Isoprene Emission and Carbon Dioxide Protect Aspen Leaves from Heat Stress
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[1] Masashi Suzuki,et al. Plants utilize isoprene emission as a thermotolerance mechanism. , 2007, Plant & cell physiology.
[2] T. Sharkey,et al. Fitting photosynthetic carbon dioxide response curves for C(3) leaves. , 2007, Plant, cell & environment.
[3] J. Bohlmann,et al. Transgenic, non-isoprene emitting poplars don't like it hot. , 2007, The Plant journal : for cell and molecular biology.
[4] M. Lerdau. A Positive Feedback with Negative Consequences , 2007, Science.
[5] J. Penner,et al. Effects of additional nonmethane volatile organic compounds, organic nitrates, and direct emissions of oxygenated organic species on global tropospheric chemistry , 2007 .
[6] S. Kellomäki,et al. Do Elevated Temperature and CO2 Generally Have Counteracting Effects on Phenolic Phytochemistry of Boreal Trees? , 2007, Journal of Chemical Ecology.
[7] K. Pregitzer,et al. Scaling ozone responses of forest trees to the ecosystem level in a changing climate , 2005 .
[8] F. Loreto,et al. On the relationship between isoprene emission and thermotolerance in Phragmites australis leaves exposed to high temperatures and during the recovery from a heat stress , 2005 .
[9] G. M. Souza,et al. Network connectance and autonomy analyses of the photosynthetic apparatus in tropical tree species from different successional groups under contrasting irradiance conditions , 2005 .
[10] R. Welschen,et al. Midday depression of net photosynthesis in the tropical rainforest tree Eperua grandiflora: contributions of stomatal and internal conductances, respiration and Rubisco functioning. , 2003, Tree physiology.
[11] T. Sharkey,et al. Isoprene increases thermotolerance of fosmidomycin-fed leaves. , 2001, Plant physiology.
[12] T. Toma,et al. Limitation of leaf carbon gain by stomatal and photochemical processes in the top canopy of Macaranga conifera, a tropical pioneer tree. , 1999, Tree physiology.
[13] R. Sage,et al. Interactive effects of low atmospheric CO2 and elevated temperature on growth, photosynthesis and respiration in Phaseolus vulgaris , 1998 .
[14] F. Bazzaz,et al. Elevated CO2 ameliorates birch response to high temperature and frost stress: implications for modeling climate-induced geographic range shifts , 1998, Oecologia.
[15] T. Sharkey,et al. Isoprene Increases Thermotolerance of Isoprene-Emitting Species , 1997, Plant physiology.
[16] Eric L. Singsaas,et al. Why plants emit isoprene , 1995, Nature.
[17] B. Kimball,et al. Effects of Atmospheric CO(2) Enrichment on Photosynthesis, Respiration, and Growth of Sour Orange Trees. , 1992, Plant physiology.
[18] R. Monson,et al. Isoprene emission from aspen leaves : influence of environment and relation to photosynthesis and photorespiration. , 1989, Plant physiology.
[19] M. Lerdau. Ecology. A positive feedback with negative consequences. , 2007, Science.
[20] Ronald E. Hester,et al. Volatile organic compounds in the atmosphere , 1995 .