The possible role of photorespiration as a general stress protection mechanism, and in C4 plant metabolism, is controversial. In particular, the potential involvement of photorespiration in the acquisition of desiccation tolerance in ‘resurrection’ plants is unknown. An investigation was carried out into whether photorespiration is present in leaves of the C4 resurrection plant Sporobolus stapfianus Gandoger (Poaceae) and whether it functions as a mechanism of stress resistance in the desiccation-tolerant younger leaves (YL) of this plant. It is shown that the enzymes involved in the photorespiratory pathway maintain their activity until 88% relative water content (RWC) in both YL and desiccation-sensitive older leaves (OL). In subsequent stages of dehydration stress, the enzymatic activity declined similarly in both YL and OL. The content of the phorespiratory metabolite, serine, and ethanolamine, a direct product of serine decarboxylation, is higher in the early stages of dehydration (88% RWC) in OL, suggesting a transiently enhanced photorespiratory activity in these leaves. This was confirmed by simultaneous gas exchange and fluorescence measurements, showing suppression of the electron transport rate in OL exposed to non-photorespiratory conditions (2% O2) at 85% RWC. It is concluded that a higher photorespiratory electron transport occurs in desiccation-sensitive OL, and it is therefore proposed that the capacity to scavenge excess electrons through photorespiration does not contribute to protect leaves of the desiccation-tolerant YL of S. stapfianus during the stress.

Evidence for the presence of photorespiration in desiccation-sensitive leaves of the C4 "resurrection" plant Sporobulos stapfianus during dehydration stress / T. Martinelli; A. Whittaker; C. Masclaux-Daubresse; J.M. Farrant; F. Brilli; F. Loreto; C. Vazzana. - In: JOURNAL OF EXPERIMENTAL BOTANY. - ISSN 0022-0957. - STAMPA. - 58:(2007), pp. 3929-3939. [10.1093/jxb/erm247]

Evidence for the presence of photorespiration in desiccation-sensitive leaves of the C4 "resurrection" plant Sporobulos stapfianus during dehydration stress

VAZZANA, CONCETTA
2007

Abstract

The possible role of photorespiration as a general stress protection mechanism, and in C4 plant metabolism, is controversial. In particular, the potential involvement of photorespiration in the acquisition of desiccation tolerance in ‘resurrection’ plants is unknown. An investigation was carried out into whether photorespiration is present in leaves of the C4 resurrection plant Sporobolus stapfianus Gandoger (Poaceae) and whether it functions as a mechanism of stress resistance in the desiccation-tolerant younger leaves (YL) of this plant. It is shown that the enzymes involved in the photorespiratory pathway maintain their activity until 88% relative water content (RWC) in both YL and desiccation-sensitive older leaves (OL). In subsequent stages of dehydration stress, the enzymatic activity declined similarly in both YL and OL. The content of the phorespiratory metabolite, serine, and ethanolamine, a direct product of serine decarboxylation, is higher in the early stages of dehydration (88% RWC) in OL, suggesting a transiently enhanced photorespiratory activity in these leaves. This was confirmed by simultaneous gas exchange and fluorescence measurements, showing suppression of the electron transport rate in OL exposed to non-photorespiratory conditions (2% O2) at 85% RWC. It is concluded that a higher photorespiratory electron transport occurs in desiccation-sensitive OL, and it is therefore proposed that the capacity to scavenge excess electrons through photorespiration does not contribute to protect leaves of the desiccation-tolerant YL of S. stapfianus during the stress.
2007
58
3929
3939
T. Martinelli; A. Whittaker; C. Masclaux-Daubresse; J.M. Farrant; F. Brilli; F. Loreto; C. Vazzana
File in questo prodotto:
File Dimensione Formato  
Photorespiration.pdf

Accesso chiuso

Tipologia: Versione finale referata (Postprint, Accepted manuscript)
Licenza: Tutti i diritti riservati
Dimensione 261.58 kB
Formato Adobe PDF
261.58 kB Adobe PDF   Richiedi una copia

I documenti in FLORE sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/609093
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 20
  • ???jsp.display-item.citation.isi??? 18
social impact