Isoprene Increases Thermotolerance of Fosmidomycin-Fed Leaves
Open Access
- 1 April 2001
- journal article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 125 (4) , 2001-2006
- https://doi.org/10.1104/pp.125.4.2001
Abstract
Isoprene is synthesized and emitted in large amounts by a number of plant species, especially oak (Quercus sp.) and aspen (Populus sp.) trees. It has been suggested that isoprene improves thermotolerance by helping photosynthesis cope with high temperature. However, the evidence for the thermotolerance hypothesis is indirect and one of three methods used to support this hypothesis has recently been called into question. More direct evidence required new methods of controlling endogenous isoprene. An inhibitor of the deoxyxylulose 5-phosphate pathway, the alternative pathway to the mevalonic acid pathway and the pathway by which isoprene is made, is now available. Fosmidomycin eliminates isoprene emission without affecting photosynthesis for several hours after feeding to detached leaves. Photosynthesis of fosmidomycin-fed leaves recovered less following a 2-min high-temperature treatment at 46°C than did photosynthesis of leaves fed water or fosmidomycin-fed leaves in air supplemented with isoprene. Photosynthesis of Phaseolus vulgaris leaves, which do not make isoprene, exhibited increased thermotolerance when isoprene was supplied in the airstream flowing over the leaf. Other short-chain alkenes also improved thermotolerance, whereas alkanes reduced thermotolerance. It is concluded that thermotolerance of photosynthesis is a substantial benefit to plants that make isoprene and that this benefit explains why plants make isoprene. The effect may be a general hydrocarbon effect and related to the double bonds in the isoprene molecule.Keywords
This publication has 38 references indexed in Scilit:
- Analysis of O3 formation during a stagnation episode in central Tennessee in summer 1995Journal of Geophysical Research: Atmospheres, 2000
- Terpenes and the thermotolerance of photosynthesisNew Phytologist, 2000
- Fumigation with exogenous monoterpenes of a non‐isoprenoid‐emitting oak (Quercus suber): monoterpene acquisition, translocation, and effect on the photosynthetic properties at high temperaturesNew Phytologist, 2000
- Modelling terrestrial biogenic isoprene fluxes and their potential impact on global chemical species using a coupled LSM–CTM modelAtmospheric Environment, 2000
- The regulation of isoprene emission responses to rapid leaf temperature fluctuationsPlant, Cell & Environment, 1998
- On the monoterpene emission under heat stress and on the increased thermotolerance of leaves of Quercus ilex L. fumigated with selected monoterpenesPlant, Cell & Environment, 1998
- A global model of natural volatile organic compound emissionsJournal of Geophysical Research: Atmospheres, 1995
- Heat inactivation of oxygen evolution in Photosystem II particles and its acceleration by chloride depletion and exogenous manganeseBiochimica et Biophysica Acta (BBA) - Bioenergetics, 1985
- Structural reorganisation of chloroplast thylakoid membranes in response to heat-stressBiochimica et Biophysica Acta (BBA) - Bioenergetics, 1984
- What Do the Hydrocarbons from Trees Contribute to Air Pollution?Journal of the Air Pollution Control Association, 1972