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The Arabidopsis Spontaneous Cell Death1 gene, encoding a ζ-carotene desaturase essential for carotenoid biosynthesis, is involved in chloroplast development,photoprotection and retrograde signalling
引用本文:Dong H,Deng Y,Mu J,Lu Q,Wang Y,Xu Y,Chu C,Chong K,Lu C,Zuo J. The Arabidopsis Spontaneous Cell Death1 gene, encoding a ζ-carotene desaturase essential for carotenoid biosynthesis, is involved in chloroplast development,photoprotection and retrograde signalling[J]. Cell research, 2007, 17(5): 458-470
作者姓名:Dong H  Deng Y  Mu J  Lu Q  Wang Y  Xu Y  Chu C  Chong K  Lu C  Zuo J
作者单位:[1]State Key Laboratory of Plant Genomics and National Plant Gene Research Center (Beijing), Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing 100101, China, [2]Graduate School Chinese Academy of Sciences, Beijing 100039, China; [3]Institute of Botany, Chinese Academy of Sciences, Beijing 100093, China
基金项目:Acknowledgments We thank the Arabidopsis Biological Resources Center for mutant seeds. We are grateful to Dr Sodmergen and Dr Quan Zhang (Peking University) for advice and help on transmission electron microscopy. This work is supported by grants from National Natural Science Foundation of China (Grant Nos. 30330360, 30125025 and 30221002), and Chinese Academy of Sciences (Grant No. KSCX2- YW-N-015) to Zuo J.
摘    要:Carotenoids, a class of natural pigments found in all photosynthetic organisms, are involved in a variety of physiological processes, including coloration, photoprotection, biosynthesis of abscisic acid (ABA) and chloroplast biogenesis. Although carotenoid biosynthesis has been well studied biochemically, the genetic basis of the pathway is not well understood. Here, we report the characterization of two allelic Arabidopsis mutants, spontaneous cell death1-1 (spcl-1) and spc1-2. The weak allele spc1-1 mutant showed characteristics of bleached leaves, accumulation of superoxide and mosaic cell death. The strong mutant allele spc1-2 caused a complete arrest of plant growth and development shortly after germination, leading to a seedling-lethal phenotype. Genetic and molecular analyses indicated that SPC1 encodes a putative ζ-carotene desaturase (ZDS) in the carotenoid biosynthesis pathway. Analysis of carotenoids revealed that several major carotenoid compounds downstream of SPC 1/ZDS were substantially reduced in spc1-1, suggesting that SPC 1 is a functional ZDS. Consistent with the downregulated expression of CAO and PORB, the chlorophyll content was decreased in spc1-1 plants. In addition, expression of Lhcb1. 1, Lhcbl. 4 and RbcS was absent in spc1-2, suggesting the possible involvement of carotenoids in the plastid-to-nucleus retrograde signaling. The spc1-1 mutant also displays an ABA-deficient phenotype that can be partially rescued by the externally supplied phytohormone. These results suggest that SPC1/ZDS is essential for biosynthesis of carotenoids and plays a crucial role in plant growth and development.

关 键 词:拟南芥 细胞自发死亡基因 ζ-胡萝卜素 脱饱和酶 类胡罗卜素 生物合成 叶绿体发育 光保护
修稿时间:2007-03-082007-03-10

The Arabidopsis Spontaneous Cell Death1 gene, encoding a zeta-carotene desaturase essential for carotenoid biosynthesis, is involved in chloroplast development, photoprotection and retrograde signalling
Dong Haili,Deng Yan,Mu Jinye,Lu Qingtao,Wang Yiqin,Xu Yunyuan,Chu Chengcai,Chong Kang,Lu Congming,Zuo Jianru. The Arabidopsis Spontaneous Cell Death1 gene, encoding a zeta-carotene desaturase essential for carotenoid biosynthesis, is involved in chloroplast development, photoprotection and retrograde signalling[J]. Cell research, 2007, 17(5): 458-470
Authors:Dong Haili  Deng Yan  Mu Jinye  Lu Qingtao  Wang Yiqin  Xu Yunyuan  Chu Chengcai  Chong Kang  Lu Congming  Zuo Jianru
Abstract:Carotenoids, a class of natural pigments found in all photosynthetic organisms, are involved in a variety of physiological processes, including coloration, photoprotection, biosynthesis of abscisic acid (ABA) and chloroplast biogenesis. Although carotenoid biosynthesis has been well studied biochemically, the genetic basis of the pathway is not well understood. Here, we report the characterization of two allelic Arabidopsis mutants, spontaneous cell death1-1 (spc1-1) and spc1-2. The weak allele spc1-1 mutant showed characteristics of bleached leaves, accumulation of superoxide and mosaic cell death. The strong mutant allele spc1-2 caused a complete arrest of plant growth and development shortly after germination, leading to a seedling-lethal phenotype. Genetic and molecular analyses indicated that SPC1 encodes a putative zeta-carotene desaturase (ZDS) in the carotenoid biosynthesis pathway. Analysis of carotenoids revealed that several major carotenoid compounds downstream of SPC1/ZDS were substantially reduced in spc1-1, suggesting that SPC1 is a functional ZDS. Consistent with the downregulated expression of CAO and PORB, the chlorophyll content was decreased in spc1-1 plants. In addition, expression of Lhcb1.1, Lhcb1.4 and RbcS was absent in spc1-2, suggesting the possible involvement of carotenoids in the plastid-to-nucleus retrograde signaling. The spc1-1 mutant also displays an ABA-deficient phenotype that can be partially rescued by the externally supplied phytohormone. These results suggest that SPC1/ZDS is essential for biosynthesis of carotenoids and plays a crucial role in plant growth and development.
Keywords:carotenoid biosynthesis   cell death   chloroplast development   photoprotection   Arabidopsis SPC1/ZDS
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