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| Range size and growth temperature influence Eucalyptus species responses to an experimental heatwave [期刊论文] Global Change Biology, 2019-01-01, Aspinwall M.J.; Pfautsch S.; Tjoelker M.G.; Vårhammar A.; Possell M.; Drake J.E.; Reich P.B.; Tissue D.T.; Atkin O.K.; Rymer P.D.; Dennison S.; Van Sluyter S.C.
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| Photosynthetic capacity and leaf nitrogen decline along a controlled climate gradient in provenances of two widely distributed Eucalyptus species [期刊论文] Global Change Biology, 2018-01-01, 24 (10 Crous K.Y.; Drake J.E.; Aspinwall M.J.; Sharwood R.E.; Tjoelker M.G.; Ghannoum O.
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| Trees tolerate an extreme heatwave via sustained transpirational cooling and increased leaf thermal tolerance [期刊论文] Global Change Biology, 2018-01-01, 24 (6 Drake J.E.; Tjoelker M.G.; Vårhammar A.; Medlyn B.; Reich P.B.; Leigh A.; Pfautsch S.; Blackman C.J.; López R.; Aspinwall M.J.; Crous K.Y.; Duursma R.A.; Kumarathunge D.; De Kauwe M.G.; Jiang M.; Nicotra A.B.; Tissue D.T.; Choat B.; Atkin O.K.; Barton C.V.M.
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| Macromolecular rate theory (MMRT) provides a thermodynamics rationale to underpin the convergent temperature response in plant leaf respiration [期刊论文] Global Change Biology, 2018-01-01, 24 (4 Liang L.L.; Arcus V.L.; Heskel M.A.; O'Sullivan O.S.; Weerasinghe L.K.; Creek D.; Egerton J.J.G.; Tjoelker M.G.; Atkin O.K.; Schipper L.A.
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| A common thermal niche among geographically diverse populations of the widely distributed tree species Eucalyptus tereticornis: No evidence for adaptation to climate-of-origin [期刊论文] Global Change Biology, 2017-01-01, Drake J.E.; Vårhammar A.; Kumarathunge D.; Medlyn B.E.; Pfautsch S.; Reich P.B.; Tissue D.T.; Ghannoum O.; Tjoelker M.G.
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| Thermal limits of leaf metabolism across biomes [期刊论文] Global Change Biology, 2017-01-01, 23 (1 O'sullivan O.S.; Heskel M.A.; Reich P.B.; Tjoelker M.G.; Weerasinghe L.K.; Penillard A.; Zhu L.; Egerton J.J.G.; Bloomfield K.J.; Creek D.; Bahar N.H.A.; Griffin K.L.; Hurry V.; Meir P.; Turnbull M.H.; Atkin O.K.
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| Short-term carbon cycling responses of a mature eucalypt woodland to gradual stepwise enrichment of atmospheric CO2 concentration [期刊论文] Global Change Biology, 2016-01-01, 22 (1 Drake J.E.; Macdonald C.A.; Tjoelker M.G.; Crous K.Y.; Gimeno T.E.; Singh B.K.; Reich P.B.; Anderson I.C.; Ellsworth D.S.
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| Canopy leaf area of a mature evergreen Eucalyptus woodland does not respond to elevated atmospheric [CO2] but tracks water availability [期刊论文] Global Change Biology, 2016-01-01, 22 (4 Duursma R.A.; Gimeno T.E.; Boer M.M.; Crous K.Y.; Tjoelker M.G.; Ellsworth D.S.
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| Using models to guide field experiments: a priori predictions for the CO2 response of a nutrient- and water-limited native Eucalypt woodland [期刊论文] Global change biology, 2016-01-01, 22 (8 Medlyn B.E.; De Kauwe M.G.; Zaehle S.; Walker A.P.; Duursma R.A.; Luus K.; Mishurov M.; Pak B.; Smith B.; Wang Y.-P.; Yang X.; Crous K.Y.; Drake J.E.; Gimeno T.E.; Macdonald C.A.; Norby R.J.; Power S.A.; Tjoelker M.G.; Ellsworth D.S.
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| Climate determines vascular traits in the ecologically diverse genus Eucalyptus [期刊论文] Ecology Letters, 2016-01-01, 19 (3 Pfautsch S.; Harbusch M.; Wesolowski A.; Smith R.; Macfarlane C.; Tjoelker M.G.; Reich P.B.; Adams M.A.
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