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Array and distribution of actin filaments in guard cells contribute to the determination of stomatal apertureGAO, Xin-Qi; JING CHEN; WEI, Peng-Cheng et al.Plant cell reports (Print). 2008, Vol 27, Num 10, pp 1655-1665, issn 0721-7714, 11 p.Article

Dynamics of vacuoles and actin filaments in guard cells and their roles in stomatal movementGAO, Xin-Qi; WANG, Xiu-Ling; FEI REN et al.Plant, cell and environment (Print). 2009, Vol 32, Num 8, pp 1108-1116, issn 0140-7791, 9 p.Article

Low carbon dioxide concentrations can reverse stomatal closure during water stressBUNCE, James A.Physiologia Plantarum (København. 1948). 2007, Vol 130, Num 4, pp 552-559, issn 0031-9317, 8 p.Article

Structure and ultrastructure of stomataLOUGUET, P; COUDRET, A; COUOT-GASTELIER, J et al.Biochemie und Physiologie der Pflanzen. 1990, Vol 186, Num 5-6, pp 273-287, issn 0015-3796, 15 p.Conference Paper

Overexpression of the Arabidopsis α-expansin gene AtEXPA1 accelerates stomatal opening by decreasing the volumetric elastic modulusZHANG, Xiu-Qing; WEI, Peng-Cheng; XIONG, Yan-Mei et al.Plant cell reports (Print). 2011, Vol 30, Num 1, pp 27-36, issn 0721-7714, 10 p.Article

The problem of variability in stomatal responses, particularly aperture variance, to environmental and experimental conditionsSPENCE, R. D.New phytologist. 1987, Vol 107, Num 2, pp 303-315, issn 0028-646XArticle

A new catch in the SNAREPRATELLI, Rejane; SUTTER, Jens-Uwe; BLATT, Michael R et al.Trends in plant science. 2004, Vol 9, Num 4, pp 187-195, issn 1360-1385, 9 p.Article

Control of ion fluxes in stomatal guard cellsMACROBBIE, E. A. C.Botanica acta. 1988, Vol 101, Num 2, pp 140-148, issn 0932-8629Article

Overexpression of AtMYB44 Enhances Stomatal Closure to Confer Abiotic Stress Tolerance in Transgenic ArabidopsisJUNG, Choonkyun; JUN SUNG SEO; SANG WON HAN et al.Plant physiology (Bethesda). 2008, Vol 146, Num 2, pp 623-635, issn 0032-0889, 13 p.Article

Exploring biophysical and biochemical components of the osmotic motor that drives stomatal movementRASCHKE, K; HEDRICH, R; RECKMANN, U et al.Botanica acta. 1988, Vol 101, Num 4, pp 283-294, issn 0932-8629Article

A novel device detects a rapid ozone-induced transient stomatal closure in intact Arabidopsis and its absence in abi2 mutantKOLLIST, Triin; MOLDAU, Heino; RASULOV, Bahtijor et al.Physiologia Plantarum (København. 1948). 2007, Vol 129, Num 4, pp 796-803, issn 0031-9317, 8 p.Article

Silica deposition in cell walls of the stomatal apparatus of rice leavesUENO, Osamu; AGARIE, Sakae.Plant production science. 2005, Vol 8, Num 1, pp 71-73, issn 1343-943X, 3 p.Article

Dynamic regulation of guard cell anion channels by cytosolic free Ca2+ concentration and protein phosphorylationCHEN, Zhong-Hua; HILLS, Adrian; LIM, Choon K et al.Plant journal. 2010, Vol 61, Num 5, pp 816-825, issn 0960-7412, 10 p.Article

Guard cell metabolism and CO2 sensingVAVASSEUR, Alain; RAGHAVENDRA, Agepati S.New phytologist. 2005, Vol 165, Num 3, pp 665-682, issn 0028-646X, 18 p.Article

Stomatal action directly feeds back on leaf turgor: new insights into the regulation of the plant water status from non-invasive pressure probe measurementsACHE, Peter; BAUER, Hubert; KOLLIST, Hannes et al.Plant journal. 2010, Vol 62, Num 6, pp 1072-1082, issn 0960-7412, 11 p.Article

Quantification and cluster analysis of actin cytoskeletal structures in plant cells: role of actin bundling in stomatal movement during diurnal cycles in Arabidopsis guard cellsHIGAKI, Takumi; KUTSUNA, Natsumaro; SANO, Toshio et al.Plant journal. 2010, Vol 61, Num 1, pp 156-165, issn 0960-7412, 10 p.Article

The reorganization of actin filaments is required for vacuolar fusion of guard cells during stomatal opening in ArabidopsisLI, Li-Juan; FEI REN; GAO, Xin-Qi et al.Plant, cell and environment (Print). 2013, Vol 36, Num 2, pp 484-497, issn 0140-7791, 14 p.Article

Optimizing thermal imaging as a technique for detecting stomatal closure induced by drought stress under greenhouse conditionsGRANT, Olga M; CHAVES, M. Manuela; JONES, Hamlyn G et al.Physiologia Plantarum (København. 1948). 2006, Vol 127, Num 3, pp 507-518, issn 0031-9317, 12 p.Article

Higher electron transport rate observed at low intercellular CO2 concentration in long-term drought-acclimated leaves of Japanese mountain birch (Betula ermanii)KITAO, Mitsutoshi; LEI, Thomas T; KOIKE, Takayoshi et al.Physiologia Plantarum (København. 1948). 2003, Vol 118, Num 3, pp 406-413, issn 0031-9317, 8 p.Article

Use of the pressure probe in studies of stomatal functionFRANKS, Peter J.Journal of experimental botany. 2003, Vol 54, Num 387, pp 1495-1504, issn 0022-0957, 10 p.Article

Processes modulating calcium distribution in citrus leaves. An investigation using X-ray microanalysis with strontium as a tracerSTOREY, Richard; LEIGH, Roger A.Plant physiology (Bethesda). 2004, Vol 136, Num 3, pp 3838-3848, issn 0032-0889, 11 p.Article

The coupled response of stomatal conductance to photosynthesis and transpirationJARVIS, A. J; DAVIES, W. J.Journal of experimental botany. 1998, Vol 49, pp 399-406, issn 0022-0957, NSConference Paper

The simulation of leaf conductance responses to changes in environmental water statusYANG SHU-DONG.Zhíwùxué Bào. 1990, Vol 32, Num 9, pp 686-694, issn 0577-7496, 9 p.Article

Lack of correlation between senescence and stomatal aperture in Lemna gibba G3KWAN HEE PARK; KYU WOONG HAHN; KANG, B. G et al.Plant and cell physiology. 1990, Vol 31, Num 5, pp 731-733, issn 0032-0781, 3 p.Article

The apoplastic pool of abscisic acid in cotton leaves in relation to stomatal closureRADIN, J. W; HENDRIX, D. L.Planta. 1988, Vol 174, Num 2, pp 180-186, issn 0032-0935Article

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