Li Haochen, Li Jiale, Li Xinchu, Li Jialin, Chen Dan, Zhang Yangxin, Yu Qiaoming, Yang Fan, Liu Yunxiao, Dai Weidong, Sun Yaqiang, Li Pengmin, Schranz M Eric, Ma Fengwang, Zhao Tao
State Key Laboratory for Crop Stress Resistance and High-Efficiency Production/Shaanxi Key Laboratory of Apple, College of Horticulture, Northwest A&F University, Yangling, 712100, China.
Tea Research Institute, Chinese Academy of Agricultural Sciences, Hangzhou, Zhejiang, 310008, China.
New Phytol. 2025 Mar;245(5):2150-2169. doi: 10.1111/nph.20357. Epub 2024 Dec 27.
The clustered distribution of genes involved in metabolic pathways within the plant genome has garnered significant attention from researchers. By comparing and analyzing changes in the flanking regions of metabolic genes across a diverse array of species, we can enhance our understanding of the formation and distribution of biosynthetic gene clusters (BGCs). In this study, we have designed a workflow that uncovers and assesses conserved positional relationships between genes in various species by using synteny neighborhood networks (SNN). This workflow is then applied to the analysis of flanking genes associated with oxidosqualene cyclases (OSCs). The method allows for the recognition and comparison of homologous blocks with unique flanking genes accompanying different subfamilies of OSCs. The examination of the flanking genes of OSCs in 122 plant species revealed multiple genes with conserved positional relationships with OSCs in angiosperms. Specifically, the earliest adjacency of OSC genes and CYP716 genes first appeared in basal eudicots, and the nonrandom occurrence of CYP716 genes in the flanking region of OSC persists across different lineages of eudicots. Our study showed the substitution of genes in the flanking region of the OSC varies across different plant lineages, and our approach facilitates the investigation of flanking gene rearrangements in the formation of OSC-related BGCs.
植物基因组中参与代谢途径的基因的成簇分布引起了研究人员的极大关注。通过比较和分析不同物种间代谢基因侧翼区域的变化,我们可以加深对生物合成基因簇(BGCs)形成和分布的理解。在本研究中,我们设计了一种工作流程,通过使用共线性邻域网络(SNN)来揭示和评估不同物种中基因之间保守的位置关系。然后将该工作流程应用于分析与氧化鲨烯环化酶(OSC)相关的侧翼基因。该方法能够识别和比较具有独特侧翼基因的同源块,这些侧翼基因伴随着OSC的不同亚家族。对122种植物物种中OSC侧翼基因的研究揭示了在被子植物中多个与OSC具有保守位置关系的基因。具体而言,OSC基因与CYP716基因最早的邻接关系首次出现在基部真双子叶植物中,并且CYP716基因在OSC侧翼区域的非随机出现贯穿于真双子叶植物的不同谱系。我们的研究表明,OSC侧翼区域的基因替换在不同植物谱系中有所不同,并且我们的方法有助于研究与OSC相关的BGCs形成过程中的侧翼基因重排。