Suppr超能文献

从基因到特色代谢产物:拟南芥自然种群中香豆素、伞形酮及其糖苷的积累。

Genes to specialized metabolites: accumulation of scopoletin, umbelliferone and their glycosides in natural populations of Arabidopsis thaliana.

机构信息

Laboratory of Plant Protection and Biotechnology, Intercollegiate Faculty of Biotechnology of University of Gdansk and Medical University of Gdansk, University of Gdansk, Abrahama 58, Gdansk, 80-307, Poland.

Université de Lorraine-INRAE, LAE, Nancy, F-54000, France.

出版信息

BMC Plant Biol. 2024 Aug 27;24(1):806. doi: 10.1186/s12870-024-05491-w.

Abstract

BACKGROUND

Scopoletin and umbelliferone belong to coumarins, which are plant specialized metabolites with potent and wide biological activities, the accumulation of which is induced by various environmental stresses. Coumarins have been detected in various plant species, including medicinal plants and the model organism Arabidopsis thaliana. In recent years, key role of coumarins in maintaining iron (Fe) homeostasis in plants has been demonstrated, as well as their significant impact on the rhizosphere microbiome through exudates secreted into the soil environment. Several mechanisms underlying these processes require clarification. Previously, we demonstrated that Arabidopsis is an excellent model for studying genetic variation and molecular basis of coumarin accumulation in plants.

RESULTS

Here, through targeted metabolic profiling and gene expression analysis, the gene-metabolite network of scopoletin and umbelliferone accumulation was examined in more detail in selected Arabidopsis accessions (Col-0, Est-1, Tsu-1) undergoing different culture conditions and characterized by variation in coumarin content. The highest accumulation of coumarins was detected in roots grown in vitro liquid culture. The expression of 10 phenylpropanoid genes (4CL1, 4CL2, 4CL3, CCoAOMT1, C3'H, HCT, F6'H1, F6'H2,CCR1 and CCR2) was assessed by qPCR in three genetic backgrounds, cultured in vitro and in soil, and in two types of tissues (leaves and roots). We not only detected the expected variability in gene expression and coumarin accumulation among Arabidopsis accessions, but also found interesting polymorphisms in the coding sequences of the selected genes through in silico analysis and resequencing.

CONCLUSIONS

To the best of our knowledge, this is the first study comparing accumulation of simple coumarins and expression of phenylpropanoid-related genes in Arabidopsis accessions grown in soil and in liquid cultures. The large variations we detected in the content of coumarins and gene expression are genetically determined, but also tissue and culture dependent. It is particularly important considering that growing plants in liquid media is a widely used technology that provides a large amount of root tissue suitable for metabolomics. Research on differential accumulation of coumarins and related gene expression will be useful in future studies aimed at better understanding the physiological role of coumarins in roots and the surrounding environments.

摘要

背景

香豆素属于植物特有的次生代谢物,具有广泛而强大的生物活性,其积累受各种环境胁迫诱导。香豆素已在多种植物物种中被检测到,包括药用植物和模式生物拟南芥。近年来,香豆素在植物中铁(Fe)稳态维持中的关键作用以及通过分泌到土壤环境中的分泌物对根际微生物组的显著影响已得到证实。这些过程的一些机制需要阐明。以前,我们证明拟南芥是研究植物中香豆素积累的遗传变异和分子基础的理想模型。

结果

在这里,通过靶向代谢组学和基因表达分析,更详细地研究了在经历不同培养条件的选定拟南芥品系(Col-0、Est-1、Tsu-1)中,伞形酮和花椒内酯积累的基因-代谢物网络,并以香豆素含量的变化为特征。在体外液体培养中生长的根中检测到香豆素的最高积累。通过 qPCR 在三个遗传背景(体外和土壤中培养的三个遗传背景)和两种组织(叶片和根)中评估了 10 个苯丙烷基因(4CL1、4CL2、4CL3、CCoAOMT1、C3'H、HCT、F6'H1、F6'H2、CCR1 和 CCR2)的表达。我们不仅在拟南芥品系之间检测到基因表达和香豆素积累的预期变异性,而且通过计算机分析和重测序还发现了所选基因的编码序列中的有趣多态性。

结论

据我们所知,这是第一项比较在土壤和液体培养中生长的拟南芥品系中简单香豆素的积累和苯丙烷相关基因表达的研究。我们在香豆素含量和基因表达方面检测到的大变异是由遗传决定的,但也与组织和培养有关。考虑到在液体培养基中培养植物是一种广泛使用的技术,可以提供大量适合代谢组学的根组织,这一点尤为重要。研究香豆素的差异积累和相关基因表达将有助于未来更好地理解香豆素在根和周围环境中的生理作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5eb7/11348552/0fe2f57d81c8/12870_2024_5491_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