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Plant Physiology|September 6, 2023
Optimizing the electron transport chain to sustainably improve photosynthesisLianhong GuPlant, Cell & Environment|November 19, 2013
Artefactual responses of mesophyll conductance to CO2 and irradiance estimated with the variable J and online isotope discrimination methodsLianhong Gu, Ying SunPlant Physiology and Biochemistry : PPB|August 18, 2020
The maximum carboxylation rate of Rubisco affects CO<sub>2</sub> refixation in temperate broadleaved forest treesDiana Eckert, Anna Monrad Jensen, Lianhong GuTree Physiology|November 5, 2002
How the environment, canopy structure and canopy physiological functioning influence carbon, water and energy fluxes of a temperate broad-leaved deciduous forest--an assessment with the biophysical model CANOAKDennis D Baldocchi, Kell B Wilson, Lianhong GuPlant, Cell & Environment|January 31, 2022
Inference of photosynthetic capacity parameters from chlorophyll a fluorescence is affected by redox state of PSII reaction centersJimei Han, Lianhong Gu, Jiaming Wen, et al.Global Change Biology|July 6, 2026
Eddy Covariance Theory: A ReviewJeffrey D Wood, Lianhong Gu, Adam P Schreiner-McGrawFrontiers in Plant Science|December 6, 2023
Determinants of photochemical characteristics of the photosynthetic electron transport chain of maizeXiuping Liu, Yunzhou Qiao, Wangming Zhou, et al.Plos One|February 22, 2014
Representation of dormant and active microbial dynamics for ecosystem modelingGangsheng Wang, Melanie A Mayes, Lianhong Gu, et al.Tree Physiology|February 17, 2021
CO2 refixation is higher in leaves of woody species with high mesophyll and stomatal resistances to CO2 diffusionDiana Eckert, Helle Juel Martens, Lianhong Gu, et al.Global Change Biology|January 5, 2023
The ecosystem wilting point defines drought response and recovery of a Quercus-Carya forestJeffrey D Wood, Lianhong Gu, Paul J Hanson, et al.Pageof 5