作者
Verónica Albrecht, Klára Šimková, Chris Carrie, Etienne Delannoy, Estelle Giraud, Jim Whelan, Ian David Small, Klaus Apel, Murray R Badger, Barry James Pogson
发表日期
2010/10/1
期刊
The Plant Cell
卷号
22
期号
10
页码范围
3423-3438
出版商
American Society of Plant Biologists
简介
Here, we describe the snowy cotyledon3 (sco3-1) mutation, which impairs chloroplast and etioplast development in Arabidopsis thaliana seedlings. SCO3 is a member of a largely uncharacterized protein family unique to the plant kingdom. The sco3-1 mutation alters chloroplast morphology and development, reduces chlorophyll accumulation, impairs thylakoid formation and photosynthesis in seedlings, and results in photoinhibition under extreme CO2 concentrations in mature leaves. There are no readily apparent changes to chloroplast biology, such as transcription or assembly that explain the disruption to chloroplast biogenesis. Indeed, SCO3 is actually targeted to another organelle, specifically to the periphery of peroxisomes. However, impaired chloroplast development cannot be attributed to perturbed peroxisomal metabolic processes involving germination, fatty acid β-oxidation or photorespiration …
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