Percentage variation in the drought stress treatment (irrigation 0% of field capacity) with respect to the control (irrigation 0% of field capacity) for selected photosynthesis (A = net photosynthesis; g<sub>s</sub> = stomatal conductance to water vapour; E = leaf transpiration; Ci/Ca = ratio between stomatal and ambient CO<sub>2</sub> concentration; WUE = Water Use Efficiency), and fluorescence parameters (ΦPSII = effective quantum efficiency of PSII; qP = photochemical quenching; qNP = non photochemical quenching; ETR = electron transport rate; F<sub>v</sub>/F<sub>m</sub> = maximum quantum yield of PSII), measured on Tietar and DKC6575 at T2 (after 20 d without irrigation) in the field experiment.
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数据链接:
https://figshare.com/articles/dataset/_Percentage_variation_in_the_drought_stress_treatment_irrigation_0_of_field_capacity_with_respect_to_the_control_irrigation_0_of_field_capacity_for_selected_photosynthesis_A_net_photosynthesis_g_s_stomatal_conductance_to_water_vapour_E_leaf_transpiration_/1311977数据链接链接失效反馈
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资源简介:
Percentage variation in the drought stress treatment (irrigation 0% of field capacity) with respect to the control (irrigation 0% of field capacity) for selected photosynthesis (A = net photosynthesis; gs = stomatal conductance to water vapour; E = leaf transpiration; Ci/Ca = ratio between stomatal and ambient CO2 concentration; WUE = Water Use Efficiency), and fluorescence parameters (ΦPSII = effective quantum efficiency of PSII; qP = photochemical quenching; qNP = non photochemical quenching; ETR = electron transport rate; Fv/Fm = maximum quantum yield of PSII), measured on Tietar and DKC6575 at T2 (after 20 d without irrigation) in the field experiment.
创建时间:
2015-02-18



