Institute of Horticultural Biotechnology, Fujian Agriculture and Forestry University, Fuzhou, 350002, China.
BMC Genomics. 2023 Mar 21;24(1):138. doi: 10.1186/s12864-023-09201-y.
Longan (Dimocarpus longan Lour.) is an economically important subtropical fruit tree. Its fruit quality and yield are affected by embryo development. As a plant seed germination marker gene, the germin-like protein (GLP) gene plays an important role in embryo development. However, the mechanism underlying the role of the GLP gene in somatic embryos is still unclear. Therefore, we conducted genome-wide identification of the longan GLP (DlGLP) gene and preliminarily verified the function of DlGLP1-5-1. Thirty-five genes were identified as longan GLP genes and divided into 8 subfamilies. Based on transcriptome data and qRT‒PCR results, DlGLP genes exhibited the highest expression levels in the root, and the expression of most DlGLPs was upregulated during the early somatic embryogenesis (SE) in longan and responded to high temperature stress and 2,4-D treatment; eight DlGLP genes were upregulated under MeJA treatment, and four of them were downregulated under ABA treatment. Subcellular localization showed that DlGLP5-8-2 and DlGLP1-5-1 were located in the cytoplasm and extracellular stroma/chloroplast, respectively. Overexpression of DIGLP1-5-1 in the globular embryos (GEs) of longan promoted the accumulation of lignin and decreased the HO content by regulating the activities of ROS-related enzymes. The results provide a reference for the functional analysis of DlGLPs and related research on improving lignin accumulation in the agricultural industry through genetic engineering.
龙眼(Dimocarpus longan Lour.)是一种经济价值很高的亚热带果树。其果实品质和产量受胚发育的影响。作为植物种子萌发标记基因,萌发相关蛋白(GLP)基因在胚胎发育中起重要作用。然而,GLP 基因在体细胞胚中的作用机制尚不清楚。因此,我们对龙眼 GLP(DlGLP)基因进行了全基因组鉴定,并初步验证了 DlGLP1-5-1 的功能。鉴定出 35 个龙眼 GLP 基因,并分为 8 个亚家族。基于转录组数据和 qRT-PCR 结果,DlGLP 基因在根中表达水平最高,大多数 DlGLP 在龙眼早期体细胞胚胎发生(SE)过程中表达上调,并对高温胁迫和 2,4-D 处理有响应;8 个 DlGLP 基因在 MeJA 处理下上调,其中 4 个在 ABA 处理下下调。亚细胞定位表明,DlGLP5-8-2 和 DlGLP1-5-1 分别位于细胞质和细胞外基质/叶绿体中。过表达龙眼 DlGLP1-5-1 在球形胚(GEs)中促进木质素积累,并通过调节 ROS 相关酶的活性降低 HO 含量。该结果为 DlGLP 功能分析提供了参考,并为通过遗传工程提高农业领域木质素积累提供了相关研究思路。