ABA regulation of post-germination desiccation tolerance in wheat cultivars contrasting in drought tolerance

ABSTRACT Post-germination desiccation tolerance (DT) was studied in two wheat cultivars. Effect of pretreatment of abscisic acid (ABA)/ osmotic/ salt/ heat stress was also studied. One day (d)-old seedlings of wheat cultivars PBW 644 (drought tolerant) and PBW 343 (drought susceptible) were exposed...

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Main Authors: SATINDER KOUR, VIKRAMJIT K. ZHAWAR
Format: Article
Language:English
Published: Academia Brasileira de Ciências
Series:Anais da Academia Brasileira de Ciências
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0001-37652018000401493&lng=en&tlng=en
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spelling doaj-8ca152137cda473f9dbd4989e29e35ed2020-11-24T22:23:51ZengAcademia Brasileira de CiênciasAnais da Academia Brasileira de Ciências1678-26909021493150110.1590/0001-3765201820170632S0001-37652018000401493ABA regulation of post-germination desiccation tolerance in wheat cultivars contrasting in drought toleranceSATINDER KOURVIKRAMJIT K. ZHAWARABSTRACT Post-germination desiccation tolerance (DT) was studied in two wheat cultivars. Effect of pretreatment of abscisic acid (ABA)/ osmotic/ salt/ heat stress was also studied. One day (d)-old seedlings of wheat cultivars PBW 644 (drought tolerant) and PBW 343 (drought susceptible) were exposed to ABA/stress treatment for next 1 d, desiccated for 4 d and subsequently rehydrated for 4 d. Biomass, protein, water, protein carbonyls (oxidative toxicity) and nitric oxide (NO) levels were measured in 2 d (treated), 6 d (desiccated), 10 d (rehydrated) seedlings. Vegetative reactive oxygen species (ROS)/ NO-pathways were studied under normal condition and ABA supply by supplying ROS/NO scavengers. Desiccation caused water loss and increased oxidative toxicity. PBW 644 showed very low level of toxicity but higher loss of water under desiccation. ABA/ stress pretreatment further reduced water level under desiccation and reduced biomass upon rehydration in PBW 644 only. On the other hand, PBW 343 did not show higher decrease of water but showed high toxicity under desiccation where ABA/stress pretreatment improved this response by increasing biomass upon rehydration. This indicated that PBW 644 used metabolic arrest under desiccation for survival while PBW 343 used growth promotive mode. ABA/ROS/NO-pathways were operational in both cultivars.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0001-37652018000401493&lng=en&tlng=enabioticabscisic acidnitric oxidepost germination desiccation tolerancewheat
collection DOAJ
language English
format Article
sources DOAJ
author SATINDER KOUR
VIKRAMJIT K. ZHAWAR
spellingShingle SATINDER KOUR
VIKRAMJIT K. ZHAWAR
ABA regulation of post-germination desiccation tolerance in wheat cultivars contrasting in drought tolerance
Anais da Academia Brasileira de Ciências
abiotic
abscisic acid
nitric oxide
post germination desiccation tolerance
wheat
author_facet SATINDER KOUR
VIKRAMJIT K. ZHAWAR
author_sort SATINDER KOUR
title ABA regulation of post-germination desiccation tolerance in wheat cultivars contrasting in drought tolerance
title_short ABA regulation of post-germination desiccation tolerance in wheat cultivars contrasting in drought tolerance
title_full ABA regulation of post-germination desiccation tolerance in wheat cultivars contrasting in drought tolerance
title_fullStr ABA regulation of post-germination desiccation tolerance in wheat cultivars contrasting in drought tolerance
title_full_unstemmed ABA regulation of post-germination desiccation tolerance in wheat cultivars contrasting in drought tolerance
title_sort aba regulation of post-germination desiccation tolerance in wheat cultivars contrasting in drought tolerance
publisher Academia Brasileira de Ciências
series Anais da Academia Brasileira de Ciências
issn 1678-2690
description ABSTRACT Post-germination desiccation tolerance (DT) was studied in two wheat cultivars. Effect of pretreatment of abscisic acid (ABA)/ osmotic/ salt/ heat stress was also studied. One day (d)-old seedlings of wheat cultivars PBW 644 (drought tolerant) and PBW 343 (drought susceptible) were exposed to ABA/stress treatment for next 1 d, desiccated for 4 d and subsequently rehydrated for 4 d. Biomass, protein, water, protein carbonyls (oxidative toxicity) and nitric oxide (NO) levels were measured in 2 d (treated), 6 d (desiccated), 10 d (rehydrated) seedlings. Vegetative reactive oxygen species (ROS)/ NO-pathways were studied under normal condition and ABA supply by supplying ROS/NO scavengers. Desiccation caused water loss and increased oxidative toxicity. PBW 644 showed very low level of toxicity but higher loss of water under desiccation. ABA/ stress pretreatment further reduced water level under desiccation and reduced biomass upon rehydration in PBW 644 only. On the other hand, PBW 343 did not show higher decrease of water but showed high toxicity under desiccation where ABA/stress pretreatment improved this response by increasing biomass upon rehydration. This indicated that PBW 644 used metabolic arrest under desiccation for survival while PBW 343 used growth promotive mode. ABA/ROS/NO-pathways were operational in both cultivars.
topic abiotic
abscisic acid
nitric oxide
post germination desiccation tolerance
wheat
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0001-37652018000401493&lng=en&tlng=en
work_keys_str_mv AT satinderkour abaregulationofpostgerminationdesiccationtoleranceinwheatcultivarscontrastingindroughttolerance
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