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The balance between alleviating copper damage and maintaining root function during root pruning with excessive copper.

Authors :
Zhou Y
Wu S
Jia J
Chen H
Zhang Y
Wu Z
Chen B
Liu C
Yang M
Source :
Tree physiology [Tree Physiol] 2024 Oct 07. Date of Electronic Publication: 2024 Oct 07.
Publication Year :
2024
Publisher :
Ahead of Print

Abstract

Coating high concentrations of copper (Cu) on the inner wall of containers can efficiently inhibit root entanglement of container-grown seedlings. However, how the protective and defensive responses of roots maintain root structure and function during Cu-root pruning is still unclear. Here, Duranta erecta seedlings were planted in the containers coated with 40 (T1), 80 (T2), 100 (T3), 120 (T4), 140 (T5), and 160 (T6) g L-1 Cu(OH)2 with containers without Cu(OH)2 as the control. Although T5 and T6 produced the best inhibitory effect on root entanglement, root anatomy structure was damaged. T1 and T2 not only failed to completely control root circling, but also led to decreased root activity and stunted growth. Cu(OH)2 treatments significantly increased lignin concentration of roots with the highest values at T3 and T4. Compared with T3, seedlings at T4 had higher height, biomass, and root activity and no significant root entanglement. Excessive Cu accumulation in Cu(OH)2 treatments changed the absorption of other mineral nutrients and their allocation in the roots, stems, and leaves. Overall, Ca was decreased while Mg, Mn, Fe, and K were increased, especially K and Mn at T4 which is related to defense capacity. The results indicate that there is a Cu threshold to balance root entanglement control, defense capacity, and nutrient uptake function under excessive Cu for container-grown D. erecta seedlings.<br /> (© The Author(s) 2024. Published by Oxford University Press. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com.)

Details

Language :
English
ISSN :
1758-4469
Database :
MEDLINE
Journal :
Tree physiology
Publication Type :
Academic Journal
Accession number :
39375010
Full Text :
https://doi.org/10.1093/treephys/tpae129