Sap flow index as an indicator of water storage use
References
- Arcikhovskiy, V.M., 1931. Suction of water by woody species under its artificial injection through holes in conducting tissues. Trudy polesnomu opytnomu delu, CLOS, XI, 69-141. (In Russian.)
- Ballester, C., Castel, J., Testi, L., Intrigliolo, D.S., Castel, J.R, 2013. Can heat-pulse sap flow measurements be used as continuous water stress indicators of citrus trees? Irrig. Sci., 31, 1053-1063.
- Burgess, S.S.O., Adams, M.A., Turner, N.C., Beverly, C.R., Ong, C.K., Khan, A.A.H., Bleby, T.M., 2001. An improved heat pulse method to measure low and reverse rates of sap flow in woody plants. Tree Physiol., 21, 589-598.
- Čermák, J., Deml, M., Penka, M., 1973. A new method of sap flow rate determination in trees. Biol. Plant. (Praha), 15, 171-178.
- Čermák, J., Úlehla, J., Kučera, J., Penka, M., 1982. Sap flow rate and transpiration dynamics in the full-grown oak (Quercus robur L.) in floodplain forest exposed to seasonal floods as related to potential evapotranspiration and tree dimensions. Biol. Plant. (Praha), 24, 446-460.
- Čermák, J., Kučera, J., Bauerle, W.L., Phillips, N., Hinckley, T., 2007. Tree water storage and its diurnal dynamics related to sap flow and changes in stem volume in old-growth Douglas- fir trees. Tree Physiol., 27, 181-198.
- David, T.S., David, J.S., Pinto, C.A., Čermák, J., Nadezhdin, V., Nadezhdina, N., 2012. Hydraulic connectivity from roots to branches depicted through sap flow: analysis on a Quercus suber tree. Funct. Plant Biol., 39, 103-115.
- Deslauriers, A., Morin, H., Urbinati, C., Carrer, M., 2003. Daily weather response of balsam fir (Abies balsamea (L.) Mill.) stem radius increment from dendrometer analysis in the boreal forests of Quebec (Canada). Trees, 17, 477-484.
- Deslauriers, A., Rossi, S., Anfodillo, T., 2007. Dendrometer and intra-annual tree growth: What kind of information can be inferred? Dendrochronol., 25, 113-124.
- Deslauriers, A., Rossi, S., Turcotte, A., Morin, H., Krause, C., 2011. A three-step procedure in SAS to analyze the time series from automatic dendrometers. Dendrochronol., 29, 151-161.
- Devine, W.D., Harrington, C.A., 2011. Factors affecting diurnal stem contraction in young Douglas-fir. Agric. For. Meteorol., 151, 414-419.
- Downes, G., Beadle, C., Worledge, D., 1999. Daily stem growth patterns in irrigated Eucalyptus globulus and E. nitens in relation to climate. Trees, 14, 102-111.
- Granier, A., 1985. Une nouvelle methode pour la mesure dy flux de seve brute dans le trons des arbres. [A new method of sap flow measurement in tree stems]. Ann. Sci. For., 22, 193-200. (In French.)
- Granier, A., Anfodillo, T., Sabatti, M., Cochard, H., Dreyer, E., Tomasi, M.,Valentini, R., Breda, N., 1994. Axial and radial water flows in the trunks of oak trees: a quantitative and qualitative analysis. Tree Physiol., 14, 1383-1396.
- Green, S.R., Clothier, B.E., 1988. Water use of kiwifruit vines and apple trees by the heat-pulse technique. J. Exp. Bot., 39, 115-123.
- Hatton, T.J., Vatchpole, E.A., Vertessy, R.A., 1990. Integration of sap flow velocity to estimate plant water use. Tree Physiol., 6, 201-209.
- Hinckley, T.M., Bruckerhoff, D.N., 1975. The effect of drought on water relations and stem shrinkage of Quercus alba. Can. J. Bot., 53, 62-72.
- Holbrook, N.M., 1995. Stem water storage. In: Gartner, B.L. (Ed.): Plant Stems: Physiology and Functional Morphology. Academic Press, San Diego, pp. 151-174.
- Irvine, J., Grace, J., 1997. Continuous measurements of water tensions in the xylem of trees based on the elastic properties of wood. Planta, 202, 455-461.
- Ježík, M., Blaženec, M., Střelcová, K., 2007. Intraseasonal stem circumference oscillations: their connection to weather course. Folia Oecologica, 34, 105-115.
- Ježík, M., Blaženec, M., Střelcová, K., Ditmarová, L., 2011. Impact of the 2003-2008 weather variability on intra-annual stem diameter changes of beech trees at a submontane site in central Slovakia. Dendrochronologia, 29, 227-235.
- Ježík, M., Blaženec, M., Letts, M.G., Ditmarová, L., Sitková, Z., Střelcová, K., 2014. Assessing seasonal drought stress response in Norway spruce (Picea abies (L.) Karst.) by monitoring stem circumference and sap flow. Ecohydrol DOI: 10.1002/eco.1536
- Katerji, N., Hallaire, M., 1984. Reference measures for use in studies of plant water needs. Agronomie, 4, 999-1008.
- Kučera, J., Cermak, J., Penka, M., 1977. Improved thermal method of continual recording the transpiration flow rate dynamics. Biol. Plant (Praha), 19, 413-420.
- Lassoie, J.P., 1979. Stem dimensional fluctuations in Douglasfir stem in response to tree water status. For. Sci., 25, 132-144.
