Stomatal response characteristics as affected by long-term elevated humidity levels

Restriction of leaf water loss, by stomatal closure, is decisive for plant survival, especially under conditions of water deficit. This sensitivity of stomata to low water potential is attenuated by high relative air humidity (RH ≥ 85%) during growth, which impedes the plant’s ability to survive when subsequently exposed to lower humidities due to a negative water balance. This thesis focuses on the extent of the existing variation and the reasons underlying cultivar differences in their tolerance to high RH, as well as the rate and reversibility of stomatal adaptation to elevated RH in the course of leaf ontogeny. Cut rose was used as a model plant. An experiment on the postharvest water relations of three contrasting cultivars in their sensitivity to high RH showed that the sensitive cultivar (i.e. steepest decrease in the cut flower longevity) underwent a higher increase in the water loss compared to the tolerant cultivars. Preventing vascular occlusion considerably extended the time to wilting in the sensitive cultivar grown at high RH, showing that the high rate of water loss, as a result of plant growth at high RH, can only be detrimental for keeping quality under limiting water uptake conditions. Further investigation showed a large genotypic variation in the regulation of water loss, as a result of leaf development at high RH, and stomatal closing capacity was the key element in this process. The degree to which the stomatal anatomical features were affected and the extent that their functionality was impaired were not correlated. However, higher stomatal density, longer pore length and depth contributed to the higher water loss of high RH-grown leaves (16–30% of the effect depending on the cultivar). Reciprocal change in RH showed that stomatal functioning was no longer affected by the RH level after full leaf expansion. However, expanding leaves were always able to partly adapt to the new RH level. For leaves that started expanding at high RH but completed their expansion after transfer to moderate RH, the earlier this switch took place the better the regulation of leaf water loss. This behaviour of expanding leaves experiencing a shift from high to moderate RH was related with the increasing population of stomata exceeding a critical stomatal length. Contrary to this, leaves initially expanding at moderate RH and transferred to high RH exhibited poor stomatal functioning, even when this transfer occurred very late during leaf expansion. This suggests that stomata at various developmental stages were similarly prone to loss of closing ability, when these had been exposed to high RH prior to full leaf expansion. Key words: abscisic acid, cuticular permeability, heterogeneity, hydraulic conductivity, pore aperture, relative air humidity, Rosa hybrida, stomatal anatomy, stomatal conductance, stomatal growth, stomatal initiation, stomatal malfunctioning, stomatal population, stomatal proximity, vase life.

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Bibliographic Details
Main Author: Fanourakis, D.
Other Authors: van Kooten, Olaf
Format: Doctoral thesis biblioteca
Language:English
Subjects:abscisic acid, horticulture, humidity, plant anatomy, plant cuticle, plant physiology, rosa, stomata, vase life, abscisinezuur, cuticula bij planten, huidmondjes, plantenanatomie, plantenfysiologie, tuinbouw, vaasleven, vochtigheid,
Online Access:https://research.wur.nl/en/publications/stomatal-response-characteristics-as-affected-by-long-term-elevat
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spelling dig-wur-nl-wurpubs-4110982024-12-03 Fanourakis, D. van Kooten, Olaf Heuvelink, Ep Pinto de Carvalho, Susana Doctoral thesis Stomatal response characteristics as affected by long-term elevated humidity levels 2011 Restriction of leaf water loss, by stomatal closure, is decisive for plant survival, especially under conditions of water deficit. This sensitivity of stomata to low water potential is attenuated by high relative air humidity (RH ≥ 85%) during growth, which impedes the plant’s ability to survive when subsequently exposed to lower humidities due to a negative water balance. This thesis focuses on the extent of the existing variation and the reasons underlying cultivar differences in their tolerance to high RH, as well as the rate and reversibility of stomatal adaptation to elevated RH in the course of leaf ontogeny. Cut rose was used as a model plant. An experiment on the postharvest water relations of three contrasting cultivars in their sensitivity to high RH showed that the sensitive cultivar (i.e. steepest decrease in the cut flower longevity) underwent a higher increase in the water loss compared to the tolerant cultivars. Preventing vascular occlusion considerably extended the time to wilting in the sensitive cultivar grown at high RH, showing that the high rate of water loss, as a result of plant growth at high RH, can only be detrimental for keeping quality under limiting water uptake conditions. Further investigation showed a large genotypic variation in the regulation of water loss, as a result of leaf development at high RH, and stomatal closing capacity was the key element in this process. The degree to which the stomatal anatomical features were affected and the extent that their functionality was impaired were not correlated. However, higher stomatal density, longer pore length and depth contributed to the higher water loss of high RH-grown leaves (16–30% of the effect depending on the cultivar). Reciprocal change in RH showed that stomatal functioning was no longer affected by the RH level after full leaf expansion. However, expanding leaves were always able to partly adapt to the new RH level. For leaves that started expanding at high RH but completed their expansion after transfer to moderate RH, the earlier this switch took place the better the regulation of leaf water loss. This behaviour of expanding leaves experiencing a shift from high to moderate RH was related with the increasing population of stomata exceeding a critical stomatal length. Contrary to this, leaves initially expanding at moderate RH and transferred to high RH exhibited poor stomatal functioning, even when this transfer occurred very late during leaf expansion. This suggests that stomata at various developmental stages were similarly prone to loss of closing ability, when these had been exposed to high RH prior to full leaf expansion. Key words: abscisic acid, cuticular permeability, heterogeneity, hydraulic conductivity, pore aperture, relative air humidity, Rosa hybrida, stomatal anatomy, stomatal conductance, stomatal growth, stomatal initiation, stomatal malfunctioning, stomatal population, stomatal proximity, vase life. en application/pdf https://research.wur.nl/en/publications/stomatal-response-characteristics-as-affected-by-long-term-elevat 10.18174/177938 https://edepot.wur.nl/177938 abscisic acid horticulture humidity plant anatomy plant cuticle plant physiology rosa stomata vase life abscisinezuur cuticula bij planten huidmondjes plantenanatomie plantenfysiologie rosa tuinbouw vaasleven vochtigheid Wageningen University & Research
