Höfer M, Schäfer M, Wang Y, Wink S, Xu S
Institute for Organismic and Molecular Evolution (iomE), Johannes Gutenberg University of Mainz, Mainz, Germany.
Institute for Evolution and Biodiversity, University of Münster, Münster, Germany.
Plant Biol (Stuttg). 2025 Jan;27(1):18-28. doi: 10.1111/plb.13747. Epub 2024 Dec 4.
The exceptionally high growth rate and high flavonoid content make the giant duckweed Spirodela polyrhiza (L.) Schleid. (Arales: Lemnaceae Martinov) an ideal organism for food production and metabolic engineering. To facilitate this, identification of the genetic basis underlying growth and metabolic traits is essential. Here, we analysed growth and content of 42 metabolites in 137 S. polyrhiza genotypes and characterized the genetics underpinning these traits using a genome-wide association (GWA) approach. We found that biomass positively correlated with the content of many free amino acids, including L-glutamine, L-tryptophan, and L-serine, but negatively correlated with specialized metabolites, such as flavonoids. GWA analysis showed that several candidate genes involved in processes such as photosynthesis, protein degradation, and organ development were jointly associated with multiple metabolic traits. The results suggest the above genes are suitable targets for simultaneous optimization of duckweed growth and metabolite levels. This study provides insights into the metabolic diversity of S. polyrhiza and its underlying genetic architecture, paving the way for industrial applications of this plant via targeted breeding or genetic engineering.
极高的生长速率和高黄酮含量使巨大浮萍(Spirodela polyrhiza (L.) Schleid.)(天南星目:浮萍科 马丁诺夫)成为食品生产和代谢工程的理想生物。为推动这一进程,确定生长和代谢性状背后的遗传基础至关重要。在此,我们分析了137个多根紫萍基因型中42种代谢物的生长和含量,并使用全基因组关联(GWA)方法对这些性状的遗传学特征进行了表征。我们发现生物量与许多游离氨基酸的含量呈正相关,包括L-谷氨酰胺、L-色氨酸和L-丝氨酸,但与黄酮类等特殊代谢物呈负相关。全基因组关联分析表明,几个参与光合作用、蛋白质降解和器官发育等过程的候选基因与多种代谢性状共同相关。结果表明,上述基因是同时优化浮萍生长和代谢物水平的合适靶点。本研究深入了解了多根紫萍的代谢多样性及其潜在的遗传结构,为通过定向育种或基因工程对该植物进行工业应用铺平了道路。