Transcriptome analysis of a new maize albino mutant reveals that zeta-carotene desaturase is involved in chloroplast development and retrograde signaling

Copyright © 2020 Elsevier Masson SAS. All rights reserved.

Bibliographische Detailangaben
Veröffentlicht in:Plant physiology and biochemistry : PPB. - 1991. - 156(2020) vom: 01. Nov., Seite 407-419
1. Verfasser: Wang, Meiping (VerfasserIn)
Weitere Verfasser: Zhu, Xianfeng, Li, Yu, Xia, Zongliang
Format: Online-Aufsatz
Sprache:English
Veröffentlicht: 2020
Zugriff auf das übergeordnete Werk:Plant physiology and biochemistry : PPB
Schlagworte:Journal Article Carotenoid biosynthesis Chloroplasts Maize Transcriptome analysis Zeta-carotene desaturase Plant Proteins Carotenoids 36-88-4 Oxidoreductases mehr... EC 1.- zeta-carotene desaturase EC 1.3.3.-
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245 1 0 |a Transcriptome analysis of a new maize albino mutant reveals that zeta-carotene desaturase is involved in chloroplast development and retrograde signaling 
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520 |a Carotenoids are a group of natural tetraterpenoid pigments with essential roles in a variety of physiological processes of plants. Although carotenoid biosynthesis has been well characterized, the genetic basis of the pathway, especially in crop plants, is largely unknown. In this study, we characterized a new albino maize mutant called albino1 (alb1), which was obtained from a Mutator mutagenized population. The alb1 mutant showed defective chloroplast development and declined photosynthetic pigments, leading to a seedling-lethal phenotype. Genetic and molecular analyses indicated that ALB1 encoded a putative ζ-carotene desaturase (ZDS) involved in carotenoid biosynthesis. Measurement of carotenoids revealed that several major carotenoid compounds downstream of the ZDS were significantly reduced in alb1 mutant, indicating that ALB1 is a functional ZDS. Further transcriptome analysis revealed that several groups of nuclear genes involved in photosynthesis, such as light-harvesting complex, pigment metabolism, and chloroplast function, were significantly down-regulated in alb1 compared with wide type. Interestingly, expression of some maize plastid-localized nuclear genes, including POR, CAO, Lhcb, and RbcS, was substantially reduced in alb1 plants. Furthermore, treatment of the inhibitor fluridone significantly rescued gene transcripts of these nucleus-encoded genes in alb1 mutant, which supported the retrograde signaling of ζ-carotene/phytofluene derived molecules. These results suggested that ALB1/ZDS might function as a regulator to coordinate nuclear photosynthetic gene expression in plastid-to-nucleus retrograde signaling during development of maize plants. Together, these results have demonstrated that ALB1/ZDS is essential for carotenoids biosynthesis and plays crucial roles in chloroplast biogenesis and development in maize 
650 4 |a Journal Article 
650 4 |a Carotenoid biosynthesis 
650 4 |a Chloroplasts 
650 4 |a Maize 
650 4 |a Transcriptome analysis 
650 4 |a Zeta-carotene desaturase 
650 7 |a Plant Proteins  |2 NLM 
650 7 |a Carotenoids  |2 NLM 
650 7 |a 36-88-4  |2 NLM 
650 7 |a Oxidoreductases  |2 NLM 
650 7 |a EC 1.-  |2 NLM 
650 7 |a zeta-carotene desaturase  |2 NLM 
650 7 |a EC 1.3.3.-  |2 NLM 
700 1 |a Zhu, Xianfeng  |e verfasserin  |4 aut 
700 1 |a Li, Yu  |e verfasserin  |4 aut 
700 1 |a Xia, Zongliang  |e verfasserin  |4 aut 
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773 1 8 |g volume:156  |g year:2020  |g day:01  |g month:11  |g pages:407-419 
856 4 0 |u http://dx.doi.org/10.1016/j.plaphy.2020.09.025  |3 Volltext 
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