List of bibliographic references indexed by Carbon Isotopes (MeSH)
Number of relevant bibliographic references: 37.
[20-40] [
0 - 20][
0 - 37]
Ident. | Authors (with country if any) | Title |
---|
003123 (2010) |
Lianghua Chen [République populaire de Chine] ; Sheng Zhang ; Hongxia Zhao ; Helena Korpelainen ; Chunyang Li | Sex-related adaptive responses to interaction of drought and salinity in Populus yunnanensis. |
003549 (2009) |
Nicolas Brüggemann [Allemagne] ; Rudolf Meier ; Dominik Steigner ; Ina Zimmer ; Sandrine Louis ; Jörg-Peter Schnitzler | Nonmicrobial aerobic methane emission from poplar shoot cultures under low-light conditions. |
003814 (2008) |
Xiao Xu [République populaire de Chine] ; Fan Yang ; Xiangwen Xiao ; Sheng Zhang ; Helena Korpelainen ; Chunyang Li | Sex-specific responses of Populus cathayana to drought and elevated temperatures. |
003818 (2008) |
Matthew G. Letts [Canada] ; Colleen A. Phelan ; Davin R E. Johnson ; Stewart B. Rood | Seasonal photosynthetic gas exchange and leaf reflectance characteristics of male and female cottonwoods in a riparian woodland. |
003890 (2008) |
Diane Wagner [États-Unis] ; Linda Defoliart ; Patricia Doak ; Jenny Schneiderheinze | Impact of epidermal leaf mining by the aspen leaf miner (Phyllocnistis populiella) on the growth, physiology, and leaf longevity of quaking aspen. |
003911 (2008) |
Sophie Y. Dillen [Belgique] ; Nicolas Marron ; Barbra Koch ; Reinhart Ceulemans | Genetic variation of stomatal traits and carbon isotope discrimination in two hybrid poplar families (Populus deltoides 'S9-2' x P. nigra 'Ghoy' and P. deltoides 'S9-2' x P. trichocarpa 'V24'). |
003941 (2008) |
Xiao Xu [République populaire de Chine] ; Guoquan Peng ; Chengchun Wu ; Helena Korpelainen ; Chunyang Li | Drought inhibits photosynthetic capacity more in females than in males of Populus cathayana. |
003985 (2008) |
Pieter Van Dillewijn [Espagne] ; José L. Couselo ; Elena Corredoira ; Antonio Delgado ; Rolf-Michael Wittich ; Antonio Ballester ; Juan L. Ramos | Bioremediation of 2,4,6-trinitrotoluene by bacterial nitroreductase expressing transgenic aspen. |
004062 (2005) |
Nicolas Marron [France] ; Marc Villar ; Erwin Dreyer ; Didier Delay ; Eric Boudouresque ; Jean-Michel Petit ; Francis M. Delmotte ; Jean-Marc Guehl ; Franck Brignolas | Diversity of leaf traits related to productivity in 31 Populus deltoides x Populus nigra clones. |
004124 (2005) |
Yingang Feng ; Nicolas Rouhier ; Jean-Pierre Jacquot ; Bin Xia | 1H, 15N, and 13C resonance assignments of reduced glutaredoxin C1 from Populus tremula x tremuloides. |
004297 (2004) |
Jörg-Peter Schnitzler [Allemagne] ; Martin Graus ; Jürgen Kreuzwieser ; Ulrike Heizmann ; Heinz Rennenberg ; Armin Wisthaler ; Armin Hansel | Contribution of different carbon sources to isoprene biosynthesis in poplar leaves. |
004334 (2004) |
Valérie Noguera ; Nicolas Rouhier ; Isabelle Krimm ; Jean-Pierre Jacquot ; Jean-Marc Lancelin | 1H, 13C and 15N resonance assignments of poplar phloem glutaredoxin. |
004335 (2004) |
Nicolas Coudevylle ; Aurélien Thureau ; Christine Hemmerlin ; Eric Gelhaye ; Jean-Pierre Jacquot ; Manh-Thong Cung | 1H, 13C and 15N resonance assignment of the reduced form of thioredoxin h1 from Poplar, a CPPC active site variant. |
004337 (2004) |
Sandrine Bouillac ; Nicolas Rouhier ; Pascale Tsan ; Jean-Pierre Jacquot ; Jean-Marc Lancelin | (1)H, (13)C and (15)N NMR assignment of the homodimeric poplar phloem type II peroxiredoxin. |
004548 (2002) |
T. Karl [États-Unis] ; R. Fall ; T N Rosenstiel ; P. Prazeller ; B. Larsen ; G. Seufert ; W. Lindinger | On-line analysis of the (13)CO(2) labeling of leaf isoprene suggests multiple subcellular origins of isoprene precursors. |
004669 (2001) |
A J Leffler [États-Unis] ; A S Evans | Physiological variation among Populus fremontii populations: short- and long-term relationships between delta13C and water availability. |
004991 (1997) |
J. Schwender [Allemagne] ; J. Zeidler ; R. Gröner ; C. Müller ; M. Focke ; S. Braun ; F W Lichtenthaler ; H K Lichtenthaler | Incorporation of 1-deoxy-D-xylulose into isoprene and phytol by higher plants and algae. |
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