The Boyce Thompson Institute, Cornell University, Ithaca, NY, 14853, USA.
Department of Biology, Utah State University, Logan, UT, 84322, USA.
New Phytol. 2024 Aug;243(3):981-996. doi: 10.1111/nph.19620. Epub 2024 Feb 28.
Water scarcity, resulting from climate change, poses a significant threat to ecosystems. Syntrichia ruralis, a dryland desiccation-tolerant moss, provides valuable insights into survival of water-limited conditions. We sequenced the genome of S. ruralis, conducted transcriptomic analyses, and performed comparative genomic and transcriptomic analyses with existing genomes and transcriptomes, including with the close relative S. caninervis. We took a genetic approach to characterize the role of an S. ruralis transcription factor, identified in transcriptomic analyses, in Arabidopsis thaliana. The genome was assembled into 12 chromosomes encompassing 21 169 protein-coding genes. Comparative analysis revealed copy number and transcript abundance differences in known desiccation-associated gene families, and highlighted genome-level variation among species that may reflect adaptation to different habitats. A significant number of abscisic acid (ABA)-responsive genes were found to be negatively regulated by a MYB transcription factor (MYB55) that was upstream of the S. ruralis ortholog of ABA-insensitive 3 (ABI3). We determined that this conserved MYB transcription factor, uncharacterized in Arabidopsis, acts as a negative regulator of an ABA-dependent stress response in Arabidopsis. The new genomic resources from this emerging model moss offer novel insights into how plants regulate their responses to water deprivation.
由于气候变化导致的水资源短缺对生态系统构成了重大威胁。干旱耐受藓类植物 S. ruralis 为研究限水条件下的生存提供了有价值的见解。我们对 S. ruralis 进行了基因组测序、转录组分析,并与现有基因组和转录组进行了比较基因组和转录组分析,包括与近亲 S. caninervis。我们采用遗传方法来表征在转录组分析中鉴定出的 S. ruralis 转录因子在拟南芥中的作用。该基因组被组装成 12 条染色体,包含 21069 个编码蛋白的基因。比较分析显示,已知的干旱相关基因家族在拷贝数和转录丰度上存在差异,并且在物种间存在基因组水平的变异,这可能反映了对不同生境的适应。发现大量的脱落酸 (ABA) 响应基因受到一个 MYB 转录因子 (MYB55) 的负调控,该转录因子位于 S. ruralis 的 ABA 不敏感 3 (ABI3) 同源物的上游。我们确定,这种保守的 MYB 转录因子在拟南芥中尚未被描述,它作为拟南芥中 ABA 依赖的应激反应的负调节剂发挥作用。这种新兴模式藓类植物的新基因组资源为研究植物如何调节对水分缺失的反应提供了新的见解。