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首页> 外文期刊>Weed Technology >Use of the Sulfonylurea-Tolerant Soybean Trait to Reduce Soybean Response to Prosulfuron Soil Residues1
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Use of the Sulfonylurea-Tolerant Soybean Trait to Reduce Soybean Response to Prosulfuron Soil Residues1

机译:利用耐磺酰脲大豆特性降低大豆对磺胺嘧啶土壤残留的响应 1

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摘要

Field studies were conducted to examine the effects of the sulfonylurea-tolerant (ST) soybean and fall tillage on reducing rotational soybean response to soil-applied prosulfuron across a range of soil pH values. Prosulfuron (10 and 20 g ai/ha) was applied in the fall to simulate the maximum amount of carryover theoretically possible from corn weed control systems. ST soybean reduced effects of prosulfuron soil residues on soybean grain yield. Increased soil pH led to greater prosulfuron carryover as indicated by the differential in ST and non-ST soybean and grain yield responses. Tillage (chisel plow) did not decrease non-ST soybean response to prosulfuron soil residues. Soybean injury 30 d after emergence was well correlated with eventual yield losses in non-ST soybean. Greater soybean injury and yield loss was observed on a silt loam soil with 0.8% organic carbon than on silt loams with greater than 2.5% organic carbon.
机译:进行了田间研究,以研究耐磺酰脲(ST)大豆和秋季耕作在一定范围的土壤pH值范围内对减少大豆对土壤施用的磺草隆的旋转响应的影响。在秋季使用原磺隆(10和20 g ai / ha)来模拟理论上可能从玉米杂草控制系统获得的最大残留量。 ST大豆降低了磺隆土壤残留物对大豆籽粒产量的影响。如ST和非ST大豆以及谷物产量响应的差异所表明的,土壤pH值的升高导致了更多的前硫磺残留。耕作(凿犁)不会降低非ST大豆对磺草隆土壤残留物的反应。大豆出苗后30 d的伤害与非ST大豆最终的产量损失密切相关。在有机碳含量为0.8%的粉壤土上,观察到的大豆伤害大于有机碳含量在2.5%以上的粉壤土。

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