Literature DB >> 12651413

Clonal and seasonal differences in leaf osmotic potential and organic solutes of five hybrid poplar clones grown under field conditions.

G. Michael Gebre1, Timothy J. Tschaplinski, Gerald A. Tuskan, Donald E. Todd.   

Abstract

Leaf osmotic potential at full turgor (Psi(pio)) and the major solutes that contribute to osmotic potential were characterized in five hybrid poplar clones of Populus trichocarpa Torr. & Gray x P. deltoides Bartr. (TD) and P. deltoides x P. nigra L. (DN), growing under field conditions at two sites in eastern Washington and Oregon, USA. Trees were drip irrigated with 46, 76 or 137 cm of supplemental irrigation during each growing season. Trees at Wallula, WA, which were in their third growing season in 1994, were sampled twice a year for two years (1994 and 1995), and trees at Boardman, OR, which were in their second growing season in 1994, were sampled once a year for three years (1994-1996). At Wallula, the TD and DN clones exhibited lower predawn leaf water potentials in the 46-cm treatment than in the 137-cm treatment (-1.2 versus -0.7 MPa) during a hot, dry period in July 1994. Clone TD had a lower Psi(pio) than Clone DN (-1.67 versus -1.56 MPa) during the same period and the difference was also evident in 1995 (-1.81 versus -1.72 MPa) when trees were in their fourth growing season. There was also a significant treatment effect on Psi(pio) in Clone TD, with trees in the 46-cm treatment having lower Psi(pio) than trees in the 137-cm treatment in July 1994. At Boardman, Psi(pio) was generally high with no treatment differences during the 1994-96 samplings. The TD clones had significantly lower Psi(pio) than the DN clones in 1994 (-1.44 versus -1.36 MPa) and 1996 (-1.72 versus -1.54 MPa), but there was no difference between clones in 1995 (-1.40 versus -1.43 MPa). In 1995, at Wallula, osmotic adjustment in Clone TD was largely accounted for by an increase in sucrose, which constituted 70% of total organic solutes. Although the total concentration of free primary amino acids in this clone was 28% higher in trees in the 46-cm treatment than in trees in the 137-cm treatment, amino acids constituted only a small fraction of the total solute pool. Sixty-two percent of total solutes were inorganic ions in Clone TD compared to 52% in Clone DN, and potassium was the main ion constituting about 30% of total solutes and 50% of total ions. However, the clonal difference in Psi(pio) was not fully accounted for by the difference in solute concentration. Osmotic potential at full turgor declined over the growing season and with age. We conclude that, because the extent of osmotic adjustment exhibited by these clones was small, other drought resistance mechanisms contributed to the clonal differences in field performance.

Entities:  

Year:  1998        PMID: 12651413     DOI: 10.1093/treephys/18.10.645

Source DB:  PubMed          Journal:  Tree Physiol        ISSN: 0829-318X            Impact factor:   4.196


  5 in total

1.  Gradual soil water depletion results in reversible changes of gene expression, protein profiles, ecophysiology, and growth performance in Populus euphratica, a poplar growing in arid regions.

Authors:  Marie-Béatrice Bogeat-Triboulot; Mikael Brosché; Jenny Renaut; Laurent Jouve; Didier Le Thiec; Payam Fayyaz; Basia Vinocur; Erwin Witters; Kris Laukens; Thomas Teichmann; Arie Altman; Jean-François Hausman; Andrea Polle; Jaakko Kangasjärvi; Erwin Dreyer
Journal:  Plant Physiol       Date:  2006-12-08       Impact factor: 8.340

2.  The nature of the progression of drought stress drives differential metabolomic responses in Populus deltoides.

Authors:  Timothy James Tschaplinski; Paul E Abraham; Sara S Jawdy; Lee E Gunter; Madhavi Z Martin; Nancy L Engle; Xiaohan Yang; Gerald A Tuskan
Journal:  Ann Bot       Date:  2019-10-29       Impact factor: 4.357

3.  Splitting the Difference: Heterogeneous Soil Moisture Availability Affects Aboveground and Belowground Reserve and Mass Allocation in Trembling Aspen.

Authors:  Ashley T Hart; Morgane Merlin; Erin Wiley; Simon M Landhäusser
Journal:  Front Plant Sci       Date:  2021-05-14       Impact factor: 5.753

4.  Quantitative proteome profile of water deficit stress responses in eastern cottonwood (Populus deltoides) leaves.

Authors:  Paul E Abraham; Benjamin J Garcia; Lee E Gunter; Sara S Jawdy; Nancy Engle; Xiaohan Yang; Daniel A Jacobson; Robert L Hettich; Gerald A Tuskan; Timothy J Tschaplinski
Journal:  PLoS One       Date:  2018-02-15       Impact factor: 3.240

Review 5.  Plant Secondary Metabolites with an Overview of Populus.

Authors:  Ali Movahedi; Amir Almasi Zadeh Yaghuti; Hui Wei; Paul Rutland; Weibo Sun; Mohaddeseh Mousavi; Dawei Li; Qiang Zhuge
Journal:  Int J Mol Sci       Date:  2021-06-26       Impact factor: 5.923

  5 in total

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