Downstream components of the calmodulin signaling pathway in the rice salt stress response revealed by transcriptome profiling and target identification

被引:73
作者
Yuenyong, Worawat [1 ]
Chinpongpanich, Aumnart [1 ]
Comai, Luca [2 ,3 ]
Chadchawan, Supachitra [4 ,5 ]
Buaboocha, Teerapong [1 ,4 ,5 ]
机构
[1] Chulalongkorn Univ, Dept Biochem, Fac Sci, Bangkok, Thailand
[2] Univ Calif Davis, Dept Plant Biol, Davis, CA 79561 USA
[3] Univ Calif Davis, Genome Ctr, Davis, CA 79561 USA
[4] Chulalongkorn Univ, Dept Bot, Ctr Excellent Environm & Plant Physiol, Fac Sci, Bangkok, Thailand
[5] Chulalongkorn Univ, Omics Sci & Bioinformat Ctr, Fac Sci, Bangkok, Thailand
关键词
Calmodulin; CaM; Rice; Salt stress; Transcriptome; ACTIVATED PROTEIN-KINASE; ORYZA-SATIVA L; KINESIN-RELATED PROTEIN; CHLOROPHYLL FLUORESCENCE; GLUTAMATE-DECARBOXYLASE; DIFFERENTIAL EXPRESSION; HETEROTROPHIC TISSUES; BINDING PROTEINS; SUCROSE SYNTHASE; SALINITY STRESS;
D O I
10.1186/s12870-018-1538-4
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Background: Calmodulin (CaM) is an important calcium sensor protein that transduces Ca2+ signals in plant stress signaling pathways. A previous study has revealed that transgenic rice over-expressing the calmodulin gene OsCam1-1 (LOC_Os03g20370) is more tolerant to salt stress than wild type. To elucidate the role of OsCam1-1 in the salt stress response mechanism, downstream components of the OsCam1-1-mediated response were identified and investigated by transcriptome profiling and target identification. Results: Transcriptome profiling of transgenic "Khao Dawk Mali 105' rice over-expressing OsCam 1-1 and wild type rice showed that overexpression of OsCam1-1 widely affected the expression of genes involved in several cellular processes under salt stress, including signaling, hormone-mediated regulation, transcription, lipid metabolism, carbohydrate metabolism, secondary metabolism, photosynthesis, glycolysis, tricarboxylic acid (TCA) cycle and glyoxylate cycle. Under salt stress, the photosynthesis rate in the transgenic rice was slightly lower than in wild type, while sucrose and starch contents were higher, suggesting that energy and carbon metabolism were affected by OsCam 1-1 overexpression. Additionally, four known and six novel CaM-interacting proteins were identified by cDNA expression library screening with the recombinant OsCaM1. GO terms enriched in their associated proteins that matched those of the differentially expressed genes affected by OsCam 1-1 overexpression revealed various downstream cellular processes that could potentially be regulated by OsCaM1 through their actions. Conclusions: The diverse cellular processes affected by OsCam 1-1 overexpression and possessed by the identified CaM1-interacting proteins corroborate the notion that CaM signal transduction pathways compose a complex network of downstream components involved in several cellular processes. These findings suggest that under salt stress, CaM activity elevates metabolic enzymes involved in central energy pathways, which promote or at least maintain the production of energy under the limitation of photosynthesis.
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页数:23
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