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代谢物谱分析和转录组分析有助于深入了解荔枝嫁接不亲和性的调控网络。

Metabolite profiling and transcriptome analyses provide insight into the regulatory network of graft incompatibility in litchi.

作者信息

Hou Yanjie, Qin Xianquan, Qiu Hongye, Li Dongbo, Xu Ning, Zhang Shuwei, Fang Chen, Li Hongli

机构信息

Horticultural Research Institute, Guangxi Academy of Agricultural Sciences, Nanning, Guangxi, China.

出版信息

Front Genet. 2023 Jan 5;13:1059333. doi: 10.3389/fgene.2022.1059333. eCollection 2022.

Abstract

Litchi is an important commercial fruit crop widely grown in the world. Graft incompatibility between rootstocks and scions is a major constraint for large-scale cultivation of litchi orchards, popularization of new and excellent litchi varieties, and associated industrial development. Further, the genetic mechanism of graft incompatibility is still unclear in litchi. To reduce the incompatibility problems, this study investigated metabolic and transcriptomic differences between graft compatible and incompatible rootstock-scion combinations of litchi. The result of metabolomics analysis showed that incompatible rootstock-scion interaction modified the profiles of several metabolic substances. However, various compounds of flavonoids, phenolic acids, and lignin predominantly exhibited significantly altered abundance in graft incompatible combinations. Transcriptome analysis identified that graft incompatibility induces dynamic gene differences. The majority of these differentially expressed genes were enriched in biosynthetic pathways of phenylpropanoids. The differential expressions of genes in these pathways could be linked to the differential abundance levels of flavonoids, phenolic acids, and lignin compounds. Integrated metabolomic and transcriptomic analyses revealed a strong relationship between differential genes and differential metabolites identified in this study. In addition, identified hub genes and metabolites were closely associated with graft incompatibility of litchi. This study characterized the abundance of metabolites and genes in graft incompatible combinations and further discussed the genetic mechanism of graft incompatibility in litchi. Our results provide a platform to dissect the molecular mechanisms of graft incompatibility in the litchi fruit.

摘要

荔枝是一种重要的商业水果作物,在全球广泛种植。砧木与接穗之间的嫁接不亲和性是荔枝果园大规模栽培、优良荔枝品种推广及相关产业发展的主要制约因素。此外,荔枝嫁接不亲和性的遗传机制仍不明确。为减少不亲和性问题,本研究调查了荔枝嫁接亲和与不亲和的砧木 - 接穗组合之间的代谢和转录组差异。代谢组学分析结果表明,不亲和的砧木 - 接穗相互作用改变了几种代谢物质的谱图。然而,黄酮类、酚酸类和木质素的各种化合物在嫁接不亲和组合中主要表现出显著改变的丰度。转录组分析表明,嫁接不亲和性诱导了动态基因差异。这些差异表达基因大多富集在苯丙烷类生物合成途径中。这些途径中基因的差异表达可能与黄酮类、酚酸类和木质素化合物的差异丰度水平有关。代谢组学和转录组学的综合分析揭示了本研究中鉴定的差异基因与差异代谢物之间的密切关系。此外,鉴定出的枢纽基因和代谢物与荔枝的嫁接不亲和性密切相关。本研究表征了嫁接不亲和组合中代谢物和基因的丰度,并进一步探讨了荔枝嫁接不亲和性的遗传机制。我们的结果为剖析荔枝果实嫁接不亲和性的分子机制提供了一个平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c199/9849251/3d3d982dd3f1/fgene-13-1059333-g001.jpg

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