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Effects of Water Stress on Leaf Temperature and Chlorophyll Fluorescence Parameters in Cotton and Peanut

https://doi.org/10.1626/pps.13.269
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2 of 24 checkable references need attention · checked 2026-08-31

At the dated check, the references listed below either did not resolve in Crossref or DataCite, or carried a retraction notice. Each one is shown with the registry record that put it there.

10 without a DOI — not checked. A reference deposited without a DOI is never matched by title or guessed at; it stays outside the checked set, and this line discloses that.

References needing attention

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The 22 checked references that resolve
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Determination of the quantum efficiency of photosystem II and of non-photochemical quenching of chlorophyll fluorescence in the field
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PHOTOSYNTHESIS AND TRANSPIRATION OF BLOOM AND BLOOMLESS SORGHUM
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Solar Tracking by Plants
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Photophysics of the carotenoids associated with the xanthophyll cycle in photosynthesis
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Drought resistance of hard wheat cultivars measured by a rapid chlorophyll fluorescence test
resolves10.1626/pps.8.16
Adaptive Responses of Soybean and Cotton to Water Stress: I. Transpiration Changes in Relation to Stomatal Area and Stomatal Conductance
resolves10.1626/pps.8.131
Adaptive Responses of Soybean and Cotton to Water Stress II. Changes in CO<sub>2</sub>Assimilation Rate, Chlorophyll Fluorescence and Photochemical Reflectance Index in Relation to Leaf Temperature
resolves10.1626/jcs.65.700
Effects of Leaf Movement on Radiation Interception in Field Grown Leguminous Crops. IV. Relation to leaf temperature and transpiration among peanut cultivars.
resolves10.1626/pps.5.224
Leaf Temperature and Transpiration of Field Grown Cotton and Soybean under Arid and Humid Conditions
resolves10.1034/j.1399-3054.1994.900114.x
Drought and chlorophyll fluorescence in field-grown potato (Solanum tuberosum)
resolves10.1007/BF02860838
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Influences of Leaf Temperature on Photosynthetic Carbon Metabolism in Wheat
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Photochemical responses and oxidative stress in two clones of Coffea canephora under water deficit conditions
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Use of simultaneous analysis of gas-exchange and chlorophyll fluorescence quenching for analysing the effects of water stress on photosynthesis in apple leaves
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Dependence of potential productivity and efficiency for solar energy utilization on leaf photosynthetic capacity in crop species.
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Relationship between Water use Efficiency and Cuticular Wax Deposition in Warm Season Forage Crops Grown under Water Deficit Conditions
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The role of active oxygen in the response of plants to water deficit and desiccation
resolves10.1626/pps.7.266
Transpiration and Leaf Movement of Cotton Cultivars Grown in the Field under Arid Conditions
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The 10 references without a DOI — listed, not checked
no DOI — not checked1) Begg, J.E. and Torsell, B.W.R. 1974. Diaphonastic and parahelionastic leaf movements in <i>Stylosanthes humilis</i> HBK. <i>R. Soc. New Zealand Bull. </i>12: 277-283.
no DOI — not checked3) Bilger, W. and Bj&ouml;rkman, O. 1990. Role of the xanthophyll cycle in photoprotection elucidated by measurements of light-induced absorbance changes, fluorescence and photosynthesis in leaves of <i>Hedera canariensi</i>. <i>Photosynth. Res.</i> 25: 173-185.
no DOI — not checked5) Bj&ouml;rkman, O. and Demming-Adams, B. 1994. Regulation of photosynthetic light energy capture, conversion, and dissipation in leaves of higher plants. <i>In</i> E.D. Schulze and M.M. Caldwell, eds. Ecophysiology of Photosynthesis. Ecological Studies 100. Springer, Berlin, Heidelberg, New York. 14-47.
no DOI — not checked6) Bressan, R.A. 2002. Stress Physiology. <i>In</i> L. Taiz and E. Zeiger, eds. Plant Physiology, 3rd edition ed. Sinauer Associates, Inc., Sunderland, Massachusetts. 591-623.
no DOI — not checked7) Carpentier, C. 1996. Influence of high light intensity on photosynthesis: Photoinhibition and energy dissipation. <i>In</i> M. Pessarakli, ed., Handbook of Photosynthesis. Marcel Dekker, New York. 443-450.
no DOI — not checked9) Chow, W.S. 1994. Photoprotection and photoinhibition. <i>In</i> E. E. Bittar and J. Barber, eds., Advances in Molecular and Cell Biology, Molecular Processes of Photosynthesis, Vol. X. JAI Press Inc., Greenwich. 151-196.
no DOI — not checked21) Kramer, P.J. 1983. Water relations of plants. Academic Press, Inc., New York. 291-341.
no DOI — not checked23) Li, F., Kang, S. and Zhang, J. 2004. Interactive effects of elevated CO<sub>2</sub>, nitrogen and drought on leaf area, stomatal conductance and evapotranspiration of wheat. <i>Agric. Water Manage.</i> 67: 221-233.
no DOI — not checked25) Ludlow, M.M. 1989. Strategies of response to water stress. <i>In</i> K.H. Kreeb, et al., eds.- Structural and Functional Responses to Environmental Stresses: Water Shortage. SBP Academic, Hague. 269-281.
no DOI — not checked30) Shimshi, D. 1963. Effect of soil moisture and phenyl-mercuric acetate upon stomatal aperture, transpiration, and photosynthesis. <i>Plant Physiol.</i> 38: 713-721.
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