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Root foraging of birch and larch in heterogeneous soil nutrient patches under water deficit

Author

Listed:
  • Long Tan
  • Ruifeng Fan
  • Huifeng Sun
  • Shenglei Guo

Abstract

Water and nutrient are two critical factors that limit plant growth to spatial-temporal extents. Tree root foraging behavior has not received adequate attention in heterogeneous soil environments in temperate forest under drought pressure. In this study, birch (Betula platyphylla) and larch (Larix olgensis) seedlings were raised in pots in a split-root system with artificially heterogeneous soil environments to study the root foraging response to drought. Potted space was split into two halves where substrates were mixed with fertilizers in 67.5 mg nitrogen (N) plant-1 (N-P2O5-K2O, 14-13-13) to both halves as to create a homogeneous condition. Otherwise, a rate of 135 mg N plant-1 of fertilizers was delivered to a random half to create a heterogeneous condition. Half of seedlings were fully sub-irrigated every three days with the other half received the drought treatment by being watered every six days. Both birch and larch seedlings showed greater net shoot growth and biomass increment in well-watered condition, while root morphology was promoted by drought. Both species placed more fine roots with higher root N concentration in nutrient-enriched patches. In the heterogeneous pattern, birch showed a higher foraging precision assessed by biomass and greater foraging plasticity assessed in morphology and physiology. In contrast, larch seedlings had higher root N concentration in the well-watered condition. Neither species showed a significant response of N utilization to the heterogeneous pattern, but both used more N when water supply was improved. Overall, birch is better at acclimating to heterogeneous soil conditions, but its ability to seize N was lower than larch when drought was alleviated.

Suggested Citation

  • Long Tan & Ruifeng Fan & Huifeng Sun & Shenglei Guo, 2021. "Root foraging of birch and larch in heterogeneous soil nutrient patches under water deficit," PLOS ONE, Public Library of Science, vol. 16(8), pages 1-17, August.
  • Handle: RePEc:plo:pone00:0255848
    DOI: 10.1371/journal.pone.0255848
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