Global genome expression analysis of rice in response to drought and high-salinity stresses in shoot, flag leaf, and panicle

被引:225
作者
Zhou, Junli
Wang, Xiangfeng
Jiao, Yuling
Qin, Yonghua
Liu, Xigang
He, Kun
Chen, Chen
Ma, Ligeng
Wang, Jian
Xiong, Lizhong
Zhang, Qifa
Fan, Liumin
Deng, Xing Wang [1 ]
机构
[1] Yale Univ, Dept Mol Cell & Dev Biol, New Haven, CT 06520 USA
[2] Peking Univ, Peking Yale Joint Ctr Plant Mol Genet & Agrobiote, Coll Life Sci, Beijing 100871, Peoples R China
[3] Natl Inst Biol Sci, Beijing 102206, Peoples R China
[4] Huazhong Agr Univ, Natl Key Lab Crop Genet Improvement, Wuhan, Peoples R China
[5] Chinese Acad Sci, Beijing Inst Genom, Beijing 101300, Peoples R China
[6] Peking Univ, Coll Life Sci, Natl Lab Prot Engn & Plant Genet Engn, Beijing 100871, Peoples R China
关键词
rice; drought; salinity; rehydration; promoter; cis-element; ORYZA-SATIVA L; GENE-EXPRESSION; ABSCISIC-ACID; MOLECULAR RESPONSES; ARABIDOPSIS GENES; DRAFT SEQUENCE; SALT STRESS; COLD; TOLERANCE; WATER;
D O I
10.1007/s11103-006-9111-1
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
To elucidate genome-level responses to drought and high-salinity stress in rice, a 70mer oligomer microarray covering 36,926 unique genes or gene models was used to profile genome expression changes in rice shoot, flag leaf and panicle under drought or high-salinity conditions. While patterns of gene expression in response to drought or high-salinity stress within a particular organ type showed significant overlap, comparison of expression profiles among different organs showed largely organ-specific patterns of regulation. Moreover, both stresses appear to alter the expression patterns of a significant number of genes involved in transcription and cell signaling in a largely organ-specific manner. The promoter regions of genes induced by both stresses or induced by one stress in more than one organ types possess relative enrichment of two cis-elements (ABRE core and DRE core) known to be associated with water stress. An initial computational analysis indicated that novel promoter motifs are present in the promoters of genes involved in rehydration after drought. This analysis suggested that rice might possess a mechanism that actively detects rehydration and facilitates rapid recovery. Overall, our data supports a notion that organ-specific gene regulation in response to the two abiotic stresses may primarily be mediated by organ-specific transcription responses.
引用
收藏
页码:591 / 608
页数:18
相关论文
共 61 条
[31]   Monitoring expression profiles of rice genes under cold, drought, and high-salinity stresses and abscisic acid application using cDNA microarray and RNA get-blot analyses [J].
Rabbani, MA ;
Maruyama, K ;
Abe, H ;
Khan, MA ;
Katsura, K ;
Ito, Y ;
Yoshiwara, K ;
Seki, M ;
Shinozaki, K ;
Yamaguchi-Shinozaki, K .
PLANT PHYSIOLOGY, 2003, 133 (04) :1755-1767
[32]   Drought-induced responses of photosynthesis and antioxidant metabolism in higher plants [J].
Reddy, AR ;
Chaitanya, KV ;
Vivekanandan, M .
JOURNAL OF PLANT PHYSIOLOGY, 2004, 161 (11) :1189-1202
[33]   Identifying differentially expressed genes using false discovery rate controlling procedures [J].
Reiner, A ;
Yekutieli, D ;
Benjamini, Y .
BIOINFORMATICS, 2003, 19 (03) :368-375
[34]   The combined effect of drought stress and heat shock on gene expression in tobacco [J].
Rizhsky, L ;
Liang, HJ ;
Mittler, R .
PLANT PHYSIOLOGY, 2002, 130 (03) :1143-1151
[35]   The genome sequence and structure of rice chromosome 1 [J].
Sasaki, T ;
Matsumoto, T ;
Yamamoto, K ;
Sakata, K ;
Baba, T ;
Katayose, Y ;
Wu, JZ ;
Niimura, Y ;
Cheng, ZK ;
Nagamura, Y ;
Antonio, BA ;
Kanamori, H ;
Hosokawa, S ;
Masukawa, M ;
Arikawa, K ;
Chiden, Y ;
Hayashi, M ;
Okamoto, M ;
Ando, T ;
Aoki, H ;
Arita, K ;
Hamada, M ;
Harada, C ;
Hijishita, S ;
Honda, M ;
Ichikawa, Y ;
Idonuma, A ;
Iijima, M ;
Ikeno, M ;
Ito, S ;
Ito, T ;
Ito, Y ;
Ito, Y ;
Iwabuchi, A ;
Kamiya, K ;
Karasawa, W ;
Katagiri, S ;
Kikuta, A ;
Kobayashi, N ;
Kono, I ;
Machita, K ;
Maehara, T ;
Mizuno, H ;
Mizubayashi, T ;
Mukai, Y ;
Nagasaki, H ;
Nakashima, M ;
Nakama, Y ;
Nakamichi, Y ;
Nakamura, M .
NATURE, 2002, 420 (6913) :312-316
[36]   ACTCAT, a novel cis-acting element for proline- and hypoosmolarity-responsive expression of the ProDH gene encoding proline dehydrogenase in Arabidopsis [J].
Satoh, R ;
Nakashima, K ;
Seki, M ;
Shinozaki, K ;
Yamaguchi-Shinozaki, K .
PLANT PHYSIOLOGY, 2002, 130 (02) :709-719
[37]   RIKEN Arabidopsis full-length (RAFL) cDNA and its applications for expression profiling under abiotic stress conditions [J].
Seki, M ;
Satou, M ;
Sakurai, T ;
Akiyama, K ;
Iida, K ;
Ishida, J ;
Nakajima, M ;
Enju, A ;
Narusaka, M ;
Fujita, M ;
Oono, Y ;
Kamei, A ;
Yamaguchi-Shinozaki, K ;
Shinozaki, K .
JOURNAL OF EXPERIMENTAL BOTANY, 2004, 55 (395) :213-223
[38]   Monitoring the expression profiles of 7000 Arabidopsis genes under drought, cold and high-salinity stresses using a full-length cDNA microarray [J].
Seki, M ;
Narusaka, M ;
Ishida, J ;
Nanjo, T ;
Fujita, M ;
Oono, Y ;
Kamiya, A ;
Nakajima, M ;
Enju, A ;
Sakurai, T ;
Satou, M ;
Akiyama, K ;
Taji, T ;
Yamaguchi-Shinozaki, K ;
Carninci, P ;
Kawai, J ;
Hayashizaki, Y ;
Shinozaki, K .
PLANT JOURNAL, 2002, 31 (03) :279-292
[39]   Molecular responses to drought, salinity and frost: common and different paths for plant protection [J].
Seki, M ;
Kamei, A ;
Yamaguchi-Shinozaki, K ;
Shinozaki, K .
CURRENT OPINION IN BIOTECHNOLOGY, 2003, 14 (02) :194-199
[40]   Monitoring the expression pattern of 1300 Arabidopsis genes under drought and cold stresses by using a full-length cDNA microarray [J].
Seki, M ;
Narusaka, M ;
Abe, H ;
Kasuga, M ;
Yamaguchi-Shinozaki, K ;
Carninci, P ;
Hayashizaki, Y ;
Shinozaki, K .
PLANT CELL, 2001, 13 (01) :61-72