Ma Linhao, Wei Aimin, Liu Ce, Liu Nan, Han Yike, Chen Zhengwu, Wang Ningning, Du Shengli
College of Life Science, Nankai University, Tianjin 300071, China.
Cucumber Research Institute, Tianjin Academy of Agricultural Sciences, Tianjin 300192, China.
Genes (Basel). 2024 Nov 24;15(12):1505. doi: 10.3390/genes15121505.
Cucumber ( L.) is a crucial vegetable crop, requiring significant nitrogen fertilizer inputs. However, excessive nitrogen application not only impairs growth but also poses severe environmental risks. Thus, enhancing nitrogen use efficiency (NUE) in cucumber is imperative. For the identification of genes associated with NUE in cucumber, roots of high NUE and low NUE lines were analyzed under high nitrogen conditions. Using transcriptome sequencing through WGCNA, a total of 15,180 genes were categorized into 35 co-expression modules, with 5 modules being highly correlated with NUE. Based on differential expression within the five modules and the results of GO and KEGG enrichment analyses, 25 genes were identified as potentially related to NUE. Among these, (GLR22), (GLR35), (NRT1.1), and (UPS2) were homologous to genes in known to directly participate in NUE related process. These four genes were chosen as key genes for further analysis. qRT-PCR analysis revealed that and were more active during the early stages of the high nitrogen treatment in the high NUE line. Conversely, and were more active in the low NUE line. Using transcriptomic analysis, a frameshift INDEL mutation was observed in in the low NUE line, which impacted the compactness of the protein structure, potentially altering its function. Analysis of protein interactions of these four key genes predicted some potential interaction networks. This research offers critical insights into the genetic factors influencing NUE in cucumber, presenting potential targets for genetic modification or breeding programs.
黄瓜(L.)是一种重要的蔬菜作物,需要大量施用氮肥。然而,过量施用氮肥不仅会损害生长,还会带来严重的环境风险。因此,提高黄瓜的氮素利用效率(NUE)势在必行。为了鉴定与黄瓜NUE相关的基因,在高氮条件下分析了高NUE和低NUE品系的根系。通过WGCNA进行转录组测序,共将15180个基因分为35个共表达模块,其中5个模块与NUE高度相关。基于这五个模块内的差异表达以及GO和KEGG富集分析结果,鉴定出25个基因可能与NUE相关。其中,(GLR22)、(GLR35)、(NRT1.1)和(UPS2)与已知直接参与NUE相关过程的基因同源。选择这四个基因作为进一步分析的关键基因。qRT-PCR分析表明,在高NUE品系的高氮处理早期,和更活跃。相反,在低NUE品系中更活跃。通过转录组分析,在低NUE品系的中观察到一个移码插入缺失突变,这影响了蛋白质结构的紧凑性,可能改变其功能。对这四个关键基因的蛋白质相互作用分析预测了一些潜在的相互作用网络。本研究为影响黄瓜NUE的遗传因素提供了重要见解,为基因改造或育种计划提供了潜在靶点。