institution WUR NL
collection DSpace
country Países bajos
countrycode NL
component Bibliográfico
access En linea
databasecode dig-wur-nl
tag biblioteca
region Europa del Oeste
libraryname WUR Library Netherlands
language English
topic abscisic acid
horticulture
humidity
plant anatomy
plant cuticle
plant physiology
rosa
stomata
vase life
abscisinezuur
cuticula bij planten
huidmondjes
plantenanatomie
plantenfysiologie
rosa
tuinbouw
vaasleven
vochtigheid
abscisic acid
horticulture
humidity
plant anatomy
plant cuticle
plant physiology
rosa
stomata
vase life
abscisinezuur
cuticula bij planten
huidmondjes
plantenanatomie
plantenfysiologie
rosa
tuinbouw
vaasleven
vochtigheid
spellingShingle abscisic acid
horticulture
humidity
plant anatomy
plant cuticle
plant physiology
rosa
stomata
vase life
abscisinezuur
cuticula bij planten
huidmondjes
plantenanatomie
plantenfysiologie
rosa
tuinbouw
vaasleven
vochtigheid
abscisic acid
horticulture
humidity
plant anatomy
plant cuticle
plant physiology
rosa
stomata
vase life
abscisinezuur
cuticula bij planten
huidmondjes
plantenanatomie
plantenfysiologie
rosa
tuinbouw
vaasleven
vochtigheid
Fanourakis, D.
Stomatal response characteristics as affected by long-term elevated humidity levels
description Restriction of leaf water loss, by stomatal closure, is decisive for plant survival, especially under conditions of water deficit. This sensitivity of stomata to low water potential is attenuated by high relative air humidity (RH ≥ 85%) during growth, which impedes the plant’s ability to survive when subsequently exposed to lower humidities due to a negative water balance. This thesis focuses on the extent of the existing variation and the reasons underlying cultivar differences in their tolerance to high RH, as well as the rate and reversibility of stomatal adaptation to elevated RH in the course of leaf ontogeny. Cut rose was used as a model plant. An experiment on the postharvest water relations of three contrasting cultivars in their sensitivity to high RH showed that the sensitive cultivar (i.e. steepest decrease in the cut flower longevity) underwent a higher increase in the water loss compared to the tolerant cultivars. Preventing vascular occlusion considerably extended the time to wilting in the sensitive cultivar grown at high RH, showing that the high rate of water loss, as a result of plant growth at high RH, can only be detrimental for keeping quality under limiting water uptake conditions. Further investigation showed a large genotypic variation in the regulation of water loss, as a result of leaf development at high RH, and stomatal closing capacity was the key element in this process. The degree to which the stomatal anatomical features were affected and the extent that their functionality was impaired were not correlated. However, higher stomatal density, longer pore length and depth contributed to the higher water loss of high RH-grown leaves (16–30% of the effect depending on the cultivar). Reciprocal change in RH showed that stomatal functioning was no longer affected by the RH level after full leaf expansion. However, expanding leaves were always able to partly adapt to the new RH level. For leaves that started expanding at high RH but completed their expansion after transfer to moderate RH, the earlier this switch took place the better the regulation of leaf water loss. This behaviour of expanding leaves experiencing a shift from high to moderate RH was related with the increasing population of stomata exceeding a critical stomatal length. Contrary to this, leaves initially expanding at moderate RH and transferred to high RH exhibited poor stomatal functioning, even when this transfer occurred very late during leaf expansion. This suggests that stomata at various developmental stages were similarly prone to loss of closing ability, when these had been exposed to high RH prior to full leaf expansion. Key words: abscisic acid, cuticular permeability, heterogeneity, hydraulic conductivity, pore aperture, relative air humidity, Rosa hybrida, stomatal anatomy, stomatal conductance, stomatal growth, stomatal initiation, stomatal malfunctioning, stomatal population, stomatal proximity, vase life.
author2 van Kooten, Olaf
author_facet van Kooten, Olaf
Fanourakis, D.
format Doctoral thesis
topic_facet abscisic acid
horticulture
humidity
plant anatomy
plant cuticle
plant physiology
rosa
stomata
vase life
abscisinezuur
cuticula bij planten
huidmondjes
plantenanatomie
plantenfysiologie
rosa
tuinbouw
vaasleven
vochtigheid
author Fanourakis, D.
author_sort Fanourakis, D.
title Stomatal response characteristics as affected by long-term elevated humidity levels
title_short Stomatal response characteristics as affected by long-term elevated humidity levels
title_full Stomatal response characteristics as affected by long-term elevated humidity levels
title_fullStr Stomatal response characteristics as affected by long-term elevated humidity levels
title_full_unstemmed Stomatal response characteristics as affected by long-term elevated humidity levels
title_sort stomatal response characteristics as affected by long-term elevated humidity levels
url https://research.wur.nl/en/publications/stomatal-response-characteristics-as-affected-by-long-term-elevat
work_keys_str_mv AT fanourakisd stomatalresponsecharacteristicsasaffectedbylongtermelevatedhumiditylevels
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