首页> 外文期刊>Ecotoxicology >Short- and long-term response of sunflower to airborne bromoxynil-octanoate under controlled and field conditions.
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Short- and long-term response of sunflower to airborne bromoxynil-octanoate under controlled and field conditions.

机译:在受控和田间条件下,向日葵对空气中溴代辛酸辛酸酯的短期和长期响应。

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Wind tunnel studies and a field study were conducted to investigate the impact of the airborne herbicide bromoxynil-octanoate on non-target plants. Sunflowers at the two-leaf stage were used as test plants and exposed for 24 h in a wind tunnel to a range of concentrations of airborne bromoxynil-octanoate. Quantum yield of electron transport at Photosystem II (phiPSII) of exposed leaves and leaves developed after exposure, plant height, days to flower and head diameter were used to determine the short- and long-term response of sunflowers to bromoxynil-octanoate. Quantum yield of exposed leaves and of the second leaf pair, determined 1 h and 2 days after exposure, was reduced at concentrations >0.449 and >1.159 microg/m3, respectively, but no effects on further leaf pairs developed after exposure were observed. Growth parameters were partly affected when exposed to >1.448 microg/m3. In a field study a maize plot was treated with bromoxynil-octanoate and parathion-methyl, used as a tracer compound. Afterwards, potted sunflowers were placed inside the maize plot and at different distances (2, 4, 8 and 16 m) from the treated plot. The highest concentrations of bromoxynil-octanoate and parathion-methyl collected in air samples at a distance of 8 m outside of the treated plot were 0.100 and 0.055 microg/m3, respectively. Little of the breakdown product bromoxynil phenol was detected in the air. Detectable concentrations of bromoxynil-octanoate and bromoxynil phenol were found only in a few leaf samples, whereas parathion-methyl was detected in almost 50% of the leaf samples up to 16 m from the treated plot. Quantum yield and growth of sunflower were not affected due to low concentrations of bromoxynil-octanoate in the air.
机译:进行了风洞研究和野外研究,以研究气载除草剂溴氧腈辛酸酯对非目标植物的影响。将两叶期的向日葵用作试验植物,并在风洞中暴露于一系列浓度的空气传播的辛酸溴代苯腈24小时。暴露的叶片和暴露后发育的叶片,植物高度,花天数和头顶直径在光系统II(phiPSII)处电子传输的量子产率用于确定向日葵对溴代苯磺酸辛酸的短期和长期响应。暴露后1 h和2天测定的暴露叶和第二对叶的量子产率分别在> 0.449和> 1.159 microg / m3的浓度下降低,但未观察到对暴露后进一步发展的叶对的影响。当暴露于> 1.448 microg / m3时,部分生长参数受到影响。在田间研究中,将玉米地块用溴苯腈-辛酸酯和甲基对硫磷处理,用作示踪剂。然后,将盆栽的向日葵放在玉米地块内,并与处理地块相距不同的距离(2、4、8和16 m)。在处理过的样地外8 m处的空气样品中收集的辛酸溴苯腈和对硫磷的最高浓度分别为0.100和0.055 microg / m3。在空气中几乎没有发现分解产物溴苯腈苯酚。仅在少数叶片样品中发现了可检测浓度的溴苯腈-辛酸酯和溴苯腈酚,而在距处理地块直至16 m的近50%叶片样品中检测到甲基对硫磷。由于空气中溴辛尼辛酸的浓度低,因此向日葵的量子产量和生长不受影响。

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