Sign up & Download
Sign in

Plant–water relationships and growth strategies of Jatropha curcas L. seedlings under different levels of drought stress

by W H Maes, W M J Achten, B Reubens, D Raes, R Samson, B Muys
Journal of Arid Environments (2009)

Abstract

Although Jatropha curcas, an important tropical biofuel crop, is reputed for its drought resistance, its ability to perform under dry conditions has hardly been investigated. In a greenhouse experiment we investigated the plant-water relationships of Jotropha seedlings from different accessions under different levels of drought stress. There was little difference in plant-water relations between accessions. Drought significantly reduced leaf area, biomass and relative growth rate, but had no effect on specific leaf area, daily range in leaf water potential, leaf water content, transpiration efficiency or aboveground biomass water productivity, corrected for atmospheric conditions. Stem wood density was equally low (0.26 g cm(-3)) for all treatments. Stem water content was lowest for dry treatment seedlings. Based on these results, Jatropha could be characterized as a stem-succulent tree. In contrast to other stem-succulent deciduous trees, leaves were not shed immediately after the seedlings were confronted with drought. Instead, at the onset of drought, leaves with a higher adaxial stomatal density were formed, after which leaves were only gradually shed. The role of the succulent stem in the water economy of Jatropha was confined to balancing the small water losses of the leaves during drought. (C) 2009 Elsevier Ltd. All rights reserved.

Cite this document (BETA)

Sign up today - FREE

Mendeley saves you time finding and organizing research. Learn more

  • All your research in one place
  • Add and import papers easily
  • Access it anywhere, anytime

Start using Mendeley in seconds!

Already have an account? Sign in

Readership Statistics

21 Readers on Mendeley
by Discipline
 
 
 
by Academic Status
 
48% Ph.D. Student
 
10% Post Doc
 
10% Student (Bachelor)
by Country
 
29% Belgium
 
24% Brazil
 
10% United States