Drought reduces leaf stomatal conductance (gs) and mesophyll conductance (gm). Both hydraulic signals and chemical signals (mainly abscisic acid, ABA) are involved in regulating gs. However, it remains unclear what role the endogenous ABA plays in gm under decreasing soil moisture. In this study, the responses of gs and gm to ABA were investigated under progressive soil drying conditions and their impacts on net photosynthesis (An) and intrinsic water use efficiency (WUEi) were also analyzed. Experimental tomato plants were cultivated in pots in an environment-controlled greenhouse. Reductions of gs and gm induced a 68–78% decline of An under drought conditions. While soil water potential (Ψsoil) was over −1.01 MPa, gs reduced as leaf water...
Although regulation of stomatal conductance is widely assumed to be the most important plant respons...
• Background and Aims Stomatal closure allows plants to promptly respond to water shortage. Although...
Between 60 and 90% of terrestrial precipitations go back to the atmosphere through plant transpirati...
Drought reduces leaf stomatal conductance (gs) and mesophyll conductance (gm). Both hydraulic signal...
Drought reduces leaf stomatal conductance (gs) and mesophyll conductance (gm). Both hydraulic signal...
The fundamental question as to what triggers stomatal closure during soil drying remains contentious...
The fundamental question as to what triggers stomatal closure during soil drying remains contentious...
The fundamental question as to what triggers stomatal closure during soil drying remains contentious...
The objectives of this study were to investigate stomatal regulation in maize seedlings during progr...
Tomato (Lycopersicon esculentum Mill. cv. Ailsa Craig) plants were grown with roots split between tw...
Plant physiological responses to various stresses are characterized by interaction and coupling, whi...
Tomato species and cultivars, Lycopersicon esculentum L. cv. Ailsa Craig and Solairo, differing in d...
Partial rootzone drying (PRD) is an irrigation technique where water is distributed unevenly to the ...
The effects of different irrigation techniques on leaf xylem ABA concentration ([X-ABA]leaf) were co...
Four to 10 h of soil flooding delayed and suppressed the normal daily increase in root hydraulic con...
Although regulation of stomatal conductance is widely assumed to be the most important plant respons...
• Background and Aims Stomatal closure allows plants to promptly respond to water shortage. Although...
Between 60 and 90% of terrestrial precipitations go back to the atmosphere through plant transpirati...
Drought reduces leaf stomatal conductance (gs) and mesophyll conductance (gm). Both hydraulic signal...
Drought reduces leaf stomatal conductance (gs) and mesophyll conductance (gm). Both hydraulic signal...
The fundamental question as to what triggers stomatal closure during soil drying remains contentious...
The fundamental question as to what triggers stomatal closure during soil drying remains contentious...
The fundamental question as to what triggers stomatal closure during soil drying remains contentious...
The objectives of this study were to investigate stomatal regulation in maize seedlings during progr...
Tomato (Lycopersicon esculentum Mill. cv. Ailsa Craig) plants were grown with roots split between tw...
Plant physiological responses to various stresses are characterized by interaction and coupling, whi...
Tomato species and cultivars, Lycopersicon esculentum L. cv. Ailsa Craig and Solairo, differing in d...
Partial rootzone drying (PRD) is an irrigation technique where water is distributed unevenly to the ...
The effects of different irrigation techniques on leaf xylem ABA concentration ([X-ABA]leaf) were co...
Four to 10 h of soil flooding delayed and suppressed the normal daily increase in root hydraulic con...
Although regulation of stomatal conductance is widely assumed to be the most important plant respons...
• Background and Aims Stomatal closure allows plants to promptly respond to water shortage. Although...
Between 60 and 90% of terrestrial precipitations go back to the atmosphere through plant transpirati...