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Article|22 Jan 2014|OPEN
A rapid dehydration leaf assay reveals stomatal response differences in grapevine genotypes
Daniel W Hopper1 , Ryan Ghan1 and Grant R Cramer,1 ,
1Department of Biochemistry and Molecular Biology, University of Nevada, Reno, NV 89557, USA
*Corresponding author. E-mail: cramer@unr.edu

Horticulture Research 1,
Article number: 2 (2014)
doi: https://doi.org/10.1038/hortres.2014.2
Views: 1023

Received: 29 Oct 2013
Accepted: 24 Nov 2013
Published online: 22 Jan 2014

Abstract

A simple and reliable way of phenotyping plant responses to dehydration was developed. Fully-developed leaves were detached and placed in a closed plastic box containing a salt solution to control the atmospheric water potential in the container. Three hours of dehydration (weight loss of the leaf) was optimal for measuring changes in stomatal response to dehydration. Application of the plant hormone abscisic acid (ABA) prior to leaf detachment decreased the amount of water loss, indicating that the assay was able to detect differences based on a stomatal response to dehydration. Five different Vitis genotypes (V. riparia, V. champinii, V. vinifera cv. Shiraz, V. vinifera cv. Grenache and V. vinifera cv. Cabernet Sauvignon) with known differences in drought tolerance were screened for their dehydration response and the results obtained corresponded to previous reports of stomatal responses in the vineyard. Significant differences in stomatal density along with differences in the amount and rate of water lost indicate differences in dehydration sensitivity among the genotypes screened. Differences in stomatal response to ABA were also detected. Shiraz had the lowest stomatal density and the highest ABA sensitivity among the genotypes screened, yet Shiraz lost the most amount of water, indicating that it was the least sensitive to dehydration. Despite having the highest stomatal density and intermediate stomatal sensitivity to ABA, V. riparia lost the smallest amount of water, indicating that it was the most sensitive to dehydration. The assay presented here represents a simple and reliable phenotyping method for plant responses to leaf dehydration.