Transcriptional profiling in response to terminal drought stress reveals differential responses along the wheat genome

被引:112
作者
Aprile, Alessio [1 ,2 ]
Mastrangelo, Anna M. [3 ]
De Leonardis, Anna M. [3 ]
Galiba, Gabor [4 ]
Roncaglia, Enrica [5 ]
Ferrari, Francesco [5 ,6 ]
De Bellis, Luigi [2 ]
Turchi, Luana [7 ]
Giuliano, Giovanni [7 ]
Cattivelli, Luigi [1 ,3 ]
机构
[1] CRA Genom Res Ctr, I-29017 Fiorenzuola Darda, Piacenza, Italy
[2] Univ Salento, Dept Sci & Biol & Environm Technol, I-73100 Lecce, Italy
[3] CRA Cereal Res Ctr, Foggia, Italy
[4] Hungarian Acad Sci, Agr Res Inst, H-2462 Martonvasar, Hungary
[5] Univ Modena & Reggio Emilia, Dept Biomed Sci, I-41100 Modena, Italy
[6] Univ Padua, Dept Biol, I-35121 Padua, Italy
[7] ENEA, Casaccia Res Ctr, I-00123 Rome, Italy
来源
BMC GENOMICS | 2009年 / 10卷
关键词
ABSCISIC-ACID BIOSYNTHESIS; HIGH-SALINITY STRESSES; GENE-EXPRESSION; ABIOTIC STRESS; MICROARRAY ANALYSIS; LEAF EXPANSION; COLD-RESPONSE; CHROMOSOME; 5A; ARABIDOPSIS; TOLERANCE;
D O I
10.1186/1471-2164-10-279
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Background: Water stress during grain filling has a marked effect on grain yield, leading to a reduced endosperm cell number and thus sink capacity to accumulate dry matter. The bread wheat cultivar Chinese Spring (CS), a Chinese Spring terminal deletion line (CS_5AL-10) and the durum wheat cultivar Creso were subjected to transcriptional profiling after exposure to mild and severe drought stress at the grain filling stage to find evidences of differential stress responses associated to different wheat genome regions. Results: The transcriptome analysis of Creso, CS and its deletion line revealed 8,552 non redundant probe sets with different expression levels, mainly due to the comparisons between the two species. The drought treatments modified the expression of 3,056 probe sets. Besides a set of genes showing a similar drought response in Creso and CS, cluster analysis revealed several drought response features that can be associated to the different genomic structure of Creso, CS and CS_5AL-10. Some drought-related genes were expressed at lower level (or not expressed) in Creso (which lacks the D genome) or in the CS_5AL-10 deletion line compared to CS. The chromosome location of a set of these genes was confirmed by PCR-based mapping on the D genome (or the 5AL-10 region). Many clusters were characterized by different level of expression in Creso, CS and CS_AL-10, suggesting that the different genome organization of the three genotypes may affect plant adaptation to stress. Clusters with similar expression trend were grouped and functional classified to mine the biological mean of their activation or repression. Genes involved in ABA, proline, glycine-betaine and sorbitol pathways were found up-regulated by drought stress. Furthermore, the enhanced expression of a set of transposons and retrotransposons was detected in CS_5AL-10. Conclusion: Bread and durum wheat genotypes were characterized by a different physiological reaction to water stress and by a substantially different molecular response. The genome organization accounted for differences in the expression level of hundreds of genes located on the D genome or controlled by regulators located on the D genome. When a genomic stress (deletion of a chromosomal region) was combined with low water availability, a molecular response based on the activation of transposons and retrotransposons was observed.
引用
收藏
页数:18
相关论文
共 77 条
[51]   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
[52]   AN ALDOSE REDUCTASE HOMOLOGOUS GENE FROM BARLEY - REGULATION AND FUNCTION [J].
RONCARATI, R ;
SALAMINI, F ;
BARTELS, D .
PLANT JOURNAL, 1995, 7 (05) :809-822
[53]   The FunCat, a functional annotation scheme for systematic classification of proteins from whole genomes [J].
Ruepp, A ;
Zollner, A ;
Maier, D ;
Albermann, K ;
Hani, J ;
Mokrejs, M ;
Tetko, I ;
Güldener, U ;
Mannhaupt, G ;
Münsterkötter, M ;
Mewes, HW .
NUCLEIC ACIDS RESEARCH, 2004, 32 (18) :5539-5545
[54]   Functional analysis of an Arabidopsis transcription factor, DREB2A, involved in drought-responsive gene expression [J].
Sakuma, Y ;
Maruyama, K ;
Osakabe, Y ;
Qin, F ;
Seki, M ;
Shinozaki, K ;
Yamaguchi-Shinozaki, K .
PLANT CELL, 2006, 18 (05) :1292-1309
[55]   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
[56]   Regulatory metabolic networks in drought stress responses [J].
Seki, Motoaki ;
Umezawa, Taishi ;
Urano, Kaoru ;
Shinozaki, Kazuo .
CURRENT OPINION IN PLANT BIOLOGY, 2007, 10 (03) :296-302
[57]   The Arabidopsis aldehyde oxidase 3 (AA03) gene product catalyzes the final step in abscisic acid biosynthesis in leaves [J].
Seo, M ;
Peeters, AJM ;
Koiwai, H ;
Oritani, T ;
Marion-Poll, A ;
Zeevaart, JAD ;
Koornneef, M ;
Kamiya, Y ;
Koshiba, T .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2000, 97 (23) :12908-12913
[58]   Complex regulation of ABA biosynthesis in plants [J].
Seo, M ;
Koshiba, T .
TRENDS IN PLANT SCIENCE, 2002, 7 (01) :41-48
[59]   Gene networks involved in drought stress response and tolerance [J].
Shinozaki, Kazuo ;
Yamaguchi-Shinozaki, Kazuko .
JOURNAL OF EXPERIMENTAL BOTANY, 2007, 58 (02) :221-227
[60]   Deletions of chromosome 5A affect free amino acid and polyamine levels in wheat subjected to salt stress [J].
Simon-Sarkadi, Livia ;
Kocsy, Gabor ;
Sebestyen, Zoltan ;
Galiba, Gabor .
ENVIRONMENTAL AND EXPERIMENTAL BOTANY, 2007, 60 (02) :193-201