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Weed emergence as influenced by soil moisture and air temperature

机译:土壤水分和气温影响杂草出苗

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Emergence of weed seedlings depends on soil environmental conditions; mainly temperature and moisture, with the latter being fundamental and particularly important in environments which are characterised by irregular amounts and distribution of rainfall throughout the year. Thus, this study looks at the influence of soil moisture and air temperature on the emergence of weed seedlings. The experiment was carried out under controlled environmental conditions, using rings filled with samples of undisturbed topsoil (0–2.5 cm and 0–5 cm deep) of a Luvisol. There were four moisture levels that were maintained constant, with several repetitions (16–20). The results indicate that the maximum population density of weed plants was obtained with soil moisture near field capacity. With regard to the depth of the soil containing the seeds which contributed towards optimising population density, it was noted that the first 2–3 cm of undisturbed soil were critical for maximising the population. The emergence of seedlings was modelled using data from the 5 cm topsoil with soil moisture close to field capacity. This model indicates that a mean daily temperature sum of 446°C, which under Mediterranean autumn conditions represent a period of approximately one month, is needed, in order to obtain 80% of potential autumn-winter plant density, relative to the observed potential.
机译:杂草幼苗的出现取决于土壤环境条件。主要是温度和湿度,后者是最基本的因素,在全年降雨量不规则和降雨分布特征的环境中尤其重要。因此,本研究着眼于土壤水分和气温对杂草幼苗出苗的影响。该实验是在可控的环境条件下进行的,使用的环充满了未破坏的Luvisol表土(0-2.5厘米和0-5厘米深)样品。有四个湿度水平保持恒定,并多次重复(16–20)。结果表明,杂草植物的最大种群密度是在土壤水分接近田间容量的情况下获得的。关于含有种子的土壤深度有助于优化种群密度,应注意的是,最初2–3 cm的原状土壤对于最大化种群至关重要。使用5 cm表土的数据模拟幼苗的出土,土壤水分接近田间持水量。该模型表明,为了获得相对于观测潜力的80%的潜在秋冬季植物密度,需要在地中海秋季条件下平均每日温度总和为446°C,这代表大约一个月的时间。

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