Improved phyllosphere microbiome composition of tea plant with the application of small peptides in combination with rhamnolipid

Author:

Chen Hao,Song Yujie,Wang Shuangshuang,Fan Kai,Wang Hui,Mao Yilin,Zhang Jie,Xu Yang,Yin Xinyue,Wang Yu,Ding Zhaotang

Abstract

Abstract Background Small peptides play a crucial role in plant growth and adaptation to the environment. Exogenous small peptides are often applied together with surfactants as foliar fertilizers, but the impact of small peptides and surfactants on the tea phyllosphere microbiome remains unknown. Results In this study, we investigated the effects of small peptides and different surfactants on the tea phyllosphere microbiome using 16S and ITS sequencing. Our results showed that the use of small peptides reduced the bacterial diversity of the tea phyllosphere microbiome and increased the fungal diversity, while the use of surfactants influenced the diversity of bacteria and fungi. Furthermore, the addition of rhamnolipid to small peptides significantly improved the tea phyllosphere microbiome community structure, making beneficial microorganisms such as Pseudomonas, Chryseobacterium, Meyerozyma, and Vishniacozyma dominant populations. Conclusion Our study suggests that the combined use of small peptides and surfactants can significantly modify the tea phyllosphere microbiome community structure, particularly for beneficial microorganisms closely related to tea plant health. Thus, this preliminary study offers initial insights that could guide the application of small peptides and surfactants in agricultural production, particularly with respect to their potential for modulating the phyllosphere microbiome community in tea plant management.

Funder

the Technology System of Modern Agricultural Industry in Shandong Province

the Special Foundation for Distinguished Taishan Scholar of Shandong Province

the Livelihood Project of Qingdao City

the Special Talent Program of SAAS

he Agricultural Improved Variety Project of Shandong Province

Publisher

Springer Science and Business Media LLC

Subject

Microbiology (medical),Microbiology

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