Metabolic and Molecular Events Occurring during Chromoplast Biogenesis

Author:

Bian Wanping12,Barsan Cristina12,Egea Isabel12,Purgatto Eduardo3,Chervin Christian12,Zouine Mohamed12,Latché Alain12,Bouzayen Mondher12,Pech Jean-Claude12

Affiliation:

1. Génomique et Biotechnologie des Fruits, INP-ENSA Toulouse, Université de Toulouse, avenue de l'Agrobiopole BP 32607, Castanet-Tolosan 31326, France

2. Génomique et Biotechnologie des Fruits, INRA, Chemin de Borde Rouge, Castanet-Tolosan 31326, France

3. Departmento de Alimentos e Nutrição Experimental, Faculdade de Ciências Farmacêuticas, Universidade de São Paulo, Avenue Prof. Lineu Prestes 580, bl 14, 05508-000 São Paulo, SP, Brazil

Abstract

Chromoplasts are nonphotosynthetic plastids that accumulate carotenoids. They derive from other plastid forms, mostly chloroplasts. The biochemical events responsible for the interconversion of one plastid form into another are poorly documented. However, thanks to transcriptomics and proteomics approaches, novel information is now available. Data of proteomic and biochemical analysis revealed the importance of lipid metabolism and carotenoids biosynthetic activities. The loss of photosynthetic activity was associated with the absence of the chlorophyll biosynthesis branch and the presence of proteins involved in chlorophyll degradation. Surprisingly, the entire set of Calvin cycle and of the oxidative pentose phosphate pathway persisted after the transition from chloroplast to chromoplast. The role of plastoglobules in the formation and organisation of carotenoid-containing structures and that of theOrgene in the control of chromoplastogenesis are reviewed. Finally, using transcriptomic data, an overview is given the expression pattern of a number of genes encoding plastid-located proteins during tomato fruit ripening.

Publisher

Hindawi Limited

Subject

Plant Science

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