Zadworny Marcin, McCormack M Luke, Rawlik Katarzyna, Jagodziński Andrzej M
Institute of Dendrology, Polish Academy of Sciences, Parkowa 5, 62-035 Kórnik, Poland
Key Laboratory of Ecosystem Network Observation and Modeling, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, China.
Tree Physiol. 2015 Jun;35(6):644-52. doi: 10.1093/treephys/tpv018. Epub 2015 Mar 22.
Patterns of root traits among different root orders and their variation across seasons are of considerable importance for soil resource acquisition and partitioning in forest ecosystems. We evaluated whether morphological, anatomical and biochemical traits varied among root orders of Quercus robur (L.) sampled across spring, summer and fall seasons and growing in two different soil types with contrasting site fertility. We found no consistent differences in root diameter and specific root length in relation to soil type or growing season. There was, however, a strong seasonal variation in patterns of nitrogen (N) concentration among root orders. During spring and summer, N concentration was highest in the most distal, absorptive portion of the root system. At the end of the growing season, we observed a sharp decline in the N concentration of these lower-order, absorptive roots and an increase in N concentration of the higher-order, transport roots. The specific mechanisms driving the seasonally changing N concentration remain unclear but are likely related to different functions of lower-order roots for absorption and higher-order roots for structure and storage. Future work should identify how common the observed seasonal changes in N concentration are across species and determine what specific environmental cues plants or roots use to trigger shifts in resource allocation within the root branching hierarchy.
不同根序间的根系性状模式及其随季节的变化,对于森林生态系统中土壤资源的获取和分配具有相当重要的意义。我们评估了在春季、夏季和秋季采样的、生长于两种具有不同立地肥力的不同土壤类型中的欧洲栎(Quercus robur (L.))的根序间,其形态、解剖和生化性状是否存在差异。我们发现,根直径和比根长与土壤类型或生长季节并无一致的差异。然而,根序间的氮(N)浓度模式存在强烈的季节性变化。在春季和夏季,根系最远端的吸收部分氮浓度最高。在生长季节末期,我们观察到这些低阶吸收根的氮浓度急剧下降,而高阶运输根的氮浓度则有所增加。驱动氮浓度季节性变化的具体机制尚不清楚,但可能与低阶根的吸收功能和高阶根的结构与储存功能不同有关。未来的研究应确定所观察到的氮浓度季节性变化在物种间的普遍程度,并确定植物或根系利用哪些特定的环境线索来触发根部分支层次结构内资源分配的转变。