THE WAGENINGEN RHIZOLAB - A FACILITY TO STUDY SOIL-ROOT-SHOOT-ATMOSPHERE INTERACTIONS IN CROPS .1. DESCRIPTION OF MAIN FUNCTIONS

被引:34
作者
VANDEGEIJN, SC
VOS, J
GROENWOLD, J
GOUDRIAAN, J
LEFFELAAR, PA
机构
[1] WAGENINGEN UNIV AGR, DEPT THEORET PROD ECOL, 6700 AK WAGENINGEN, NETHERLANDS
[2] WAGENINGEN UNIV AGR, DEPT AGRON, WAGENINGEN, NETHERLANDS
关键词
CROP GROWTH; GAS EXCHANGE; MINIRHIZOTRONS; NUTRIENTS; PHOTOSYNTHESIS; RESPIRATION; RHIZOTRON; ROOT OBSERVATION; ROOT GROWTH; WATER BALANCE;
D O I
10.1007/BF00046399
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
A research facility is described for the integrated study of soil-root-shoot-atmosphere relationships in crops. The Wageningen Rhizolab has been in use since 1990, and consists of two rows, each with eight below-ground compartments aligned along a corridor. A rain shelter automatically covers the experimental area at the start of rainfall. Compartments are 125 cm x 125 cm and 200 cm deep. Each compartment has a separate drip irrigation system. Crop canopy photosynthesis, respiration, and transpiration can be measured simultaneously and continuously on four out of eight compartments at a time. Each compartment can be filled with a selected soil material (repacked soil) and is accessible from the corridor over its full depth. Multiple sensors for measuring soil moisture status, electrical conductivity, temperature, soil respiration, trace gases and oxygen are installed in spatial patterns in accordance with the requirements of the experiments. Sensors are connected to control and data-acquisition devices. Likewise, provisions have been made to sample manually the soil solution and soil atmosphere. Root observation tubes (minirhizotrons) are installed horizontally at depth intervals ranging from 5 cm (upper soil layers) to 25 cm (below 1 m). The facility is at present in use to study growth and development of vegetation (crops) in relation to drought, nutrient status, soil-borne diseases, and underground root competition. One important application is the study of elevated CO2 concentration and climate change and the way they affect crops and their carbon economy. Growth and development of field grown vegetables and winter cover crops are also evaluated. The common aspect of those studies is to gain a better understanding of crop growth under varying environmental conditions, and to collect datasets that may help to improve mechanistic crop growth simulation models that can address suboptimal growth conditions.
引用
收藏
页码:275 / 287
页数:13
相关论文
共 30 条
[1]   PHOTOSYNTHETIC RESPONSE OF SOYBEAN CANOPIES TO FULL-SEASON CARBON-DIOXIDE ENRICHMENT [J].
ACOCK, B ;
REDDY, VR ;
HODGES, HF ;
BAKER, DN ;
MCKINION, JM .
AGRONOMY JOURNAL, 1985, 77 (06) :942-947
[2]   COLLECTION AND EVALUATION OF LARGE SOIL MONOLITHS FOR SOIL AND CROP STUDIES [J].
BELFORD, RK .
JOURNAL OF SOIL SCIENCE, 1979, 30 (02) :363-+
[3]   COMPETITION AND NITROGEN LOSS FROM PLANTS IN GRASSLAND ECOSYSTEMS [J].
BERENDSE, F ;
ELBERSE, WT ;
GEERTS, RHME .
ECOLOGY, 1992, 73 (01) :46-53
[4]  
Bohm W., 1979, Ecological Studies, V33
[5]  
BOX JE, 1992, ROOT ECOLOGY ITS APP, P89
[6]   MEASURING ROOT TURNOVER USING THE MINIRHIZOTRON TECHNIQUE [J].
CHENG, WX ;
COLEMAN, DC ;
BOX, JE .
AGRICULTURE ECOSYSTEMS & ENVIRONMENT, 1991, 34 (1-4) :261-267
[7]   THE TIME-DOMAIN REFLECTOMETRY METHOD FOR MEASURING SOIL-WATER CONTENT AND SALINITY [J].
DALTON, FN ;
VANGENUCHTEN, MT .
GEODERMA, 1986, 38 (1-4) :237-250
[8]  
DIJKSTRA P, 1993, IN PRESS 1993 P WORK
[9]  
GROENWOLD J, 1990, 1ST P C EUR SOC AGR
[10]   THE EXTRACTION OF SOIL-WATER BY THE SUCTION-CUP METHOD - A REVIEW [J].
GROSSMANN, J ;
UDLUFT, P .
JOURNAL OF SOIL SCIENCE, 1991, 42 (01) :83-93