Protoxylem grouping (PG), a classification based on the number of protoxylem poles, is a crucial indicator related to other functional traits in fine roots, affecting growth and survival of individual root. However, within root system, less is known about the arrangement of PG. Moreover, the responses of PG to fertilization are still unclear. Here, we selected three common hardwood species in Northeast China, Juglans mandshurica, Fraxinus mandshurica, and Phellodendron amurense, conducted root pruning and nutrient addition. In this study, we analyzed the PG, morphology, and other anatomy traits of newly formed root branches. The results showed all root length, diameter, and stele, as well as hydraulic conductivity, were significantly positi...
Absorptive root traits show remarkable cross-species variation, but major root trait dimensions acro...
Tree age has an important effect on the form and function of fine roots. Previous studies have focus...
Understanding fine root morphology is crucial to uncover water and nutrient acquisition and transpos...
Protoxylem grouping (PG), a classification based on the number of protoxylem poles, is a crucial ind...
We have limited understanding of architecture and morphology of fine root systems in large woody tre...
Fine roots of plants play an important role in terrestrial ecosystems. There is a close association ...
Fine roots of plants play an important role in terrestrial ecosystems. There is a close association ...
Mounting evidence has shown strong linkage of root function with root branch order. However, it is n...
Fine root anatomy plays an important role in understanding the relationship between fine root functi...
Different portions of tree root systems play distinct functional roles, yet precisely how to disting...
1. Plant functional traits have revealed trade-offs related to life-history adaptations, geographica...
International audienceWithin branched root systems, a distinct heterogeneity of traits exists. Knowl...
Fine root anatomy plays an important role in understanding the relationship between fine root functi...
Understanding fine root morphology is crucial to uncover water and nutrient acquisition and transpos...
There is an extremely limited understanding of how plants of different potential growth rate vary in...
Absorptive root traits show remarkable cross-species variation, but major root trait dimensions acro...
Tree age has an important effect on the form and function of fine roots. Previous studies have focus...
Understanding fine root morphology is crucial to uncover water and nutrient acquisition and transpos...
Protoxylem grouping (PG), a classification based on the number of protoxylem poles, is a crucial ind...
We have limited understanding of architecture and morphology of fine root systems in large woody tre...
Fine roots of plants play an important role in terrestrial ecosystems. There is a close association ...
Fine roots of plants play an important role in terrestrial ecosystems. There is a close association ...
Mounting evidence has shown strong linkage of root function with root branch order. However, it is n...
Fine root anatomy plays an important role in understanding the relationship between fine root functi...
Different portions of tree root systems play distinct functional roles, yet precisely how to disting...
1. Plant functional traits have revealed trade-offs related to life-history adaptations, geographica...
International audienceWithin branched root systems, a distinct heterogeneity of traits exists. Knowl...
Fine root anatomy plays an important role in understanding the relationship between fine root functi...
Understanding fine root morphology is crucial to uncover water and nutrient acquisition and transpos...
There is an extremely limited understanding of how plants of different potential growth rate vary in...
Absorptive root traits show remarkable cross-species variation, but major root trait dimensions acro...
Tree age has an important effect on the form and function of fine roots. Previous studies have focus...
Understanding fine root morphology is crucial to uncover water and nutrient acquisition and transpos...