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Transcriptomic identification of salt-related genes and de novo assembly in common buckwheat (F. esculentum)
- Source :
- Plant physiology and biochemistry : PPB. 127
- Publication Year :
- 2017
-
Abstract
- Common buckwheat (F. esculentum), annually herbaceous crop, is prevalent in people's daily life with the increasing development of economics. Compared with wheat, it is highly praised with high content of rutin and flavonoid. Common buckwheat is recognized as healthy food with good taste, and the product price of which such as noodles, flour, bread and so on are higher than wheat, and the seeds of which are bigger than that of tartary buckwheat, so if common buckwheat are planted more widely, people will spend less money on this healthy and delicious food. However, soil salinity has been a giant problem for agriculture production. The cultivation of salt tolerant crop varieties is an effective way to make full use of saline alkali land, and the highest salinity that the common buckwheat can sow is at 6.0%, so we chose 100 mM as the concentration of NaCl for treatment. Then we conducted transcriptome comparison between control and treatment groups. Potential regulatory genes related salt stress in common buckwheat were identified. A total of 29.36 million clean reads were produced via an illumina sequencing approach. We de novo assembled these reads into a transcriptome dataset containing 43,772 unigenes with N50 length of 1778 bp. A total of 26,672 unigenes could be found matches in public databases. GO, KEGG and Swiss-Prot classification suggested the enrichment of these unigenes in 47 sub-categories, 25 KOG and 129 pathways, respectively. We got 385 differentially expressed genes (DEGs) after comparing the transcriptome data between salt treatment and control groups. There are some genes encoded for responsing to stimulus, cell killing, metabolic process, signaling, multi-organism process, growth and cellular process might be relevant to salt stress in common buckwheat, which will provide a valuable references for the study on mechanism of salt tolerance and will be used as a genetic information for cultivating strong salt tolerant common buckwheat varieties in the future.
- Subjects :
- 0301 basic medicine
Soil salinity
Physiology
Sequence assembly
Plant Science
Biology
Sodium Chloride
Genes, Plant
Transcriptome
03 medical and health sciences
Rutin
chemistry.chemical_compound
Gene Expression Regulation, Plant
Genetics
Illumina dye sequencing
Gene Expression Profiling
food and beverages
Salt Tolerance
Herbaceous plant
Salinity
Horticulture
030104 developmental biology
Cell killing
chemistry
Fagopyrum
Subjects
Details
- ISSN :
- 18732690
- Volume :
- 127
- Database :
- OpenAIRE
- Journal :
- Plant physiology and biochemistry : PPB
- Accession number :
- edsair.doi.dedup.....bdf4bebdc66ac9408bab020ec8ec4318