- López-Bernal, A., Alcantara, E., Testi, L., Villalobos, F.J., 2010. Spatial sap flow and xylem anatomical characteristics in olive trees under different irrigation regimes. Tree Physiol., 30, 1536-1544.
- Nadezhdina, N., 1988. Apple tree water relations and their optimization under conditions of southern Ukraine (in Russ.). PhD Thesis. Kiev, 166 p.
- Nadezhdina, N.E., 1989. A physiological algorithm of woody plant irrigation control under air drought. Fiziologiaya rastenii, 36, 972-979. (In Russian.)
- Nadezhdina, N., 1992. Apple tree water relations studied by means of the relative rate of water flow in the trunk xylem. Biol. Plant. (Praha), 34, 431-437.
- Nadezhdina, N., 1998. Temperature gradients around a linear heater due to moving sap. In: Cermak J, Nadezhdina, N. (Eds): Proc. 4th Int. Workshop on Measuring sap flow in intact plants. Publishing House of Mendel University, Brno, Czech Republic, pp. 65-71.
- Nadezhdina, N., 1999. Sap flow index as an indicator of plant water status. Tree Physiol., 19, 885-891.
- Nadezhdina, N., 2000. Specificity of sap flow index for mist irrigation control. Acta Horticulturae, 537, 479-486.
- Nadezhdina, N., 2009. Additional Information Derived from Detail Analysis of Raw Temperature Data Measured with the HFD-method. Acta Hortic., 846, 77-84.
- Nadezhdina, N., Čermák, J., Nadezhdin, V., 1998. Heat field deformation method for sap flow measurements. In: Cermak, J., Nadezhdina, N. (Eds): Proceedings of the 4th international workshop on measuring sap flow in intact plants. Publishing House of Mendel University, Czech Republic, pp. 72-92.
- Nadezhdina, N., Vandegehuchte, M.W., Steppe, K., 2012. Sap flow measurements based on Heat Field Deformation method. Trees, 26, 1439-1448.
- Offenthaler, I., Hietz, P., Richter, H., 2001. Wood diameter indicates diurnal and long-term patterns of xylem water potential in Norway spruce. Trees, 15, 215-221.
- Perämäki, M., Nikinmaa, E., Sevanto, S., Ilvesniemi, H., Siivola, E., Hari, P., Vesala, T., 2001. Tree stem diameter variations and transpiration in Scots pine: an analysis using dynamic sap flow model. Tree Physiol., 21, 889-897.
- Sevanto, S., Vesala, T., Perämäki, M., Nikinmaa, E., 2002. Time lags for xylem and stem diameter variations in a Scots pine tree. Plant Cell Environ., 25, 1071-1077.
- Sevanto, S., Hölttä, T., Markkanen, T., Perämäki, M., Nikinmaa, E., Vesala, T., 2005. Relationships between diurnal diameter variations and environmental factors in Scots pine. Boreal Environ. Res., 10, 447-458.
- Sevanto, S., Nikinmaa, E., Riikonen, A., Daley, M., Pettijohn, J.C., Mikkelsen, T.N., Phillips, N., Holbrook, N.M., 2008. Linking xylem diameter variations with sap flow measurements. Plant Soil, 305, 77-90.
- Vieira, J., Rossi, S., Campelo, F., Freitas, H., Nabais, C., 2013. Seasonal and daily cycles of stem radial variation of Pinus pinaster in a drought-prone environment. Agric. For. Meteorol., 180, 173-181.
- Wang, Z., Yang, B., Deslauriers, A., Qin, C., He, M., Shi, F., Liu, J., 2012. Two phases of seasonal stem radius variations of Sabina przewalskii Kom. in northwestern China inferred from sub-diurnal shrinkage and expansion patterns. Trees, 6, 1747-1757.
- Waring, R.H., Running, S.W., 1978. Sapwood water storage: its contribution to transpiration and effect upon water conductance through the stems of old-growth Douglas-fir. Plant Cell Eviron., 1, 131-140.
- Zweifel, R., Item, H., Häsler, R., 2000. Stem radius changes and their relation to stored water in stems of young Norway spruce trees. Trees, 15, 50-57.
- Zweifel, R., Item, H., Häsler, R., 2001. Link between diurnal stem radius changes and tree water relations. Tree Physiol., 21, 869-877.
- Zweifel, R., Zimmermann, L., Zeugin, F., Newbery, D.M., 2006. Intra-annual radial growth and water relations of trees - implications towards a growth mechanism. J. Exp. Bot., 57, 1445-1459.
- Zweifel, R., Drew, D.M., Schweingruber, F.H., Downes, G.M., 2014. Xylem as the main origin of stem radius changes in Eucalyptus. Funct. Plant Biol., 41, 520-534.
DOI: https://doi.org/10.1515/johh-2015-0013 | Journal eISSN: 1338-4333 (formerly 0042-790X) | Journal ISSN: 0042-790X
Language: English
Page range: 124 - 133
Submitted on: Sep 12, 2014
Accepted on: Dec 8, 2014
Published on: Apr 7, 2015
Published by: Slovak Academy of Sciences, Institute of Hydrology
In partnership with: Paradigm Publishing Services
Keywords:
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© 2015 Nadezhda Nadezhdina, Jan Čermák, Alec Downey, Valeriy Nadezhdin, Martti Perämäki, Jorge Soares David, Clara A. Pinto, Teresa Soares David, published by Slovak Academy of Sciences, Institute of Hydrology
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