日本芹菜中的一种焦磷酸法尼酯合成酶参与皂素生物合成并受免疫过程调控

IF 1.9 4区 农林科学 Q2 FISHERIES Aquaculture Research Pub Date : 2024-08-12 DOI:10.1155/2024/8849584
Pingzhe Jiang, Zhong Chen, Shan Gao, Feifei Zhang, Li Li, Yujun Liu, Peipei Li, Yao Xiao, Ying Dong, Guiying Liu, Jingwei Jiang, Zunchun Zhou
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引用次数: 0

摘要

日本芹属(Apostichopus japonicus)是少数能够合成皂甙的动物之一。目前对皂素生物合成的了解往往仅限于基因组分析,确切的机制仍不清楚。本研究考察了一个被注释为焦磷酸法尼基合成酶(FPS)的基因在日本椿皂素生物合成中的潜在作用。我们分别通过 cDNA末端快速扩增(RACE)和大肠杆菌表达系统扩增了其完整的 cDNA(记为 AjFPS)并制备了其重组蛋白(rAjFPS)。通过RNA干扰和AjFPS转录表达水平与皂苷含量的相关性分析,评估了AjFPS在皂苷生物合成中的作用。利用牵引试验初步探讨了其在皂苷生物合成中的调控作用。AjFPS 的完整 cDNA 序列长度为 3,006 bp。推断的氨基酸序列包含两个保守的富含天冬氨酸的位点(DDXXD)。利用系统发生学对氨基酸序列的分析表明,AjFPS与产皂素的海洋生物中的FPSs更为相似,而与不产皂素的海洋生物或植物中的FPSs更为相似。敲除 AjFPS 会导致皂苷含量显著下降。AjFPS 的时间表达与绚丽弧菌侵袭后皂素含量的变化显著相关。牵引分析表明,AjFPS 直接或间接地与多种免疫相关因子相互作用,这些因子与病原体的识别和破坏以及氧化应激保护有关。这些结果表明,AjFPS 参与了皂素的合成,而日本鹅膏菌的这一过程很可能受到免疫过程的调节,AjFPS 是其中的一个调节节点。这些发现将促进对皂素合成和免疫调节的深入了解,并有助于改善日本芹的皂素质量性状。
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A Farnesyl Pyrophosphate Synthase from Apostichopus japonicus Is Involved in Saponin Biosynthesis and Regulated by Immune Processes

Apostichopus japonicus is one of the few animals that can synthesize saponins. Present understanding of saponin biosynthesis is often limited to genome analysis, leaving the precise mechanism still unclear. This study examined the potential role of a gene annotated as farnesyl pyrophosphate synthase (FPS) in saponin biosynthesis of A. japonicus. We amplified its complete cDNA (denoted as AjFPS) and produced its recombinant protein (rAjFPS) through rapid amplification of cDNA ends (RACE) and Escherichia coli expression system, respectively. RNA interference and correlation analysis of AjFPS transcriptional expression level and saponin content were conducted to evaluate the role of AjFPS in saponin biosynthesis. A pull-down assay was used to preliminarily explore its regulatory role in saponin biosynthesis. The complete cDNA sequence of AjFPS was shown to be 3,006 bp in length. The inferred amino acid sequence harbored two conserved aspartate-rich sites (DDXXD). Analysis of the amino acid sequence using phylogenetics showed that AjFPS was more similar to FPSs found in saponin-producing marine organisms rather than those in non-saponin-producing ones or plants. The knockdown of AjFPS resulted in a remarkable decline in saponin content. The temporal expression of AjFPS was significantly correlated with the variation in saponin content after Vibrio splendidus challenge. The pull-down analysis illustrated that AjFPS interacted directly or indirectly with diverse immune-related factors associated with pathogen recognition and destruction and protection against oxidative stress. Combined, these results suggested that AjFPS is involved in saponin synthesis, and this process in A. japonicus is likely modulated by immune processes, with AjFPS serving as a regulatory node. These findings will promote a deeper understanding of saponin synthesis and immune regulation as well as contribute to the improvement of saponin quality traits in cultured A. japonicus.

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来源期刊
Aquaculture Research
Aquaculture Research 农林科学-渔业
CiteScore
4.60
自引率
5.00%
发文量
464
审稿时长
5.3 months
期刊介绍: International in perspective, Aquaculture Research is published 12 times a year and specifically addresses research and reference needs of all working and studying within the many varied areas of aquaculture. The Journal regularly publishes papers on applied or scientific research relevant to freshwater, brackish, and marine aquaculture. It covers all aquatic organisms, floristic and faunistic, related directly or indirectly to human consumption. The journal also includes review articles, short communications and technical papers. Young scientists are particularly encouraged to submit short communications based on their own research.
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