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J.G. Norcini, P.C. Andersen, and G.W. Knox

Abbreviations: A, net CO 2 assimilation; Ci, intercellular CO 2 concentration; E, transpiration rate; GI, growth index; gs, stomatal conductance; LT, leaf ternperature; PE, pretreatment expanded; PPF, photosynthetic photon flux RE, recently

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Donavon Sonnenberg, Patrick A. Ndakidemi, Ambrose Okem, and Charles Laubscher

wavelength range 400–700 nm) is used in the presence of chlorophyll to synthesis carbohydrate such as sugar from CO 2 and water ( Petela, 2007 ). Photosynthetic rate (A), intercellular CO 2 concentration (C i ), g S , transpiration rate (e), and dry matter

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Xuan Liu and Donald L. Suarez

)], net photosynthetic rate [ A ( C and D )], intercellular CO 2 concentration [C i ( E and F )], water use efficiency [WUE ( G and H )], carbon 13 isotope discrimination [Δ 13 ( I and J )], and SPAD readings ( K and L ) of lima bean (cv

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P.C. Andersen, J.G. Norcini, and G.W. Knox

Abbreviations: A, net CO 2 assimilation; chl, chlorophyll; Ci, intercellular CO 2 concentration; E, transpiration; GI, growth index, GLM, general linear model; gs, stomatal conductance; LT, leaf temperature; RLWC, relative leaf water content; SLW

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Qin Shi, Yunlong Yin, Zhiquan Wang, Wencai Fan, and Jianfeng Hua

. On days 5, 8, 10, and 17 of the experimental period, six of nine plants per treatment were chosen to measure net P n , T r , g S , and intercellular CO 2 concentration ( C i ). A red/blue LED light LI-6400 Portable System (LI-COR, Lincoln, NE) was

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Tao Hu, Haiying Yi, Longxing Hu, and Jinmin Fu

−1 at 0, 4, and 8 DAT. Net photosynthetic rate (P n ), stomatal conductance ( g S ), and intercellular CO 2 concentration (C i ) were measured with four fully expanded leaves (second from the top) from three subsamples in each pot. Values of

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Yuya Mochizuki, Saori Sekiguchi, Naomi Horiuchi, Thanda Aung, and Isao Ogiwara

under blue and green LEDs ( Fig. 3F ). Fig. 3. Responses of stomatal conductance, leaf intercellular CO 2 concentrations, and transpiration rates to irradiance for the adaxial side of ( A , C , E ) mature strawberry leaves and ( B , D , F ) young

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Jinhong Yuan, Man Xu, Wei Duan, Peige Fan, and Shaohua Li

water potential, ( B ) net photosynthetic rate (P n ), ( C ) stomatal conductance ( g S ), and ( D ) intercellular CO 2 concentration (Ci) of leaves of micropropagated apple trees in response to half-root water stress (▼) and whole-root water stress

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Fang Xiao, Zaiqiang Yang, Haijing Huang, Fei Yang, Liyun Zhu, and Dong Han

. Fig. 2. Changes in leaf photosynthetic rate ( P N ) ( A ), transpiration rate ( T r ) ( B ), stomatal conductance ( g S ) ( C ), and intercellular CO 2 concentration ( C i ) ( D ) in ‘Wuniuzao’ after N fertilization. Uppercase and lowercase letters

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Richard J. Heerema, Dawn VanLeeuwen, Marisa Y. Thompson, Joshua D. Sherman, Mary J. Comeau, and James L. Walworth

it will require further investigation to confirm, this suggests that water use efficiency of ‘Wichita’ pecan improved with soil Zn-EDTA applications. Intercellular CO 2 concentration was not significantly different among the Control and two soil Zn