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Depth of nutrient uptake by deep-rooted plants is regulated by water availability
- Li, Langlang;
- Christensen, John N;
- Bill, Markus;
- Dong, Wenming;
- Wu, Yuxin;
- Beutler, Curtis;
- Sprenger, Matthias;
- Gulick, Brian W;
- Bone, Sharon E;
- Faybishenko, Boris;
- Sanders, John;
- Chou, Chunwei;
- Henderson, Amanda;
- Bouskill, Nicholas J;
- Williams, Kenneth H;
- Gilbert, Benjamin
Published Web Location
https://doi.org/10.1073/pnas.2528407123Abstract
The capacity of some plants to access water and nutrients at depths greater than one meter is a critical functional trait that confers resistance to drought and impacts both belowground and shallow soil processes. Here, we report water and strontium isotopic data from an alpine meadow transect showing the correlation between water and nutrient acquisition depths. The isotopic compositions of Sr (87Sr/86Sr ratio) and water in rock and soil, and in plant leaf tissues, reveal that deeper-rooted plants acquire a higher proportion of water, Sr, and cation nutrients that are derived from the saprolite, a zone of silicate weathering, than shallow-rooted grass. A three-decade dendrochemical record reveals that reductions of wet precipitation drive deep-rooted plants to acquire cation nutrients from deeper saprolite or bedrock regions. Thus, the depth of cation nutrient acquisition by deep-rooted plant species at this site is tightly coupled with, and likely determined by, water availability in soil, saprolite, and bedrock. The enhanced uptake of cations as well as water from deeper saprolite zones could impact the rate of bedrock weathering and watershed chemistry during drought.
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