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- W2366478271 abstract "Chloroplast,which is considered the primary site where delayed fluorescence(DF) is produced,is most susceptible to salinity.Under salt stress and osmotic stress,net photosynthesis rate(Pn),DF intensity and chlorophyll content in leaves of soybean(Glycine max Zaoshu No.18) seedlings of 21-day-old were simultaneously surveyed.In vivo detecting DF emissions from seedlings with the biosensor that was developed in our laboratory enables the DF intensity parameter to be rapidly produced.Pn and DF signal measurements showed that both DF intensity and Pn decreased with the increasing of NaCl and sorbitlol concentrations.Moreover,the degree of decline in DF intensity was almost identical to that in Pn.Further examination of the time dynamic action course of salt stress and osmotic stress clearly showed that the inhibitive effects of 125 mmol/L NaCl on photosynthesis within the first 36 h was mainly caused by osmotic stress,and that ionic detriment to photosynthesis slowly occurred only at a later stage of treatment.Additionally,the fact that Na+-channel blocker phenytoin significantly reversed the slow phase of the NaCl-induced decline in DF intensity and Pn also supported the above findings.Similar dynamic behavior of Pn and DF intensity under each stress condition further demonstrated that the changes in DF can rapidly identify the stress manner of salinity on photosynthetic metabolism and exactly evaluate the extent of damage to plants.It is thus concluded that DF is noninvasive,and can provide a simple and practical method for real-time monitoring the effects of salt stress on plants and screening the plant species with salt tolerance." @default.
- W2366478271 created "2016-06-24" @default.
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- W2366478271 date "2009-01-01" @default.
- W2366478271 modified "2023-09-23" @default.
- W2366478271 title "Rapid and Non-invasive Monitoring of the Damage of Salt Stress to Photosynthetic Metabolism" @default.
- W2366478271 hasPublicationYear "2009" @default.
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