College of Horticulture, Qingdao Agricultural University, Qingdao, 266109, Shandong, China.
College of Life Science, Qingdao Agricultural University, Qingdao, 266109, Shandong, China.
Plant Cell Rep. 2024 Jan 17;43(2):39. doi: 10.1007/s00299-023-03128-0.
Desiccation-tolerant process of xerophytic moss Pogonatum inflexum were identified through de novo transcriptome assembly , morphological structure and physiology analysis. Pogonatum inflexum (Lindb.) Lac. is a typical xerophytic moss and have been widely used in gardening and micro-landscape. However, the mechanisms underlying desiccation tolerance are still unclear. In this study, morphological, physiological and trancriptomic analyses of P. inflexum to tolerate desiccation were carried out. Our results indicate that P. inflexum increase osmoregulation substances, shut down photosynthesis, and alter the content of membrane lipid fatty acids in response to desiccation, and the genes involved in these biological processes were changes in expression after desiccation. 12 h is the threshold for P. inflexum to tolerate desiccation and its photosynthesis has not been damaged within 12 h of desiccation and can still recover after rewater. We also proved that the gametocyte of P. inflexum has the ability to absorb and transport water, and contains lignin-synthesis genes in response to tolerant desiccation. Our findings not only explain the mechanisms of P. inflexum during desiccation, but also provide some attractive candidate genes for genetic breeding.
通过从头转录组组装、形态结构和生理学分析,确定了耐旱性的藓类植物匐枝毛口藓的干燥耐受过程。匐枝毛口藓(Lindb.)Lac. 是一种典型的耐旱藓类植物,广泛应用于园艺和微景观。然而,其耐旱的机制仍不清楚。本研究对匐枝毛口藓的干燥耐受进行了形态、生理和转录组分析。结果表明,匐枝毛口藓增加渗透调节物质,关闭光合作用,并改变膜脂脂肪酸的含量以适应干燥,这些生物过程涉及的基因在干燥后表达发生变化。12h 是匐枝毛口藓耐受干燥的阈值,在干燥 12h 内其光合作用没有受损,重新浇水后仍能恢复。我们还证明,匐枝毛口藓的配子体具有吸收和运输水分的能力,并含有木质素合成基因以应对耐旱性。我们的研究结果不仅解释了匐枝毛口藓在干燥过程中的机制,还为遗传育种提供了一些有吸引力的候选基因。