Semenov AM, Zelenev VV
Department of Plant Sciences, Biological Farming Systems Group, Wageningen University, Marykeweg 22, 6709 PG Wageningen, The Netherlands
Microb Ecol. 2000 Aug;40(3):250-259. doi: 10.1007/s002480000030.
In a previous paper, we described wavelike distributions of bacterial populations along roots of wheat, and hypothesized that one mechanism underlying these distributions might be growth and death cycles of microorganisms in response to a moving nutrient source, the root tip. Similar wavelike distributions in microbial biomass were obtained using a simulation model for growth and death of bacteria in relation to their substrate (BACWAVE). The model was parameterized with data from one experiment on rhizosphere bacterial populations along wheat roots, and compared against a similar but independent experiment. In experiments described in this paper, similar wavelike distributions in bacterial populations were observed in response to a single artificial exudate moving linearly through a soil that had been air-dry for almost 2 years. The period of the spatial waves was longer when the tip of the artificial exudate moved at a speed of 4.2 cm/day compared to a tip moving at 1.1 cm/day, but after transformation into the temporal domain, the periods of the waves were similar for both moving speeds. The observed distributions were simulated using the BACWAVE model with similar parameter values as derived from the experiment with wheat roots mentioned above. The results presented in this paper confirm our hypothesis that wavelike distributions of bacterial population along plant roots can arise from "exudates" released primarily from the root tip, without the need for additional exudation points.
在之前的一篇论文中,我们描述了细菌群体沿小麦根系呈波状分布的情况,并推测这些分布背后的一种机制可能是微生物响应移动的养分源——根尖——而出现的生长和死亡周期。利用一个关于细菌生长和死亡与其底物关系的模拟模型(BACWAVE),得到了微生物生物量类似的波状分布。该模型用一项关于根际细菌群体沿小麦根系的实验数据进行了参数化,并与一个类似但独立的实验进行了比较。在本文所述的实验中,观察到细菌群体对一种单一的人工渗出液以线性方式穿过风干近2年的土壤时呈现出类似的波状分布。与以1.1厘米/天的速度移动的渗出液尖端相比,当人工渗出液尖端以4.2厘米/天的速度移动时,空间波的周期更长,但在转换到时间域后,两种移动速度下波的周期相似。使用BACWAVE模型,采用与上述小麦根系实验得出的类似参数值,对观察到的分布进行了模拟。本文给出的结果证实了我们的假设,即细菌群体沿植物根系的波状分布可能源于主要从根尖释放的“渗出液”,而无需额外的渗出点。