Root acid phosphatases and rhizobacteria synergistically enhance white lupin and rice phosphorus acquisition

Author:

Aslam Mehtab Muhammad1234ORCID,Pueyo José J5ORCID,Pang Jiayin6ORCID,Yang Jinyong1ORCID,Chen Weiguo1ORCID,Chen Hao1ORCID,Waseem Muhammad7,Li Ying2ORCID,Zhang Jianhua34ORCID,Xu Weifeng1ORCID

Affiliation:

1. Joint International Research Laboratory of Water and Nutrient in Crops, Haixia Institute of Ecology and Environmental Engineering, College of Resource and Environment, Fujian Agriculture and Forestry University , Fuzhou 350002, China

2. College of Agriculture, Yangzhou University , Yangzhou 225009, China

3. Department of Biology, Hong Kong Baptist University, Hong Kong

4. State Key Laboratory of Agrobiotechnology, Chinese University of Hong Kong , Hong Kong

5. Institute of Agricultural Sciences, ICA-CSIC , Madrid 28006, Spain

6. School of Agriculture and Environment, UWA Institute of Agriculture, University of Western Australia , Perth, Western Australia 6009, Australia

7. College of Horticulture, South China Agricultural University , Guangzhou 510642, China

Abstract

Abstract The rhizosheath is a belowground area that acts as a communication hub at the root–soil interface to promote water and nutrient acquisition. Certain crops, such as white lupin (Lupinus albus), acquire large amounts of phosphorus (P), owing partially to exudation of acid phosphatases (APases). Plant growth-promoting rhizobacteria also increase soil P availability. However, potential synergistic effects of root APases and rhizosheath-associated microbiota on P acquisition require further research. In this study, we investigated the roles of root purple APases (PAPs) and plant growth-promoting rhizobacteria in rhizosheath formation and P acquisition under conditions of soil drying (SD) and P treatment (+P: soil with P fertilizer; –P: soil without fertilizer). We expressed purple acid phosphatase12 (LaPAP12) in white lupin and rice (Oryza sativa) plants and analyzed the rhizosheath-associated microbiome. Increased or heterologous LaPAP12 expression promoted APase activity and rhizosheath formation, resulting in increased P acquisition mainly under SD–P conditions. It also increased the abundance of members of the genus Bacillus in the rhizosheath-associated microbial communities of white lupin and rice. We isolated a phosphate-solubilizing, auxin-producing Bacillus megaterium strain from the rhizosheath of white lupin and used this to inoculate white lupin and rice plants. Inoculation promoted rhizosheath formation and P acquisition, especially in plants with increased LaPAP12 expression and under SD–P conditions, suggesting a functional role of the bacteria in alleviating P deficit stress via rhizosheath formation. Together, our results suggest a synergistic enhancing effect of LaPAP12 and plant growth-promoting rhizobacteria on rhizosheath formation and P acquisition under SD–P conditions.

Funder

National Natural Science Foundation of China

Agencia Estatal de Investigación

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

Reference90 articles.

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