Plant host domestication and soil nutrient availability determine positive plant microbial response across the Solanum genus

Author:

Miao Max1ORCID,Lankau Richard1ORCID

Affiliation:

1. Department of Plant Pathology, University of Wisconsin-Madison , 1630 Linden Drive , Madison , WI 53706 , USA

Abstract

Abstract Domestication of crops has changed how crops shape their associated microbial communities compared with their progenitors. However, studies testing how crop domestication-driven differences in rhizosphere microbial communities affect plant health are limited mostly to specific symbiont pairings. By conducting a soil manipulation greenhouse study, we examined plant growth and yield in response to differences in microbial communities and nutrient availability across a variety of wild, landrace, and commercially available ‘Modern’ potatoes. Coupled with this, we conducted 16S and internal transcribed spacer (ITS) amplicon sequencing to examine plant host- and soil treatment-driven differences in microbial community composition on potato plant roots. We found that the plant response to microbes (PRM) was context dependent. In low nutrient conditions, landraces responded positively to the presence of live soil microbial inocula. Conversely, modern potato varieties responded positively only in high nutrient conditions. Amplicon sequencing found differences in bacterial communities due to environmental and temporal factors. However, potato clade (e.g. Andigenum, Chiletanum, Solanum berthaultii, and ‘Modern’) alone did not lead to differences in microbial communities that accounted for PRM differences. Differences in PRM between landraces and modern potatoes, and the correlation of PRM to microbial diversity, suggest that domestication and subsequent breeding have altered the S. tuberosum response to rhizosphere microbiomes between Andigenum, Chiletanum, and North American potato varieties.

Funder

USDA-ARS

USDA

NIFA

AFRI

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

Reference58 articles.

1. Secondary metabolite genes encoded by potato rhizosphere microbiomes in the Andean highlands are diverse and vary with sampling site and vegetation stage;Aleti;Scientific Reports,2017

2. Domestication impacts the wheat-associated microbiota and the rhizosphere colonization by seed- and soil-originated microbiomes, across different fields;Abdullaeva;Frontiers in Plant Science,2021

3. Phylogenetic conservatism in plant–soil feedback and its implications for plant abundance;Anacker;Ecology Letters,2014

4. Genome-wide association studies on the phyllosphere microbiome: embracing complexity in host–microbe interactions;Beilsmith;The Plant Journal,2019

5. Root microbiome relates to plant host evolution in maize and other Poaceae;Bouffaud;Environmental Microbiology,2014

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