Heat stress during seed filling interferes with sulfur restriction on grain composition and seed germination in oilseed rape (Brassica napus L.)

In coming decades, increasing temperatures are expected to impact crop yield and seed quality. To develop low input systems, the effects of temperature and sulfur (S) nutrition in oilseed rape, a high S demanding crop, need to be jointly considered. In this study, we investigated the effects of temp...

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Main Authors: Sophie eBrunel-Muguet, Philippe eD'hooghe, Marie-Paule eBataille, Colette eLarré, Tae Hwan eKim, Jacques eTrouverie, Jean-Christophe eAvice, Philippe eEtienne, Carolyne eDurr
Format: Article
Language:English
Published: Frontiers Media S.A. 2015-04-01
Series:Frontiers in Plant Science
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fpls.2015.00213/full
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spelling doaj-467a07c42a514f31b3882290815d6c322020-11-24T23:21:43ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2015-04-01610.3389/fpls.2015.00213135097Heat stress during seed filling interferes with sulfur restriction on grain composition and seed germination in oilseed rape (Brassica napus L.)Sophie eBrunel-Muguet0Philippe eD'hooghe1Marie-Paule eBataille2Colette eLarré3Tae Hwan eKim4Tae Hwan eKim5Jacques eTrouverie6Jean-Christophe eAvice7Philippe eEtienne8Carolyne eDurr9INRA, UMR 950 EVAUniversité Caen Basse NormandieUniversité Caen Basse NormandieINRA, UR1268 BIADepartment of Animal ScienceUniversité Caen Basse NormandieUniversité Caen Basse NormandieINRA, UMR 950 EVAUniversité Caen Basse NormandieINRA, UMR 1345In coming decades, increasing temperatures are expected to impact crop yield and seed quality. To develop low input systems, the effects of temperature and sulfur (S) nutrition in oilseed rape, a high S demanding crop, need to be jointly considered. In this study, we investigated the effects of temperatures (High Temperature (HT), 33 °C/day, 19 °C/night vs. Control Temperature (Ctrl T), 20°C/day, 15°C/day) and S supply (High S (HS), 500 µm SO42- vs. Low S (LS), 8.7 µM SO42-) during seed filling on (i) yield components (seed number, seed dry weight (SDW) and seed yield), (ii) grain composition (nitrogen (N) and S contents) and quality (fatty acid (FA) composition and seed storage protein (SSP) accumulation) and (iii) germination characteristics (pre-harvest sprouting, germination rates and abnormal seedlings). Abscisic acid (ABA), soluble sugar contents and seed conductivity were also measured. HT and LS decreased the number of seeds per plant. SDW was less affected due to compensatory effects since the number of seeds decreased under stress conditions. While LS had negative effects on seed composition by reducing the FA contents and increasing the ratio S-poor SSPs (12S globulins)/S-rich SSPs (2S albumins) ratio, HT had positive effects by increasing S and FA contents and decreasing the C18:2/C18:3 ratio and the 12S/2S protein ratio. Seeds produced under HT showed high pre-harvest sprouting rates along with decreased ABA contents and high rates of abnormal seedlings. HT and LS restriction significantly accelerated germination times. High conductivity, which indicates poor seed storage capacity, was higher in HT seeds. Consistently, the lower ratio of (raffinose +stachyose)/sucrose in HT seeds indicated low seed storage capacity. We demonstrated the effects of HT and LS on grain and on germination characteristics. These results suggest that hormonal changes might control several seed characteristics simultaneously.http://journal.frontiersin.org/Journal/10.3389/fpls.2015.00213/fullGerminationLipidsProteinsSulfurtemperatureSugars
collection DOAJ
language English
format Article
sources DOAJ
author Sophie eBrunel-Muguet
Philippe eD'hooghe
Marie-Paule eBataille
Colette eLarré
Tae Hwan eKim
Tae Hwan eKim
Jacques eTrouverie
Jean-Christophe eAvice
Philippe eEtienne
Carolyne eDurr
spellingShingle Sophie eBrunel-Muguet
Philippe eD'hooghe
Marie-Paule eBataille
Colette eLarré
Tae Hwan eKim
Tae Hwan eKim
Jacques eTrouverie
Jean-Christophe eAvice
Philippe eEtienne
Carolyne eDurr
Heat stress during seed filling interferes with sulfur restriction on grain composition and seed germination in oilseed rape (Brassica napus L.)
