Wang Xiaojuan, Wu Jianghong, Yang Zhongren, Zhang Fenglan, Sun Hailian, Qiu Xiao, Yi Fengyan, Yang Ding, Shi Fengling
ChiFeng University, Agricultural Science Research Institute; Grass resource genetic breeding, China.
Inner Mongolia University for Nationalities, College of Animal Science and Technology, China.
AIMS Genet. 2019 Jun 5;6(2):17-35. doi: 10.3934/genet.2019.2.17. eCollection 2019.
is a good forage plant, which has important economic and ecological value in arid and semi-arid regions of China. Drought is one of the main factors affecting its productivity. At present, there are few studies on the mechanism of drought resistance. In order to reveal the changes of physiological and biochemical indexes, stomatal structure and gene expression profiles of under drought treatment, the classical determination method and high-throughput Illumina Hiseq sequencing platform were applied to the control group (CK) and drought treatment group of . The results showed that under the condition of moderate to mild drought stress, the SOD activity reached the maximum value of 350.68 U/g min on the 5th day of stress, and under the condition of severe drought stress, the SOD activity reached the maximum on the 2nd day of stress. The accumulation of Proline remained at a high level on the 5th day of stress, and there was at least one epidermal cell interval between the two adult stomatal of the leaf epidermis, so that the evaporation shell of each stomatal did not overlap, it ensures the efficient gas exchange of the stomatal, indicating that the has strong drought resistance. A total of 1,177.46 M reads were obtained by sequencing, with a total of 352.25 Gbp data and Q30 of 85%. In the differential gene annotation to the biological process (BP), a total of 261 GO terms were enriched in the up-regulated genes, and a total of 231 GO terms were enriched in the down-regulated genes. The differentially expressed genes (DEGs) were obtained in 27 KEGG metabolic pathways, which laid a foundation for revealing the molecular mechanism of drought tolerance.
是一种优良的饲用植物,在中国干旱和半干旱地区具有重要的经济和生态价值。干旱是影响其生产力的主要因素之一。目前,关于其抗旱机制的研究较少。为了揭示干旱处理下的生理生化指标、气孔结构和基因表达谱的变化,将经典测定方法和高通量Illumina Hiseq测序平台应用于的对照组(CK)和干旱处理组。结果表明,在中度至轻度干旱胁迫条件下,胁迫第5天超氧化物歧化酶(SOD)活性达到最大值350.68 U/g min,在重度干旱胁迫条件下,胁迫第2天SOD活性达到最大值。脯氨酸在胁迫第5天积累量维持在较高水平,叶片表皮两个成熟气孔之间至少有一个表皮细胞间隔,使每个气孔的蒸发鞘不重叠,保证了气孔的高效气体交换,表明具有较强的抗旱性。测序共获得1177.46 M reads,数据总量为352.25 Gbp,Q30为85%。在差异基因注释到生物学过程(BP)中,上调基因共富集261个GO词条,下调基因共富集231个GO词条。在27条KEGG代谢途径中获得了差异表达基因(DEG),为揭示耐旱分子机制奠定了基础。