Insights into accumulation of active ingredients and rhizosphere microorganisms between Salvia miltiorrhiza and S. castanea

Author:

Xu Zishu1,Liu Hui2,Ullah Najeeb3ORCID,Tung Shahbaz Atta4,Ali Basharat5,Li Xin1,Chen Shubin1,Xu Ling1ORCID

Affiliation:

1. Zhejiang Province Key Laboratory of Plant Secondary Metabolism and Regulation, College of Life Sciences and Medicine, Zhejiang Sci-Tech University , Hangzhou 310018 , China

2. School of Agriculture and Environment and Institute of Agriculture, The University of Western Australia , Perth, WA 6009 , Australia

3. Agricultural Research Station, Office of VP for Research & Graduate Studies, Qatar University , Doha 2713 , Qatar

4. Department of Agronomy, PMAS-Arid Agriculture University Rawalpindi , Rawalpindi, Punjab 46300 , Pakistan

5. Department of Agricultural Engineering, Khwaja Fareed University of Engineering and Information Technology (KFUEIT) , Rahim Yar Khan 64200 , Pakistan

Abstract

Abstract Salvia miltiorrhiza is an important traditional herbal medicine, and its extracts could be used for treating cardiovascular disease. Although these medicinal compounds are functionally similar, their wild relative, S. castanea, produces significantly different concentrations of these compounds. The reason for their differences is still unknown. In a series of soil and plant-based analyses, we explored and compared the rhizosphere microbiome of S. miltiorrhiza and S. castanea. To further investigate the geographical distribution of S. castanea, MaxEnt models were used to predict the future suitable habitat areas of S. castanea in China. Results revealed the distributions and structure of the rhizosphere microbial community of S. miltiorrhiza and S. castanea at different times. In addition, differences in altitude and soil moisture resulting from changes in climate and geographical location are also critical environmental factors in the distribution of S. castanea. The findings of this study increase our understanding of plant adaptation to their geographical environment through secondary metabolites. It also highlights the complex interplay between rhizospheric factors and plant metabolism, which provides the theoretical basis for the cultivation of S. miltiorrhiza and the use of S. castanea resources.

Funder

National Natural Science Foundation of China

China Scholarship Council

Publisher

Oxford University Press (OUP)

Subject

Genetics,Molecular Biology,Microbiology

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