Department of Biochemistry, Genetics and Microbiology, Forestry and Agricultural Biotechnology Institute (FABI), University of Pretoria, Pretoria, South Africa.
BMC Genomics. 2023 Jun 1;24(1):296. doi: 10.1186/s12864-023-09366-6.
Plant-parasitic nematodes (PPNs) that cause most damage include root-knot nematodes (RKNs) which are a major impediment to crop production. Root-knot nematodes, like other parasites, secrete proteins which are required for parasite proliferation and survival within the host during the infection process.
Here, we used various computational tools to predict and identify classically and non-classically secreted proteins encoded in the Meloidogyne javanica genome. Furthermore, functional annotation analysis was performed using various integrated bioinformatic tools to determine the biological significance of the predicted secretome. In total, 7,458 proteins were identified as secreted ones. A large percentage of this secretome is comprised of small proteins of ≤ 300 aa sequence length. Functional analyses showed that M. javanica secretome comprises cell wall degrading enzymes for facilitating nematode invasion, and migration by disintegrating the complex plant cell wall components. In addition, peptidases and peptidase inhibitors are an important category of M. javanica secretome involved in compatible host-nematode interactions.
This study identifies the putative secretome encoded in the M. javanica genome. Future experimental validation analyses can greatly benefit from this global analysis of M. javanica secretome. Equally, our analyses will advance knowledge of the interaction between plants and nematodes.
造成大多数损害的植物寄生线虫(PPNs)包括根结线虫(RKNs),这是作物生产的主要障碍。根结线虫与其他寄生虫一样,会分泌在感染过程中寄生虫增殖和在宿主内生存所需的蛋白质。
在这里,我们使用各种计算工具来预测和识别在爪哇根结线虫基因组中编码的经典和非经典分泌蛋白。此外,使用各种集成的生物信息学工具对功能注释分析进行了分析,以确定预测分泌组的生物学意义。总共鉴定出 7458 种分泌蛋白。该分泌组的很大一部分由≤300 aa 序列长度的小蛋白组成。功能分析表明,爪哇根结线虫的分泌组包含了细胞壁降解酶,通过分解复杂的植物细胞壁成分,促进线虫的入侵和迁移。此外,肽酶和肽酶抑制剂是参与相容的宿主-线虫相互作用的爪哇根结线虫分泌组的一个重要类别。
本研究鉴定了爪哇根结线虫基因组中编码的假定分泌组。未来的实验验证分析可以从爪哇根结线虫分泌组的全面分析中受益匪浅。同样,我们的分析将推进对植物与线虫相互作用的认识。