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比较 3 种天门冬属植物的线粒体基因组,揭示其由于驯化和适应性进化而产生的功能。

Mitogenomes comparison of 3 species of Asparagus L shedding light on their functions due to domestication and adaptative evolution.

机构信息

College of Agronomy and Biotechnology, Yunnan Agricultural University (YNAU), Kunming, Yunnan, 650201, China.

Industrial Crop Research Institute, Sichuan Academy of Agricultural Sciences, Chengdu, Sichuan, 610023, China.

出版信息

BMC Genomics. 2024 Sep 12;25(1):857. doi: 10.1186/s12864-024-10768-3.

Abstract

BACKGROUND

Asparagus L., widely distributed in the old world is a genus under Asparagaceae, Asparagales. The species of the genus were mainly used as vegetables, traditional medicines as well as ornamental plants. However, the evolution and functions of mitochondrial (Mt) genomes (mitogenomes) remains largely unknown. In this study, the typical herbal medicine A. taliensis and ornamental plant A. setaceus were used to assemble and annotate the mitogenomes, and the resulting mitogenomes were further compared with published mitogenome of A. officinalis for the analysis of their functions in the context of domestication and adaptative evolution.

RESULTS

The mitochondrial genomes of both A. taliensis and A. setaceus were assembled as complete circular ones. The phylogenetic trees based on conserved protein-coding genes of Mt genomes and whole chloroplast (Cp) genomes showed that, the phylogenetic relationship of the sampled 13 species of Asparagus L. were not exactly consistent. The collinear analyses between the nuclear (Nu) and Mt genomes confirmed the existence of mutual horizontal genes transfers (HGTs) between Nu and Mt genomes within these species. Based on RNAseq data, the Mt RNA editing were predicted and atp1 and ccmB RNA editing of A. taliensis were further confirmed by DNA sequencing. Simultaneously homologous search found 5 Nu coding gene families including pentatricopeptide-repeats (PPRs) involved in Mt RNA editing. Finally, the Mt genome variations, gene expressions and mutual HGTs between Nu and Mt were detected with correlation to the growth and developmental phenotypes respectively. The results suggest that, both Mt and Nu genomes co-evolved and maintained the Mt organella replication and energy production through TCA and oxidative phosphorylation .

CONCLUSION

The assembled and annotated complete mitogenomes of both A. taliensis and A. setaceus provide valuable information for their phylogeny and concerted action of Nu and Mt genomes to maintain the energy production system of Asparagus L. in the context of domestication and adaptation to environmental niches.

摘要

背景

天门冬属广泛分布于旧世界,是天门冬科天门冬目下的一个属。该属的物种主要作为蔬菜、传统药物以及观赏植物使用。然而,线粒体(Mt)基因组(线粒体基因组)的进化和功能在很大程度上仍然未知。在这项研究中,使用典型的草药天门冬和观赏植物天门冬组装和注释线粒体基因组,并进一步将所得线粒体基因组与已发表的天门冬属线粒体基因组进行比较,以分析其在驯化和适应进化背景下的功能。

结果

天门冬和天门冬的线粒体基因组均被组装为完整的环状。基于线粒体基因组和完整叶绿体(Cp)基因组保守蛋白编码基因构建的系统发育树表明,所采样的 13 种天门冬属物种的系统发育关系并不完全一致。核(Nu)和 Mt 基因组之间的共线性分析证实了这些物种中 Nu 和 Mt 基因组之间存在相互水平基因转移(HGTs)。基于 RNAseq 数据,预测了 Mt RNA 编辑,并通过 DNA 测序进一步证实了天门冬的 atp1 和 ccmB RNA 编辑。同时同源搜索发现了 5 个包含参与 Mt RNA 编辑的五肽重复(PPRs)的 Nu 编码基因家族。最后,检测了 Mt 基因组变异、Nu 和 Mt 之间的基因表达和相互 HGTs 与生长和发育表型之间的相关性。结果表明,Mt 和 Nu 基因组共同进化,并通过三羧酸循环(TCA)和氧化磷酸化维持 Mt 细胞器的复制和能量产生。

结论

组装和注释的天门冬和天门冬完整线粒体基因组为它们的系统发育以及 Nu 和 Mt 基因组的协同作用提供了有价值的信息,以维持天门冬属在驯化和适应环境小生境的背景下的能量产生系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36f7/11396758/c2fae1a4df2b/12864_2024_10768_Fig1_HTML.jpg

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