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Corn Growth Response to Elevated CO2 Varies with the Amount of Nitrogen Applied

机译:施氮量对玉米生长对二氧化碳浓度升高的响应变化

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Corn, with C4 photosynthetic metabolism, often has no photosynthetic or yield response to elevated carbon dioxide concentrations. In C3 species, the yield stimulation at elevated carbon dioxide concentrations often decreases with nitrogen limitation. I tested whether such a nitrogen interaction occurred in corn, by growing sweet corn in field plots in open top chambers at ambient and elevated (ambient + 180 mmol·mol-1) carbon dioxide concentrations for four seasons, with six nitrogen application rates, ranging from half to twice the locally recommended rate. At the recommended rate of nitrogen application, no carbon dioxide effect on production occurred. However, both ear and leaf plus stem biomass were lower for the elevated carbon dioxide treatment than for the ambient treatment at less than the recommended rate of nitrogen application, and higher at the highest rates of nitrogen application. There were no significant responses of mid-day leaf gas exchange rates to nitrogen application rate for either carbon dioxide treatment, and elevated carbon dioxide did not significantly increase leaf carbon dioxide assimilation rates at any nitrogen level. Leaf area index during vegetative growth increased more with nitrogen application rate at elevated than at ambient carbon dioxide. It is concluded that elevated carbon dioxide increased the responsiveness of corn growth to nitrogen application by increasing the response of leaf area to nitrogen application rate, and that elevated carbon dioxide increased the amount of nitrogen required to achieve maximum yields.
机译:具有C4光合作用代谢的玉米,通常对高浓度的二氧化碳没有光合作用或产量响应。在C3物种中,二氧化碳浓度升高时,增产刺激通常会因氮限制而降低。我通过在环境和升高的二氧化碳浓度(环境+ 180 mmol·mol-1)的开放式密室中的田间田地中种植甜玉米四个季节(施用六个氮肥的比例)来测试玉米中是否发生了这种氮相互作用。是当地推荐费率的一半到两倍。在推荐的氮施用速率下,不会对生产产生二氧化碳影响。但是,在低于建议的施氮量的条件下,二氧化碳浓度升高的处理过程中,穗,叶和茎的生物量均低于环境处理,而最高施氮量则较高。在任何一种二氧化碳处理下,午间叶片气体交换速率对氮素施用速率均无显着响应,并且升高的二氧化碳浓度在任何氮水平下均不会显着提高叶片二氧化碳同化率。营养生长期间的叶面积指数随施氮量的增加而增加,高于环境二氧化碳。可以得出结论,升高的二氧化碳通过增加叶面积对施氮量的响应而增加了玉米生长对施氮的响应性,而升高的二氧化碳则增加了达到最大产量所需的氮量。

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