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大浮萍(Spirodela polyrhiza)全基因组加倍的即时代谢组学效应。

The immediate metabolomic effects of whole-genome duplication in the greater duckweed, Spirodela polyrhiza.

机构信息

Department of Plant Biotechnology and Bioinformatics, Ghent University, Ghent, 9000, Belgium.

VIB Center for Plant Systems Biology, VIB, Ghent, 9052, Belgium.

出版信息

Am J Bot. 2024 Aug;111(8):e16383. doi: 10.1002/ajb2.16383. Epub 2024 Aug 1.

Abstract

PREMISE

In plants, whole-genome duplication (WGD) is a common mutation with profound evolutionary potential. Given the costs associated with a superfluous genome copy, polyploid establishment is enigmatic. However, in the right environment, immediate phenotypic changes following WGD can facilitate establishment. Metabolite abundances are the direct output of the cell's regulatory network and determine much of the impact of environmental and genetic change on the phenotype. While it is well known that an increase in the bulk amount of genetic material can increase cell size, the impact of gene dosage multiplication on the metabolome remains largely unknown.

METHODS

We used untargeted metabolomics on four genetically distinct diploid-neoautotetraploid pairs of the greater duckweed, Spirodela polyrhiza, to investigate how WGD affects metabolite abundances per cell and per biomass.

RESULTS

Autopolyploidy increased metabolite levels per cell, but the response of individual metabolites varied considerably. However, the impact on metabolite level per biomass was restricted because the increased cell size reduced the metabolite concentration per cell. Nevertheless, we detected both quantitative and qualitative effects of WGD on the metabolome. Many effects were strain-specific, but some were shared by all four strains.

CONCLUSIONS

The nature and impact of metabolic changes after WGD depended strongly on the genotype. Dosage effects have the potential to alter the plant metabolome qualitatively and quantitatively, but were largely balanced out by the reduction in metabolite concentration due to an increase in cell size in this species.

摘要

前提

在植物中,全基因组复制(WGD)是一种常见的突变,具有深远的进化潜力。鉴于多余基因组副本相关的成本,多倍体的建立是神秘的。然而,在适当的环境下,WGD 后立即发生的表型变化可以促进其建立。代谢物丰度是细胞调控网络的直接输出,决定了环境和遗传变化对表型的影响的大部分。虽然人们已经知道增加大量的遗传物质可以增加细胞大小,但基因剂量倍增对代谢组的影响在很大程度上仍然未知。

方法

我们使用靶向代谢组学方法研究了四个遗传上不同的二倍体-新同源四倍体对大型浮萍(Spirodela polyrhiza)的影响,以研究 WGD 如何影响每个细胞和每个生物量的代谢物丰度。

结果

自交多倍体增加了每个细胞的代谢物水平,但个别代谢物的反应变化很大。然而,对代谢物水平/生物量的影响受到限制,因为细胞大小的增加降低了每个细胞的代谢物浓度。尽管如此,我们还是检测到 WGD 对代谢组有定量和定性的影响。许多影响是菌株特异性的,但有些是所有四个菌株共有的。

结论

WGD 后代谢变化的性质和影响强烈依赖于基因型。剂量效应有可能从定性和定量两方面改变植物代谢组,但在该物种中,由于细胞大小的增加导致代谢物浓度降低,因此在很大程度上被抵消了。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41f4/7616399/42a3f78a3736/EMS198113-f001.jpg

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