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Photosynthetic Response of Soybean to Microclimate in 26-Year-Old Tree-Based Intercropping Systems in Southern Ontario Canada

机译:加拿大南部安大略省26年树龄间作系统中大豆对小气候的光合响应

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摘要

In order to study the effect of light competition and microclimatic modifications on the net assimilation (NA), growth and yield of soybean (Glycine max L.) as an understory crop, three 26-year-old soybean-tree (Acer saccharinum Marsh., Populus deltoides X nigra, Juglans nigra L.) intercropping systems were examined. Tree competition reduced photosynthetically active radiation (PAR) incident on soybeans and reduced net assimilation, growth and yield of soybean. Soil moisture of 20 cm depth close (< 3 m) to the tree rows was also reduced. Correlation analysis showed that NA and soil water content were highly correlated with growth and yield of soybean. When compared with the monoculture soybean system, the relative humidity (RH) of the poplar-soybean, silver maple-soybean, and black walnut-soybean intercropped systems was increased by 7.1%, 8.0% and 5.9%, soil water content was reduced by 37.8%, 26.3% and 30.9%, ambient temperature was reduced by 1.3°C, 1.4°C and 1.0°C, PAR was reduced by 53.6%, 57.9% and 39.9%, and air CO2 concentration was reduced by 3.7μmol·mol-1, 4.2μmol·mol-1 and 2.8μmol·mol-1, respectively. Compared to the monoculture, the average NA of soybean in poplar, maple and walnut treatments was also reduced by 53.1%, 67.5% and 46.5%, respectively. Multivariate stepwise regression analysis showed that PAR, ambient temperature and CO2 concentration were the dominant factors influencing net photosynthetic rate.
机译:为了研究光照竞争和微气候变化对作为地下作物的大豆(Glycine max L.)的净同化(NA),生长和产量的影响,研究了三棵26岁的大豆树(Acer saccharinum Marsh)。考察了胡杨,黑胡杨,黑胡桃间作系统。树木竞争减少了大豆上发生的光合有效辐射(PAR),并减少了大豆的净同化,生长和产量。靠近树行的深度小于20 cm(<3 m)的土壤水分也减少了。相关分析表明,NA和土壤水分与大豆的生长和产量高度相关。与单作大豆相比,白杨-大豆,银枫-大豆和黑胡桃-大豆间作系统的相对湿度(RH)提高了7.1%,8.0%和5.9%,土壤含水量降低了分别降低了37.8%,26.3%和30.9%,环境温度降低了1.3°C,1.4°C和1.0°C,PAR降低了53.6%,57.9%和39.9%,空气中的CO2浓度降低了3.7μmol·mol -1 ,4.2μmol·mol -1 和2.8μmol·mol -1 。与单一栽培相比,杨树,枫树和核桃树处理的大豆平均NA分别降低了53.1%,67.5%和46.5%。多元逐步回归分析表明,PAR,环境温度和CO2浓度是影响净光合速率的主要因素。

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