Suppr超能文献

结合靶向代谢物分析和转录组学揭示感染大豆胞囊线虫 HG1.2.3.5.7 的不亲和大豆品种 PI437654 的特定化学成分和相关基因。

Combining targeted metabolite analyses and transcriptomics to reveal the specific chemical composition and associated genes in the incompatible soybean variety PI437654 infected with soybean cyst nematode HG1.2.3.5.7.

机构信息

State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, 100193, China.

Zhengzhou Tobacco Research Institute of CNTC, Zhengzhou, Henan, China.

出版信息

BMC Plant Biol. 2021 May 14;21(1):217. doi: 10.1186/s12870-021-02998-4.

Abstract

BACKGROUND

Soybean cyst nematode, Heterodera glycines, is one of the most devastating pathogens of soybean and causes severe annual yield losses worldwide. Different soybean varieties exhibit different responses to H. glycines infection at various levels, such as the genomic, transcriptional, proteomic and metabolomic levels. However, there have not yet been any reports of the differential responses of incompatible and compatible soybean varieties infected with H. glycines based on combined metabolomic and transcriptomic analyses.

RESULTS

In this study, the incompatible soybean variety PI437654 and three compatible soybean varieties, Williams 82, Zhonghuang 13 and Hefeng 47, were used to clarify the differences in metabolites and transcriptomics before and after the infection with HG1.2.3.5.7. A local metabolite-calibrated database was used to identify potentially differential metabolites, and the differences in metabolites and metabolic pathways were compared between the incompatible and compatible soybean varieties after inoculation with HG1.2.3.5.7. In total, 37 differential metabolites and 20 KEGG metabolic pathways were identified, which were divided into three categories: metabolites/pathways overlapped in the incompatible and compatible soybeans, and metabolites/pathways specific to either the incompatible or compatible soybean varieties. Twelve differential metabolites were found to be involved in predicted KEGG metabolite pathways. Moreover, 14 specific differential metabolites (such as significantly up-regulated nicotine and down-regulated D-aspartic acid) and their associated KEGG pathways (such as the tropane, piperidine and pyridine alkaloid biosynthesis, alanine, aspartate and glutamate metabolism, sphingolipid metabolism and arginine biosynthesis) were significantly altered and abundantly enriched in the incompatible soybean variety PI437654, and likely played pivotal roles in defending against HG1.2.3.5.7 infection. Three key metabolites (N-acetyltranexamic acid, nicotine and D,L-tryptophan) found to be significantly up-regulated in the incompatible soybean variety PI437654 infected by HG1.2.3.5.7 were classified into two types and used for combined analyses with the transcriptomic expression profiling. Associated genes were predicted, along with the likely corresponding biological processes, cellular components, molecular functions and pathways.

CONCLUSIONS

Our results not only identified potential novel metabolites and associated genes involved in the incompatible response of PI437654 to soybean cyst nematode HG1.2.3.5.7, but also provided new insights into the interactions between soybeans and soybean cyst nematodes.

摘要

背景

大豆胞囊线虫, Heterodera glycines,是大豆最具破坏性的病原体之一,在全球范围内造成严重的年度产量损失。不同的大豆品种在不同的水平上表现出对 H. glycines 感染的不同反应,如基因组、转录组、蛋白质组和代谢组水平。然而,目前还没有关于基于代谢组学和转录组学联合分析的不亲和和亲和大豆品种感染 H. glycines 的差异反应的报道。

结果

在这项研究中,使用不亲和大豆品种 PI437654 和三个亲和大豆品种 Williams 82、Zhonghuang 13 和 Hefeng 47,来阐明 HG1.2.3.5.7 感染前后的代谢组学和转录组学差异。使用局部代谢物校准数据库来鉴定潜在的差异代谢物,并比较接种 HG1.2.3.5.7 后不亲和和亲和大豆品种之间的代谢物和代谢途径差异。总共鉴定出 37 个差异代谢物和 20 个 KEGG 代谢途径,分为三类:不亲和和亲和大豆中重叠的代谢物/途径,以及不亲和或亲和大豆品种特有的代谢物/途径。发现 12 个差异代谢物参与预测的 KEGG 代谢途径。此外,14 个特定的差异代谢物(如显著上调的尼古丁和下调的 D-天冬氨酸)及其相关的 KEGG 途径(如托烷、哌啶和吡啶生物碱生物合成、丙氨酸、天冬氨酸和谷氨酸代谢、鞘脂代谢和精氨酸生物合成)在不亲和大豆品种 PI437654 中显著改变和丰富,可能在抵御 HG1.2.3.5.7 感染中发挥关键作用。在感染 HG1.2.3.5.7 的不亲和大豆品种 PI437654 中发现的 3 种显著上调的关键代谢物(N-乙酰色氨酸、尼古丁和 D,L-色氨酸)分为两类,并与转录组表达谱进行联合分析。预测了相关基因,并推测了可能对应的生物过程、细胞成分、分子功能和途径。

结论

我们的研究结果不仅鉴定了可能参与 PI437654 对大豆胞囊线虫 HG1.2.3.5.7 不亲和反应的新的潜在代谢物和相关基因,还为大豆与大豆胞囊线虫之间的相互作用提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e659/8120846/5b89ea0d7511/12870_2021_2998_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验