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不同土壤水分条件下CO2浓度对禾谷缢管蚜种群的影响
引用本文:张钧,刘敬,王根轩,王亚馥.不同土壤水分条件下CO2浓度对禾谷缢管蚜种群的影响[J].应用生态学报,2001,12(2):253-256.
作者姓名:张钧  刘敬  王根轩  王亚馥
作者单位:[1]兰州大学干旱农业生态国家重点实验室,兰州730000 [2]兰州大学干旱农业生态国家重点实验
基金项目:国家自然科学基金(39770447)和国家重点基础研究专项经费(G1999011705)和高等学校骨干教师资助计划项目.
摘    要:利用开顶式熏气室研究了不同土壤水分条件下不同CO2浓度对禾谷缢管蚜种群的影响,以期对未来大气CO2浓度升高条件下不同降雨地区的小麦-蚜虫关系发展趋势做出蚜虫关系发展趋势做出初步预测,结果表明,随CO2浓度从350ul.L^-1上升至550ul.L^-1时,60%土壤水分下的种群增长最快;当CO2浓度从550ul.L^-1上升到700ul.L^-1时,60%和40%土亍水分下的种群增长相近,且高于80%土壤水分下的增长,据此可以认为,随大气CO2浓度升高,禾谷缢管蚜种群会持续增长,从目前至下世纪中叶的时间内可能是蚜种群增长最快的阶段,特别在干旱,半干旱地区禾谷缢管蚜种群增长幅度较大,小麦受受较重。

关 键 词:大气CO2浓度  土壤水分条件  小麦  禾谷缢管蚜  种群增长  为害趋势
文章编号:1001-9332(2001)02-0253-04
修稿时间:1999年11月22

Effect of elevated atmospheric CO2 concentration on Rhopalsiphum padi population under different soil water levels]
ZHANG Jun,LIU Jing,WANG Genxuan,Wang Yafu.Effect of elevated atmospheric CO2 concentration on Rhopalsiphum padi population under different soil water levels][J].Chinese Journal of Applied Ecology,2001,12(2):253-256.
Authors:ZHANG Jun  LIU Jing  WANG Genxuan  Wang Yafu
Abstract:With the aim of forecasting the wheat-aphid relationships under different precipitation in the future atmospheric CO2 environment, the effects of different atmospheric CO2 concentration on Rhopalsiphum padi population under different soil water levels in Open-Top chambers were studied. The results showed that Rhopalsiphum padi population grew constantly with the continuous rising of atmospheric CO2 and it grew more quickly when CO2 concentration increased from 350 microliters.L-1 to 550 microliters.L-1. In each CO2 concentration treatment, R. padi population were distinct under different soil water level, and they were the highest under 60% of field water capacity treatment. When CO2 concentration increased from 350 microliters.L-1 to 550 microliters.L-1, the increase of R. padi population under 60% of field water capacity treatment was higher than that under 40% and 80% treatment. When CO2 concentration increased from 550 microliters.L-1 to 700 microliters.L-1, the increases of R. padi population under 60% and 40% soil water treatments were the same and both higher than that under 80% treatment. These results suggested that R. padi population would grow more quickly from the beginning to the middle of the 21st century and bring more damages to the wheat in arid and semiarid area.
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