Yang Chengquan, Liu Tao, Bai Fuxi, Wang Nannan, Pan Zhiyong, Yan Xiang, Peng ShuAng
College of Horticulture and Forestry Sciences, Huazhong Agricultural University, Wuhan, 430070, China.
Key Laboratory of Horticultural Plant Biology, Ministry of Education, Wuhan, 430070, China.
Mol Genet Genomics. 2015 Oct;290(5):1639-57. doi: 10.1007/s00438-015-1024-8. Epub 2015 Mar 10.
Corky split vein can develop under long-term boron deficient conditions in Citrus sinensis L. Osbeck cv. Newhall. This symptom only occurs in the upper rather than the lower epidermis of old leaves. Our previous study demonstrated that vascular hypertrophy was involved in the symptoms, and the 3rd developmental stage of corky split vein (BD3) was the critical stage for phenotype formation. Here, we performed an intensive study on the BD3 vein and its control sample (CK3 vein). A lignin test demonstrated that the lignin content in BD3 vein was approximately 1.7 times more than the CK3 vein. Anatomical investigation of the corky split vein indicated that the upper epidermis was destroyed by overgrowing vascular cells, and the increased lignin may contribute to vascular cell differentiation and wounding-induced lignification. In a subsequent small RNA sequencing of the BD3 and CK3 veins, 99 known miRNAs and 22 novel miRNAs were identified. Comparative profiling of these miRNAs demonstrated that the 57 known miRNAs and all novel miRNAs exhibited significant expression differences between the two small RNAs libraries of the BD3 and CK3 veins. Associated with our corresponding digital gene expression data, we propose that the decreased expression of two miRNAs, csi-miR156b and csi-miR164, which leads to the up-regulation of their target genes, SPLs (csi-miR156b-targeted) and CUC2 (csi-miR164-targeted), may promote vascular cell division and orderless stage transition in old leaves.
在脐橙(Citrus sinensis L. Osbeck cv. Newhall)长期缺硼的条件下会出现木栓化裂脉。这种症状仅出现在老叶的上表皮而非下表皮。我们之前的研究表明,维管束肥大与这些症状有关,木栓化裂脉的第3个发育阶段(BD3)是表型形成的关键阶段。在此,我们对BD3叶脉及其对照样本(CK3叶脉)进行了深入研究。木质素检测表明,BD3叶脉中的木质素含量约为CK3叶脉的1.7倍。对木栓化裂脉的解剖学研究表明,上表皮被过度生长的维管束细胞破坏,增加的木质素可能有助于维管束细胞分化和创伤诱导的木质化。在随后对BD3和CK3叶脉进行的小RNA测序中,鉴定出99个已知的miRNA和22个新的miRNA。对这些miRNA的比较分析表明,57个已知的miRNA和所有新的miRNA在BD3和CK3叶脉的两个小RNA文库之间表现出显著的表达差异。结合我们相应的数字基因表达数据,我们提出,两种miRNA,即csi-miR156b和csi-miR164的表达降低,导致其靶基因SPLs(csi-miR156b靶向)和CUC2(csi-miR164靶向)上调,可能促进老叶中维管束细胞分裂和无序的阶段转变。