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Short episodes of water stress increase barley root resistance to radial shrinkage in a dehydrating environment
Author(s) -
Lemcoff Jorge Hugo,
Ling Fan,
Neumann Peter M.
Publication year - 2006
Publication title -
physiologia plantarum
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.351
H-Index - 146
eISSN - 1399-3054
pISSN - 0031-9317
DOI - 10.1111/j.1399-3054.2006.00688.x
Subject(s) - turgor pressure , hordeum vulgare , peg ratio , hardening (computing) , osmotic pressure , chemistry , horticulture , shoot , water content , dehydration , nutrient , botany , agronomy , materials science , biology , poaceae , biochemistry , geotechnical engineering , organic chemistry , finance , layer (electronics) , engineering , economics
Although plant shoots can be ‘hardened’ by abiotic stresses, little is known about such changes in roots. In order to investigate possible induction of root‐hardening in response to short water‐stress episodes, barley seedlings ( Hordeum vulgare L) hydroponically grown under a controlled environment were moderately water‐stressed by addition of a non‐penetrating osmoticum, polyethylene glycol (PEG) 6000 at −0.4 MPa water potential, to the aerated nutrient solution. Seedlings were then hydrated in dilute nutrient solution without PEG before excision and assay of the seminal roots. Previous water stress treatments for 72 h, 12 h, or even 6 h induced an apparent root‐hardening process. Thus, root radial shrinkage during subsequent exposure to strongly dehydrating conditions was remarkably decreased. The root hardening was related to biophysical adjustments: turgor‐pressure increased while osmotic potential decreased from −0.45 ± 0.02 MPa to −0.60 ± 0.02 MPa. Moreover, the maximum bulk volumetric modulus of elasticity, ? max determined by pressure–volume analysis, increased from 2.1 ± 0.4 MPa to 3.7 ± 0.4 MPa, i.e. root elasticity was decreased. Root hardening in response to episodes of water stress may have ecological significance for barley plants in regions where intermittent drought episodes are frequent.