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MyC因子类似物CO5通过激活相关基因的表达促进生长并增强抗逆性。

MyC Factor Analogue CO5 Promotes the Growth of and Enhances Stress Resistance by Activating the Expression of Relevant Genes.

作者信息

Luo Xinhao, Jiang Jiaqing, Zhou Jing, Chen Jin, Cheng Beijiu, Li Xiaoyu

机构信息

Schools of Life Sciences, Anhui Agricultural University, Hefei 230036, China.

National Engineering Laboratory of Crop Stress Resistance Breeding, Anhui Agricultural University, Hefei 230036, China.

出版信息

J Fungi (Basel). 2024 Jun 28;10(7):458. doi: 10.3390/jof10070458.

Abstract

The symbiotic relationship between arbuscular mycorrhizal fungi (AMF) and plants is well known for its benefits in enhancing plant growth and stress resistance. Research on whether key components of the AMF colonization process, such as MyC factors, can be directly utilized to activate plant symbiotic pathways and key functional gene expression is still lacking. In this paper, we found that, using a hydroponics system with , MyC factor analogue chitin oligomer 5 (CO5) had a more pronounced growth-promoting effect compared to symbiosis with AMF at the optimal concentration. Additionally, CO5 significantly enhanced the resistance of to various environmental stresses. The addition of CO5 activated symbiosis, nutrient absorption, and stress-related signaling pathways, like AMF symbiosis, and CO5 also activated a higher and more extensive gene expression profile compared to AMF colonization. Overall, the study demonstrated that the addition of MyC factor analogue CO5, by activating relevant pathways, had a superior effect on promoting plant growth and enhancing stress resistance compared to colonization by AMF. These findings suggest that utilizing MyC factor analogues like CO5 could be a promising alternative to traditional AMF colonization methods in enhancing plant growth and stress tolerance in agriculture.

摘要

丛枝菌根真菌(AMF)与植物之间的共生关系因其在促进植物生长和提高抗逆性方面的益处而广为人知。关于AMF定殖过程的关键成分,如MyC因子,是否可直接用于激活植物共生途径和关键功能基因表达的研究仍很缺乏。在本文中,我们发现,使用含有MyC因子类似物壳寡糖5(CO5)的水培系统,在最佳浓度下,与AMF共生相比,CO5具有更显著的促生长作用。此外,CO5显著增强了植物对各种环境胁迫的抗性。添加CO5激活了共生、养分吸收和与胁迫相关的信号通路,类似于AMF共生,并且与AMF定殖相比,CO5还激活了更高且更广泛的基因表达谱。总体而言,该研究表明,添加MyC因子类似物CO5通过激活相关途径,在促进植物生长和增强抗逆性方面比AMF定殖具有更好的效果。这些发现表明,在农业中利用像CO5这样的MyC因子类似物可能是一种有前景的替代传统AMF定殖方法来促进植物生长和提高胁迫耐受性的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11b8/11278419/d5ba686b655e/jof-10-00458-g001.jpg

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