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  4. Root anatomical adaptations of contrasting ectomycorrhizal exploration types in Pinus sylvestris and Quercus petraea across soil horizons
 
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Root anatomical adaptations of contrasting ectomycorrhizal exploration types in Pinus sylvestris and Quercus petraea across soil horizons

Type
Journal article
Language
English
Date issued
2025
Author
Mucha, Joanna 
Zadworny, Marcin 
Bułaj, Bartosz 
Rutkowski, Paweł 
Szuba, Agnieszka
Mąderek, Ewa
Łakomy, Piotr 
Trocha, Lidia Katarzyna
Faculty
Wydział Leśny i Technologii Drewna
Journal
Plant and Soil
ISSN
0032-079X
DOI
10.1007/s11104-024-06971-6
Web address
https://link.springer.com/article/10.1007/s11104-024-06971-6
Volume
511
Number
1-2
Pages from-to
119-134
Abstract (EN)
Aims The anatomical characteristics of ectomycorrhizal exploration types in response to soil variability remain insufficiently understood. We examined the root anatomy of contact and long-distance exploration types in Pinus sylvestris and Quercus petraea, species with distinct ecological needs, across different soil horizons.
Methods The diameter of ectomycorrhizal roots, the root absorptive traits i.e. proportion of cortex and mantle area, the percentage stele in the diameter, and the weighted average diameter of vessels (Ra) in the ectomycorrhizas were measured within ectomycorrhizas collected from organic and mineral soils across the soil profile.
Results The absorptive traits varied along soil horizons, in which water and nutrient availability changed inversely. The proportion of cortex was associated with exploration type, but was not specific to tree species. However, the ectomycorrhizal diameter and the percentage of mantle within the root forming contact exploration type of P. sylvestris showed no variation among soil horizons. In contrast, the soil horizon significantly influenced all root anatomical traits in the contact exploration type of Q. petraea by enhancing the contribution of the absorption area of the root area, mainly in the illuvial horizon, but reaching the smallest value in the organic horizon. The Ra and the cell wall thickness of the vessels were strongly dependent on tree species. With increasing soil depth, Ra in Q. petraea increased, and stele proportion in root diameter decreased.
Conclusion The results suggest that water acquisition traits differ among tree species, but traits associated with nutrient absorption (proportion of cortex and mantle area) within specific soil horizons are closely related to the ectomycorrhizal exploration type.
Keywords (EN)
  • nutrient availability

  • exploration type

  • cortex

  • hydraulic traits

  • Scots pine

  • sessile

License
cc-bycc-by CC-BY - Attribution
Open access date
October 7, 2024
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