4.6 Article

Genome-Wide Analysis of the DREB Subfamily in Saccharum spontaneum Reveals Their Functional Divergence During Cold and Drought Stresses

期刊

FRONTIERS IN GENETICS
卷 10, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fgene.2019.01326

关键词

DREB; transcription factor; phylogenetic tree; abiotic stress response; sugarcane

资金

  1. National Natural Science Foundation of China [31660356, 31360312, 31701363]
  2. Guangxi Science and Technology Base and Talents Special Project [GuikeAD17195100]
  3. Fund for Guangxi Innovation Teams of Modern Agriculture Technology [nycytxgxcxtd-03-01]
  4. Natural Science Foundation of Guangxi Province [2015GXNSFBA139011]
  5. Fund Science and Technology Development of Guangxi Academy of Agricultural Sciences [Guinongke2017JZ19, Guinongke2016JM06]
  6. Development and Regulation of Economically Important Traits in Tropical Crops [2018YFD1000500]

向作者/读者索取更多资源

Drought and cold stresses are the main environmental factors that affect the yield of sugarcane, and DREB genes play very important roles in tolerance to drought, cold, and other environmental stresses. In this study, bioinformatics analysis was performed to characterize Saccharum spontaneum SsDREB genes. RNA sequencing (RNA-seq) was used to detect the expression profiles of SsDREBs induced by cold and drought stresses. According to our results, there are 110 SsDREB subfamily proteins in S. spontaneum, which can be classified into six groups; 106 of these genes are distributed among 29 chromosomes. Inter- and intraspecies synteny analyses suggested that all DREB groups have undergone gene duplication, highlighting the polyploid events that played an important role in the expansion of the DREB subfamily. Furthermore, RNA-seq results showed that 45 SsDREBs were up- or downregulated under cold stress; 35 of them were found to be involved in responding to drought stress. According to protein-protein interaction analysis, SsDREB100, SsDREB102, and SsDREB105 play key roles during the response to cold stress. These results reveal that functional divergence exists between collinear homologous genes or among common origin genes in the DREB subfamily of S. spontaneum. This study presents a comprehensive analysis and systematic understanding of the precise mechanism of SsDREBs in response to abiotic stress and will lead to improvements in sugarcane.

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