Water Relations of Pine Seedlings in Relation to Root and Shoot Growth
Open Access
- 1 February 1968
- journal article
- research article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 43 (2) , 281-288
- https://doi.org/10.1104/pp.43.2.281
Abstract
The effects of water stress on growth and water relations of loblolly and white pine seedlings were studied during series of drying cycles. As mean soil water potential decreased, growth of roots, needles, and buds decreased. Growth of roots during successive severe drying cycles was not uniform, however. A study of needle and root extension showed that of the total growth of roots for 3 7-day drying cycles, only 6% occurred during the third cycle, while needle extension was uniform for the 3 cycles. The difference in response of needles and roots to drying cycles may be attributed primarily to the effect of water stress on the growing region. When subjected to a severe stress, roots matured toward the tip and became dormant, resulting in less growth during subsequent drying cycles. The intercalary growing region of needles, however, was not altered seriously enough by the stress to cause a difference in amount of growth during each drying cycle.This publication has 9 references indexed in Scilit:
- Photosynthesis, Transpiration, Leaf Temperature, and Stomatal Activity of Cotton Plants under Varying Water PotentialsPlant Physiology, 1967
- Transpiration and Energy ExchangeThe Quarterly Review of Biology, 1966
- Effects of Simulated Drought by Polyethylene Glycol Solutions on Corn (Zea mays L.) Germination and Seedling Development1Agronomy Journal, 1966
- RELATIONSHIP BETWEEN ROOT GROWTH OF FLAX (LINUM USITATISSIMUM) AND SOIL WATER POTENTIALNew Phytologist, 1966
- Transpiration Resistance and Energy Budget of Populus Sargentii LeavesNature, 1966
- Changes in Radiosensitivity of Pine Seedlings Subjected to Water Stress During Chronic Gamma IrradiationHealth Physics, 1965
- Modification and Use of an Electric Hygrometer for Estimating Relative Stomatal AperturesPlant Physiology, 1964
- Thermocouple for Vapor Pressure Measurement in Biological and Soil Systems at High HumidityScience, 1958
- Effects of Wilting on the Subsequent Intake of Water by PlantsAmerican Journal of Botany, 1950