patients support the concept of a pool of isoprene in the periphery of the human body.Three distinct phases of isoprene formation during growth and sporulation of Bacillus subtilisA glutathione S-transferase with activity towards cis-1, 2-dichloroepoxyethane is involved in isoprene utilization by Rhodococcus sp. strain AD45.Microbial consumption of atmospheric isoprene in a temperate forest soilStructural and Chemical Biology of Terpenoid Cyclases.Metabolism of 2-methylpropene (isobutylene) by the aerobic bacterium Mycobacterium sp. strain ELW1.Concentration- and time-dependent genotoxicity profiles of isoprene monoepoxides and diepoxide, and the cross-linking potential of isoprene diepoxide in cellsFrog volatile compounds: application of in vivo SPME for the characterization of the odorous secretions from two species of Hypsiboas treefrogs.Volatile metabolites from microorganisms grown on humid building materials and synthetic media.The capacity for thermal protection of photosynthetic electron transport varies for different monoterpenes in Quercus ilex.Metabolic analysis of the increased adventitious rooting mutant of Artemisia annua reveals a role for the plant monoterpene borneol in adventitious root formation.Mono- and sesquiterpene release from tomato (Solanum lycopersicum) leaves upon mild and severe heat stress and through recovery: from gene expression to emission responses.Exhaled Isoprene and Acetone in Newborn Infants and in Children with Diabetes MellitusWEATHER EFFECTS ON ISOPRENE EMISSION CAPACITY AND APPLICATIONS IN EMISSIONS ALGORITHMS
P2860
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P2860
description
1996 nî lūn-bûn
@nan
1996年の論文
@ja
1996年論文
@yue
1996年論文
@zh-hant
1996年論文
@zh-hk
1996年論文
@zh-mo
1996年論文
@zh-tw
1996年论文
@wuu
1996年论文
@zh
1996年论文
@zh-cn
name
Isoprene synthesis by plants and animals.
@en
type
label
Isoprene synthesis by plants and animals.
@en
prefLabel
Isoprene synthesis by plants and animals.
@en
P1433
P1476
Isoprene synthesis by plants and animals.
@en
P2093
Sharkey TD
P356
10.1016/0160-9327(96)10014-4
P577
1996-01-01T00:00:00Z