Frontiers in Plant Science
Germination
Lipids
Proteins
Sulfur
temperature
Sugars
author_facet Sophie eBrunel-Muguet
Philippe eD'hooghe
Marie-Paule eBataille
Colette eLarré
Tae Hwan eKim
Tae Hwan eKim
Jacques eTrouverie
Jean-Christophe eAvice
Philippe eEtienne
Carolyne eDurr
author_sort Sophie eBrunel-Muguet
title Heat stress during seed filling interferes with sulfur restriction on grain composition and seed germination in oilseed rape (Brassica napus L.)
title_short Heat stress during seed filling interferes with sulfur restriction on grain composition and seed germination in oilseed rape (Brassica napus L.)
title_full Heat stress during seed filling interferes with sulfur restriction on grain composition and seed germination in oilseed rape (Brassica napus L.)
title_fullStr Heat stress during seed filling interferes with sulfur restriction on grain composition and seed germination in oilseed rape (Brassica napus L.)
title_full_unstemmed Heat stress during seed filling interferes with sulfur restriction on grain composition and seed germination in oilseed rape (Brassica napus L.)
title_sort heat stress during seed filling interferes with sulfur restriction on grain composition and seed germination in oilseed rape (brassica napus l.)
publisher Frontiers Media S.A.
series Frontiers in Plant Science
issn 1664-462X
publishDate 2015-04-01
description In coming decades, increasing temperatures are expected to impact crop yield and seed quality. To develop low input systems, the effects of temperature and sulfur (S) nutrition in oilseed rape, a high S demanding crop, need to be jointly considered. In this study, we investigated the effects of temperatures (High Temperature (HT), 33 °C/day, 19 °C/night vs. Control Temperature (Ctrl T), 20°C/day, 15°C/day) and S supply (High S (HS), 500 µm SO42- vs. Low S (LS), 8.7 µM SO42-) during seed filling on (i) yield components (seed number, seed dry weight (SDW) and seed yield), (ii) grain composition (nitrogen (N) and S contents) and quality (fatty acid (FA) composition and seed storage protein (SSP) accumulation) and (iii) germination characteristics (pre-harvest sprouting, germination rates and abnormal seedlings). Abscisic acid (ABA), soluble sugar contents and seed conductivity were also measured. HT and LS decreased the number of seeds per plant. SDW was less affected due to compensatory effects since the number of seeds decreased under stress conditions. While LS had negative effects on seed composition by reducing the FA contents and increasing the ratio S-poor SSPs (12S globulins)/S-rich SSPs (2S albumins) ratio, HT had positive effects by increasing S and FA contents and decreasing the C18:2/C18:3 ratio and the 12S/2S protein ratio. Seeds produced under HT showed high pre-harvest sprouting rates along with decreased ABA contents and high rates of abnormal seedlings. HT and LS restriction significantly accelerated germination times. High conductivity, which indicates poor seed storage capacity, was higher in HT seeds. Consistently, the lower ratio of (raffinose +stachyose)/sucrose in HT seeds indicated low seed storage capacity. We demonstrated the effects of HT and LS on grain and on germination characteristics. These results suggest that hormonal changes might control several seed characteristics simultaneously.
topic Germination
Lipids
Proteins
Sulfur
temperature
Sugars
url http://journal.frontiersin.org/Journal/10.3389/fpls.2015.00213/full
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