Qin Zuodong, Chen Jishuang, Jin Leilei, Duns Gregory J, Ouyang Pingkai
J Nanosci Nanotechnol. 2015 Feb;15(2):1554-61. doi: 10.1166/jnn.2015.9004.
Coastal marsh habitats are impacted by many factors or disturbances, including habitat destruction, pollution, and the introduction of invasive species. Spartina alterniflora (S. alterniflora) is an important invasive species, accounting for a significant proportion of the invasive plants spread around the world. Salt stress is a major environmental stress factor, which affects plant growth and development. Little information is available regarding S. alterniflora microRNAs (miRNAs) which play important regulatory roles in plant growth and development. In order to detect S. alterniflora miRNAs and determine any expression differences between S. alterniflora plants cultivated on ordinary soils from the greenhouse and salty soils from Dafeng, in Jiangsu province of China, we carried out the detection and quantification of S. alterniflora miRNAs by microarray. Among the 81 miRNAs identified as significantly down- or up-regulated under the salt stress, 21 of the miRNAs represent 8 miRNA gene families in S. alterniflora. We found that miR168, miR399, miR395, miR393, miR171, miR396, miR169, and miR164 were down-regulated under salinity stress, and 60 of the miRNAs were up-regulated, which were revealed to be induced by salt stress in plants. The identification of differentially expressed novel plant miRNAs and their target genes, and the analysis of expression, provide molecular evidence for the possible involvement of miRNAs in the process of salt response and/or salt tolerance in S. alterniflora.
沿海湿地栖息地受到许多因素或干扰的影响,包括栖息地破坏、污染和外来入侵物种的引入。互花米草是一种重要的入侵物种,在全球扩散的入侵植物中占很大比例。盐胁迫是一种主要的环境胁迫因素,影响植物的生长发育。关于在植物生长发育中起重要调控作用的互花米草微小RNA(miRNA)的信息很少。为了检测互花米草miRNA,并确定在中国江苏省大丰市温室普通土壤和盐土上种植的互花米草之间的表达差异,我们通过微阵列对互花米草miRNA进行了检测和定量分析。在81个被鉴定为在盐胁迫下显著下调或上调的miRNA中,有21个miRNA代表互花米草中的8个miRNA基因家族。我们发现,miR168、miR399、miR395、miR393、miR171、miR396、miR169和miR164在盐胁迫下下调,60个miRNA上调,这些miRNA被证明是由植物盐胁迫诱导的。鉴定差异表达的新型植物miRNA及其靶基因,并分析其表达,为miRNA可能参与互花米草盐响应和/或耐盐过程提供了分子证据。