Back to Search Start Over

Identifying physiological and genetic determinants of faba bean transpiration response to evaporative demand.

Authors :
Mandour, Hend
Khazaei, Hamid
Stoddard, Frederick L
Dodd, Ian C
Source :
Annals of Botany. 2/16/2023, Vol. 131 Issue 3, p533-544. 12p.
Publication Year :
2023

Abstract

Background and Aims Limiting maximum transpiration rate (TR) under high vapour pressure deficit (VPD) works as a water conservation strategy. While some breeding programmes have incorporated this trait into some crops to boost yields in water-limited environments, its underlying physiological mechanisms and genetic regulation remain unknown for faba bean (Vicia faba). Thus, we aimed to identify genetic variation in the TR response to VPD in a population of faba bean recombinant inbred lines (RILs) derived from two parental lines with contrasting water use (Mélodie/2 and ILB 938/2). Methods Plants were grown in well-watered soil in a climate-controlled glasshouse with diurnally fluctuating VPD and light conditions. Whole plant transpiration was measured in a gas exchange chamber that tightly regulated VPD around the shoot under constant light, while whole-plant hydraulic conductance and its components (root and stem hydraulic conductance) were calculated from dividing TR by water potential gradients measured with a pressure chamber. Key Results Although TR of Mélodie/2 increased linearly with VPD, ILB 938/2 limited its TR above 2.0 kPa. Nevertheless, Mélodie/2 had a higher leaf water potential than ILB 938/2 at both low (1.0 kPa) and high (3.2 kPa) VPD. Almost 90 % of the RILs limited their TR at high VPD with a break-point (BP) range of 1.5–3.0 kPa and about 10 % had a linear TR response to VPD. Thirteen genomic regions contributing to minimum and maximum transpiration, and whole-plant and root hydraulic conductance, were identified on chromosomes 1 and 3, while one locus associated with BP transpiration was identified on chromosome 5. Conclusions This study provides insight into the physiological and genetic control of transpiration in faba bean and opportunities for marker-assisted selection to improve its performance in water-limited environments. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03057364
Volume :
131
Issue :
3
Database :
Academic Search Index
Journal :
Annals of Botany
Publication Type :
Academic Journal
Accession number :
162901632
Full Text :
https://doi.org/10.1093/aob/mcad006