An evaluation of the Münch hypothesis for phloem transport in soybean
- 1 January 1978
- journal article
- research article
- Published by Springer Nature in Planta
- Vol. 139 (1) , 25-28
- https://doi.org/10.1007/bf00390805
Abstract
An evaluation was made of the extent which a Münch-type pressure flow mechanism (i.e., osmotically-generated pressure flow) might contribute to phloem transport in soybean. Estimates of sucrose concentrations in source (leaf) and sink (root) sieve tubes were obtained by a negativestaining procedure. Water potential measurements of the leaf and of the nutrient solution allowed calculation of the turgor pressures in source and sink sieve tubes. The turgor difference between source and sink sieve tubes was compared to that required to drive translocation at the observed velocity between the source and sink, as measured by [14C] photosynthate movement. Sieve-tube conductivity was calculated from the sieve-tube dimensions, assuming an essentially unobstructed pathway. In three experiments, the sucrose concentration was consistently higher in source sieve tubes (an average of 11.5%) than in sink sieve tubes (an average of 5.3%). The ratio of these values (2.3:1) agreed reasonably well with an earlier ratio for source/sink sieve tube concentrations of 1.8:1, obtained by quantitative microautoradiography. The resulting calculated turgor difference (an average of 4.1 bars) was adequate to drive a pressure flow mechanism at the observed translocation velocities (calculated to require a turgor difference of 1.2 to 4.6 bars). No other force need be presumed to be involved.This publication has 10 references indexed in Scilit:
- The estimation of sugar concentration in individual sieve-tube elements by negative stainingPlanta, 1978
- A Miniature Stem Thermocouple HygrometerPlant Physiology, 1977
- Estimation of Osmotic Gradients in Soybean Sieve Tubes by Quantitative AutoradiographyPlant Physiology, 1977
- Histochemical Approaches to Water-Soluble Compounds and their Application to Problems in TranslocationPublished by Elsevier ,1976
- Structure of Functional Soybean Sieve ElementsPlant Physiology, 1975
- Exchange of Solutes between Phloem and Xylem and Circulation in the Whole PlantPublished by Springer Nature ,1975
- The Retention of Water-soluble Compounds during Freeze-Substitution and MicroautoradiographyPlant Physiology, 1972
- Resistances to Water Transport in Soybean, Bean, and Sunflower1Crop Science, 1971
- Regulation of hibernating periods by temperature.Proceedings of the National Academy of Sciences, 1965
- Some properties of phloem exudate collected from root of sugar beetPlant Physiology, 1962