Cystoliths of Parietaria judaica can serve as an internal source of CO2 for photosynthetic assimilation when stomata are closed.

Parietaria judaica Abscisic acid calcium carbonate carbon starvation cellular deposits chlorophyll fluorescence cystoliths lithocysts photosynthesis spreading pellitory

Journal

Journal of experimental botany
ISSN: 1460-2431
Titre abrégé: J Exp Bot
Pays: England
ID NLM: 9882906

Informations de publication

Date de publication:
24 10 2019
Historique:
received: 08 03 2019
accepted: 25 06 2019
pubmed: 5 7 2019
medline: 18 8 2020
entrez: 5 7 2019
Statut: ppublish

Résumé

The recently reported 'alarm photosynthesis' acts as a biochemical process that assimilates CO2 derived from the decomposition of calcium oxalate crystals. This study examined whether CaCO3 cystoliths could also serve as CO2 pools, fulfilling a similar role. Shoots of Parietaria judaica were subjected to carbon starvation, abscisic acid (ABA), or bicarbonate treatments, and the volume of cystoliths and the photochemical parameters of photosystem II (PSII) were determined. The size of cystoliths was reduced under carbon starvation or ABA treatments, whereas it was restored by xylem-provided bicarbonate. Under carbon starvation, ABA, or bicarbonate treatments, the photochemical efficiency of PSII was higher, while non-photochemical quenching, representing the safe dissipation of excess PSII energy due to lack of electron sinks, was lower in treated samples compared with controls. This observation suggests the involvement of ABA or other carbon starvation cues in the release of subsidiary CO2 for photosynthesis, inevitably from an internal source, which could be the cystoliths. Carbon remobilized from cystoliths can be photosynthetically assimilated, thus acting as a safety valve under stress. Together with alarm photosynthesis, these results show a tight link between leaf carbon deposits and photosynthesis.

Identifiants

pubmed: 31270538
pii: 5528037
doi: 10.1093/jxb/erz316
doi:

Substances chimiques

Carbon Dioxide 142M471B3J
Abscisic Acid 72S9A8J5GW

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

5753-5763

Informations de copyright

© The Author(s) 2019. Published by Oxford University Press on behalf of the Society for Experimental Biology. All rights reserved. For permissions, please email: journals.permissions@oup.com.

Auteurs

Andreas Giannopoulos (A)

Laboratory of Plant Physiology, Faculty of Crop Science, Agricultural University of Athens, Athens, Greece.

Dimosthenis Nikolopoulos (D)

Laboratory of Plant Physiology, Faculty of Crop Science, Agricultural University of Athens, Athens, Greece.

Panagiota Bresta (P)

Laboratory of Plant Physiology, Faculty of Crop Science, Agricultural University of Athens, Athens, Greece.

Aris Samantas (A)

Laboratory of Plant Physiology, Faculty of Crop Science, Agricultural University of Athens, Athens, Greece.

Chrysavgi Reppa (C)

Laboratory of Plant Physiology, Faculty of Crop Science, Agricultural University of Athens, Athens, Greece.

Kalliopi Karaboiki (K)

Laboratory of Plant Physiology, Faculty of Crop Science, Agricultural University of Athens, Athens, Greece.

Elissavet Dotsika (E)

Stable Isotope Unit, Institute of Material Science, National Centre for Scientific Research 'Demokritos', Athens, Greece.

Constantinos Fasseas (C)

Laboratory of Electron Microscopy, Faculty of Crop Science, Agricultural University of Athens, Athens, Greece.

Georgios Liakopoulos (G)

Laboratory of Plant Physiology, Faculty of Crop Science, Agricultural University of Athens, Athens, Greece.

George Karabourniotis (G)

Laboratory of Plant Physiology, Faculty of Crop Science, Agricultural University of Athens, Athens, Greece.

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Classifications MeSH