Li Dandan, Nan Hongwei, Liang Jin, Cheng Xinying, Zhao ChunZhang, Yin HuaJun, Yin ChunYing, Liu Qing
Key Laboratory of Mountain Ecological Restoration and Bioresource Utilization, Chengdu Institute of Biology, Chinese Academy of Sciences, Chengdu, China.
Ecological Restoration Biodiversity Conservation Key Laboratory of Sichuan Province, Chengdu Institute of Biology, Chinese Academy of Sciences, Chengdu, China.
PLoS One. 2017 Nov 2;12(11):e0187496. doi: 10.1371/journal.pone.0187496. eCollection 2017.
Investigating the responses of trees to the heterogeneous distribution of nutrients in soil and simultaneous presence of neighboring roots could strengthen the understanding of an influential mechanism on tree growth and provide a scientific basis for forest management. Here, we conducted two split-pot experiments to investigate the effects of nutrient heterogeneity and intraspecific competition on the fine root morphology and nutrient capture of Picea asperata. The results showed that P. asperata efficiently captured nutrients by increasing the specific root length (SRL) and specific root area (SRA) of first-and second-order roots and decreasing the tissue density of first-order roots to avoid competition for resources and space with neighboring roots. The nutrient heterogeneity and addition of fertilization did not affect the fine root morphology, but enhanced the P and K concentrations in the fine roots in the absence of a competitor. On the interaction between nutrient heterogeneity and competition, competition decreased the SRL and SRA but enhanced the capture of K under heterogeneous soil compared with under homogeneous soil. Additionally, the P concentration, but not the K concentration, was linearly correlated to root morphology in heterogeneous soil, even when competition was present. The results suggested that root morphological features were only stimulated when the soil nutrients were insufficient for plant growth and the nutrients accumulations by root were mainly affected by the soil nutrients more than the root morphology.
研究树木对土壤中养分异质分布以及相邻根系同时存在的响应,有助于加深对影响树木生长机制的理解,并为森林管理提供科学依据。在此,我们进行了两项分根盆栽试验,以研究养分异质性和种内竞争对云杉细根形态及养分获取的影响。结果表明,云杉通过增加一、二级根的比根长(SRL)和比根面积(SRA),并降低一级根的组织密度,有效地获取养分,以避免与相邻根系争夺资源和空间。养分异质性和施肥处理在无竞争情况下不影响细根形态,但提高了细根中的磷和钾浓度。关于养分异质性与竞争的相互作用,与均质土壤相比,竞争降低了异质土壤条件下的SRL和SRA,但增强了钾的获取。此外,即使存在竞争,在异质土壤中,磷浓度而非钾浓度与根系形态呈线性相关。结果表明,只有当土壤养分不足以支持植物生长时,根系形态特征才会受到刺激,并且根系的养分积累主要受土壤养分影响,而非根系形态。