Genome-wide gene expression analysis reveals a critical role for CRYPTOCHROME1 in the response of arabidopsis to high irradiance

被引:196
|
作者
Kleine, Tatjana [1 ]
Kindgren, Peter [1 ]
Benedict, Catherine [1 ]
Hendrickson, Luke [1 ]
Strand, Asa [1 ]
机构
[1] Umea Univ, Dept Plant Physiol, Umea Plant Sci Ctr, S-90187 Umea, Sweden
关键词
LIGHT SIGNAL-TRANSDUCTION; UV-B RESPONSE; BLUE-LIGHT; TRANSCRIPTION-FACTOR; CHLOROPLAST RELOCATION; IN-VITRO; VITAMIN-B6; BIOSYNTHESIS; DEPENDENT REGULATION; INDUCIBLE PROTEIN; LOW-TEMPERATURE;
D O I
10.1104/pp.107.098293
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Exposure to high irradiance results in dramatic changes in nuclear gene expression in plants. However, little is known about the mechanisms by which changes in irradiance are sensed and how the information is transduced to the nucleus to initiate the genetic response. To investigate whether the photoreceptors are involved in the response to high irradiance, we analyzed expression of EARLY LIGHT-INDUCIBLE PROTEIN1 (ELIP1), ELIP2, ASCORBATE PEROXIDASE2 (APX2), and LIGHT-HARVESTING CHLOROPHYLL A/B-BINDING PROTEIN2.4 (LHCB2.4) in the phytochrome A ( phyA), phyB, cryptochrome1 (cry1), and cry2 photoreceptor mutants and long hypocotyl5 (hy5) and HY5 homolog (hyh) transcription factor mutants. Following exposure to high intensity white light for 3 h (1,000 mu mol quanta m(-2) s(-1)) expression of ELIP1/2 and APX2 was strongly induced and LHCB2.4 expression repressed in wild type. The cry1 and hy5 mutants showed specific misregulation of ELIP1/2, and we show that the induction of ELIP1/2 expression is mediated via CRY1 in a blue light intensity-dependent manner. Furthermore, using the Affymetrix Arabidopsis (Arabidopsis thaliana) 24 K Gene-Chip, we showed that 77 of the high light-responsive genes are regulated via CRY1, and 26 of those genes were also HY5 dependent. As a consequence of the misregulation of these genes, the cry1 mutant displayed a high irradiance-sensitive phenotype with significant photoinactivation of photosystem II, indicated by reduced maximal fluorescence ratio. Thus, we describe a novel function of CRY1 in mediating plant responses to high irradiances that is essential to the induction of photoprotective mechanisms. This indicates that high irradiance can be sensed in a chloroplast-independent manner by a cytosolic/nucleic component.
引用
收藏
页码:1391 / 1406
页数:16
相关论文
共 50 条
  • [41] Genome-wide analysis reveals the evolution and structural features of WRINKLED1 in plants
    Tang, Tong
    Du, Chang
    Song, Huan
    Aziz, Usman
    Wang, Lili
    Zhao, Cuizhu
    Zhang, Meng
    MOLECULAR GENETICS AND GENOMICS, 2019, 294 (02) : 329 - 341
  • [42] Genome-wide identification and expression analysis of the coronatine-insensitive 1 (COI1) gene family in response to biotic and abiotic stresses in Saccharum
    Sun, Tingting
    Meng, Yintian
    Cen, Guangli
    Feng, Aoyin
    Su, Weihua
    Chen, Yanling
    You, Chuihuai
    Que, Youxiong
    Su, Yachun
    BMC GENOMICS, 2022, 23 (01)
  • [43] Genome-wide analysis of auxin response factor (ARF) gene family from tomato and analysis of their role in flower and fruit development
    Kumar, Rahul
    Tyagi, Akhilesh K.
    Sharma, Arun K.
    MOLECULAR GENETICS AND GENOMICS, 2011, 285 (03) : 245 - 260
  • [44] Genome-Wide Identification and Expression Analysis of the COL Gene Family in Hemerocallis citrina Baroni
    Zuo, Ziwei
    Ma, Guangying
    Xie, Lupeng
    Yao, Xingda
    Zhan, Shuxia
    Zhou, Yuan
    CURRENT ISSUES IN MOLECULAR BIOLOGY, 2024, 46 (08) : 8550 - 8566
  • [45] Genome-wide identification and expression analysis of the VQ gene family in soybean (Glycine max)
    Wang, Yongbin
    Jiang, Zhenfeng
    Li, Zhenxiang
    Zhao, Yuanling
    Tan, Weiwei
    Liu, Zhaojun
    Cui, Shaobin
    Yu, Xiaoguang
    Ma, Jun
    Wang, Guangjin
    Li, Wenbin
    PEERJ, 2019, 7
  • [46] Genome-wide identification and expression analysis of terpene synthase gene family in Aquilaria sinensis
    Li, Rong-Shuang
    Zhu, Jia-Hong
    Guo, Dong
    Li, Hui-Liang
    Wang, Ying
    Ding, Xu-Po
    Mei, Wen-Li
    Chen, Zhi-Bao
    Dai, Hao-Fu
    Peng, Shi-Qing
    PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2021, 164 : 185 - 194
  • [47] Genome-Wide Characterization and Phylogenetic and Stress Response Expression Analysis of the MADS-Box Gene Family in Litchi (Litchi chinensis Sonn.)
    Yang, Jie
    Chen, Rong
    Liu, Wei
    Xiang, Xu
    Fan, Chao
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2024, 25 (03)
  • [48] Genome-Wide Identification, Characterization, and Expression Analysis of the NAC Gene Family in Litchi chinensis
    Liao, Guihua
    Duan, Yu
    Wang, Congcong
    Zhuang, Zebin
    Wang, Haishi
    GENES, 2023, 14 (07)
  • [49] Genome-wide identification and expression analysis of MAPK and MAPKK gene family in Malus domestica
    Zhang, Shizhong
    Xu, Ruirui
    Luo, Xiaocui
    Jiang, Zesheng
    Shu, Huairui
    GENE, 2013, 531 (02) : 377 - 387
  • [50] Genome-wide survey and expression analysis of the MADS-box gene family in soybean
    Shu, Yongjun
    Yu, Diansi
    Wang, Dan
    Guo, Donglin
    Guo, Changhong
    MOLECULAR BIOLOGY REPORTS, 2013, 40 (06) : 3901 - 3911