Temperature and Plant Adaptation. I. Interaction of Temperature and Light in the Synthesis of Chlorophyll in Corn
Open Access
- 1 December 1967
- journal article
- research article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 42 (12), 1711-1715
- https://doi.org/10.1104/pp.42.12.1711
Abstract
The effect of temperature and light intensity have been studied in relation to the greening of etiolated corn (Zea mays cv. Pioneer 309-B) seedlings. Chlorophyll accumulation is rapid at high temperature (28°) under all conditions of light intensity. At low temperature (16°), and particularly in combination with high light intensity (3000-4500 ft-c), the accumulation of both chlorophyll and carotene is inhibited. Low pigment content at 16° is not directly due to a block in the pigment synthesizing mechanism, but rather to the photodestruction of chlorophyll prior to its stabilization in the membrane structure of the chloroplast lamellae. The parallel reduction in carotene content at high light intensity is probably a contributing factor, because of its role in protecting chlorophyll from photodestruction. The greater severity of photo-oxidation of chlorophyll at low temperature in corn when compared with wheat, appears to be due to a slower rate of protochlorophyllide synthesis and subsequent esterification. Thus in corn at 16° there is a prolongation of the photosensitive stage during chlorophyll synthesis. Photo-oxidation at 16° has also been shown to be a function of the incident light energy, with the photosynthetic pigments acting as receptors for their own destruction. In comparison with the behavior of corn, wheat seedlings green rapidly at high light intensity at both 16° and 28°. This contrasting temperature response with respect to chlorophyll synthesis may underlie a fundamental difference in adaptation of these 2 species to growth in the temperate zones of the world.This publication has 16 references indexed in Scilit:
- The relation between structure and pigments during the first stages of proplastid greeningBiochimica et Biophysica Acta (BBA) - Biophysics including Photosynthesis, 1966
- Temperature-Induced Chemical Defects in Higher PlantsPlant Physiology, 1963
- THE EFFECT OF LIGHT INTENSITY AND SUCROSE FEEDING ON THE FINE STRUCTURE IN CHLOROPLASTS AND ON THE CHLOROPHYLL CONTENT OF ETIOLATED LEAVESThe Journal of cell biology, 1962
- Effect of changes in chlorophyll concentration on photosynthetic properties I. Fluorescence and absorption of greening bean leavesBiochimica et Biophysica Acta, 1961
- THE EFFECT OF LOW TEMPERATURE ON THE DEVELOPMENT OF THE LAMELLAR SYSTEM IN CHLOROPLASTSThe Journal of cell biology, 1960
- Role of Carotenoids in Protecting Chlorophyll From PhotodestructionPlant Physiology, 1960
- Terminal steps of chlorophyll a biosynthesis in higher plantsArchives of Biochemistry and Biophysics, 1957
- Function of Carotenoids in PhotosynthesisNature, 1955
- COPPER ENZYMES IN ISOLATED CHLOROPLASTS. POLYPHENOLOXIDASE IN BETA VULGARISPlant Physiology, 1949
- PROTOCHLOROPHYLL, PRECURSOR OF CHLOROPHYLL1948