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首页> 外文期刊>Journal of Agricultural Science >Soil-Surface Straw Influences Micrometeorological Conditions Affecting Canola Mortality During Nighttime Frosts
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Soil-Surface Straw Influences Micrometeorological Conditions Affecting Canola Mortality During Nighttime Frosts

机译:土壤表面吸管会影响夜间霜冻中影响油菜死亡率的微观气象条件

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摘要

Our objective was to measure alterations in the micrometeorological conditions surrounding canola seedlings during frost periods, and to quantify seedling mortality as a function of straw distribution on the ground surface. The data was acquired from 15 frosts in 2014. We used four treatments, comprising ground surface without straw (SWS), ground surface entirely straw-covered (SEC), sowing line without straw (SLW), and soil with preexisting surface straw (SES), over three experiments. Net radiation (NR), soil heat flux (G), air (Ta), leaf (Lf), rosette (Tr), and surface temperature (Ts), and plant mortality were evaluated. NR was higher in the SEC treatment and lower in the SLW treatment, whereas G was higher on straw-covered ground; Ts and Ta were lower in the SEC than in the other treatments during the most intense frosts. On 06/19, Tr in the SEC and SLW treatments was -0.66 C and 0.42 C, respectively; on 08/14, Lf was -3.62 C and -2.88 C in the SEC and SLW treatments, respectively. Plant mortality due to the frost on 06/19 was 30% in the SEC treatment, but 0% in the SLW treatment; the frost of 08/14 caused 33.8% mortality in the SEC treatment and 1.25% in the SLW treatment. This therefore showed that removing straw from the sowing line improved the microclimate around the plants, thus reducing canola mortality at the beginning of the growth cycle, which is when frost events most frequently occur.
机译:我们的目标是测量霜冻时期围绕油菜幼苗周围的微观气象条件的改变,并在地面上的秸秆分布量量化幼苗死亡率。这些数据是在2014年的15级霜。我们使用了四种治疗方法,包括没有吸管(SWS)的地面,地面完全覆盖的地面(SEC),没有吸管(SLW)的播种线,以及具有预先存在的表面吸管的土壤(SES ),超过三个实验。评估净辐射(NR),土壤热通量(G),空气(TA),叶(TRE)和表面温度(TS)以及植物死亡率。在SEC处理中较高,在SLW处理中较低,而G在稻草覆盖的地面上较高;在最强烈的霜冻期间,秒的Ts和ta较低而不是在其他治疗中。在06/19,秒和SLW处理中的TR分别为-0.66℃和0.42℃; SEC和SLW处理的08/14,LF为-3.62 c和-2.88c。由于06/19的霜,植物死亡率在SEC处理中为30%,但SLW处理中的0%; 08/14的霜冻在SEC处理中引起了33.8%的死亡率,SLW治疗中的1.25%。因此,如图所示,从播种管线中去除吸管改善了植物周围的微气候,从而在生长周期开始时减少了CANOLA死亡率,这是最常见的霜冻事件。

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