Document généré le 18/06/2026 depuis l'adresse: https://www.documentation.eauetbiodiversite.fr/fr/notice/reponses-physiologiques-et-biochimiques-a-une-limitation-nutritive-en-phosphore-ou-en-azote-sur-la-reorientation-metabolique-des-lipides-polaires-chez-differentes-especes-de-microalgues-marines
Réponses physiologiques et biochimiques à une limitation nutritive en phosphore ou en azote sur la réorientation métabolique des lipides polaires chez différentes espèces de microalgues marines
Titre alternatif
Producteur
Contributeur(s)
Éditeur(s)
Le Mans Université
Identifiant documentaire
9-61169
Identifiant OAI
oai:archimer.ifremer.fr:61169
Auteur(s):
Huang, Bing
Mots clés
Microalgues marines
bétaïne lipides
triacylglycérols
limitation en phosphore
lipides polaires
acides gras oméga-3
Marine microalgae
betaine lipids
triacylglycerols
phosphorus limitation
polar lipids
omega- 3 fatty acids
Date de publication
28/11/2018
Date de création
Date de modification
Date d'acceptation du document
Date de dépôt légal
Langue
fre
Thème
Type de ressource
Source
Droits de réutilisation
info:eu-repo/semantics/openAccess
Région
Département
Commune
Description
Betaine lipids (BL) are P-free polar lipids, conversely to phospholipids (PL). The metabolic reorientation induced by phosphorus (P) limitation in microalgae producing BL (Tisochrysis lutea and Diacronema lutheri, Haptophyta) or producing low levels of BL (Phaeodactylum tricornutum, Bacillariophyta) was compared to that induced by nitrogen (N) limitation. The carbon destiny and flow in different biosynthetic pathways were studied with a multidisciplinary approach. P or N limitation differently affected carbon metabolism according to microalgal species. P limitation highly decreased photosynthetic activity and respiration of P. tricornutum and T. lutea. Consequently, carbon accumulation was higher than under N limitation in these two species. Both limitations stimulated the synthesis of neutral lipids and / or carbohydrates. Replacement of PL by BL was observed in P. tricornutum under P limitation. This result is in agreement with a transcription increase of the gene encoding BL synthase. On the other hand, this limitation did not modify BL contents in reference with carbon in T. lutea or D. lutheri. Fatty acid composition of the different lipid classes was modified according to the microalgal species and the limiting nutrient. Particular attention was paid to the fatty acids of the omega-3 series, notably eicosapentaenoic acid (EPA, 20:5 ù3) and docosahexaenoic acid (DHA, 22:6 ù3), the proportions of which vary according to the limiting element, species and lipid class. The increase in the production of neutral lipids and / or polar lipids, especially betaine lipids, rich in DHA and / or EPA induced by nutritive stress suggests a valorization of these molecules of interest in various areas including nutrition and health.
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