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Root order-based traits of Manchurian walnut & larch and their plasticity under interspecific competition
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AbstractManchurian walnut and larch are key timber species of northeast China but information on (fine) root traits of both species is scarce. Plasticity of root traits in mixed plantations has been studied rarely although this could give important insights into mechanisms of root competition. This study examined root traits by branching order in 30-yr-old monocultures and their plasticity in mixed plantations. In monocultures, Manchurian walnut and larch differed in key fine root traits. Larch roots hold more absorptive root orders, larger diameter and lower specific root length/area. Walnut root orders featured greater cortex:stele ratios, N-concentrations and respiration rates. Under interspecific competition, the proportion of walnut root tips increased, the biomass/length of larch root orders 1–3 decreased. Larch possessed a greater morphological and anatomical plasticity of terminal root orders than walnut. Mycorrhizal colonization rates of walnut were reduced. Both species differed fundamentally in their fine root properties. Absorptive fine root orders reacted plastic under interspecific competition while traits of higher root orders remained unchanged. In mixture, larch roots possessed a greater plasticity in traits related to resource uptake (efficiency) than walnut roots whose reaction norm is suggested to be predominantly based on interference competition via juglone exudation.
Springer Science and Business Media LLC
Title: Root order-based traits of Manchurian walnut & larch and their plasticity under interspecific competition
Description:
AbstractManchurian walnut and larch are key timber species of northeast China but information on (fine) root traits of both species is scarce.
Plasticity of root traits in mixed plantations has been studied rarely although this could give important insights into mechanisms of root competition.
This study examined root traits by branching order in 30-yr-old monocultures and their plasticity in mixed plantations.
In monocultures, Manchurian walnut and larch differed in key fine root traits.
Larch roots hold more absorptive root orders, larger diameter and lower specific root length/area.
Walnut root orders featured greater cortex:stele ratios, N-concentrations and respiration rates.
Under interspecific competition, the proportion of walnut root tips increased, the biomass/length of larch root orders 1–3 decreased.
Larch possessed a greater morphological and anatomical plasticity of terminal root orders than walnut.
Mycorrhizal colonization rates of walnut were reduced.
Both species differed fundamentally in their fine root properties.
Absorptive fine root orders reacted plastic under interspecific competition while traits of higher root orders remained unchanged.
In mixture, larch roots possessed a greater plasticity in traits related to resource uptake (efficiency) than walnut roots whose reaction norm is suggested to be predominantly based on interference competition via juglone exudation.
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