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两种生态习性不同的草本植物的形态可塑性与矿质养分捕获

MORPHOLOGICAL PLASTICITY AND MINERAL NUTRIENT CAPTURE IN TWO HERBACEOUS SPECIES OF CONTRASTED ECOLOGY.

作者信息

Crick J C, Grime J P

机构信息

Unit of Comparative Plant Ecology (NERC), Department of Botany, The University, Sheffield S10, UK.

出版信息

New Phytol. 1987 Oct;107(2):403-414. doi: 10.1111/j.1469-8137.1987.tb00192.x.

Abstract

Developmental plasticity and nitrogen capture were compared in Agrostis stolonifera and Scirpus sylvaticus grown in compartmentalized root growth arenas which allowed simulation of the spatial and temporal patchiness distinguishing the conditions of mineral nutrient supply associated with fertile and infertile soils. Despite the small root system, higher rates of nitrogen capture and dry matter production were achieved by A. stolonifera at both high and low external concentrations of mineral nutrients. This species also showed a marked ability rapidly to adjust partitioning of growth between parts of the root system, thus allowing local proliferations of fine roots into sectors of high mineral nutrient concentration. Under the conditions of the experiment, this form of plasticity was only weakly developed in S. sylvaticus, which instead maintained a large but relatively unresponsive root mass under each experimental treatment. It is concluded that the high plasticity observed in A. stolonifera allows the dynamic exploitation of fertile soil by competing roots. It is predicted that the more stable pattern of root development in S. sylvaticus will confer a selective advantage in environments where mineral nutrients are strongly limiting upon productivity and become available in temporally unpredictable pulses.

摘要

在分隔的根系生长区域中种植匍匐翦股颖(Agrostis stolonifera)和水葱(Scirpus sylvaticus),比较它们的发育可塑性和氮素捕获情况。这种分隔的根系生长区域能够模拟与肥沃和贫瘠土壤相关的矿质养分供应条件在空间和时间上的斑块性。尽管根系较小,但在高、低外部矿质养分浓度条件下,匍匐翦股颖都能实现更高的氮素捕获率和干物质产量。该物种还表现出显著的能力,能够迅速调整根系各部分之间的生长分配,从而使细根能够局部增生到高矿质养分浓度区域。在实验条件下,这种可塑性形式在水葱中发育较弱,相反,在每种实验处理下,水葱都保持着较大但相对反应迟钝的根系质量。得出的结论是,在匍匐翦股颖中观察到的高可塑性使其竞争根系能够动态利用肥沃土壤。据预测,在矿质养分对生产力强烈限制且以时间上不可预测的脉冲形式出现的环境中,水葱更稳定的根系发育模式将赋予其选择优势。

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