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利用水热时间概念模拟繁缕的萌发过程。

Modelling the germination of Stellaria media using the concept of hydrothermal time.

作者信息

Grundy A C, Phelps K, Reader R J, Burston S

机构信息

1 Department of Crop and Weed Science, Horticulture Research International, Wellesbourne, Warwick CV35 9EF, UK.

出版信息

New Phytol. 2000 Dec;148(3):433-444. doi: 10.1046/j.1469-8137.2000.00778.x.

Abstract

The germination characteristics of Stellaria media (common chickweed) were investigated over a range of constant temperatures and degrees of moisture stress in order to assess the suitability of hydrothermal time as a basis for modelling germination under field conditions. Maximum percentage germination occurred over a much narrower temperature range around the optimum temperature than previously seen for cultivated crop seed. The entire final percentage germination response to temperature in water was well described by two probit curves, and this model was extended to describe the data at all water potentials at a temperature close to the optimum. The implications of the reduction in germination at nonoptimal temperatures are discussed with respect to the interpretation of germination progress curves and conditional dormancy. After adjusting for maximum percentage germination, a hydrothermal time model was found to fit the data set well within the conditions normally encountered in horticultural seedbeds. This separation of the final percentage germination presents a flexible modelling approach that allows for the different levels of dormancy typically expressed within weed populations. By contrast with many previously reported species, S. media had a synchronous germination rate within the population at any given temperature/water potential combination. This synchronous germination of at least a proportion of the population over a wide range of temperature and water potentials might have ecological significance for the opportunistic germination behaviour of this weed species.

摘要

为了评估水热时间作为田间条件下发芽建模基础的适用性,研究了繁缕(普通繁缕)在一系列恒温及水分胁迫程度下的发芽特性。与之前观察到的栽培作物种子相比,最大发芽率出现在最适温度附近更窄的温度范围内。水中最终发芽率对温度的整体响应可用两条概率曲线很好地描述,该模型进一步扩展以描述接近最适温度下所有水势的数据。针对发芽进程曲线的解释和条件性休眠,讨论了非最适温度下发芽率降低的影响。在调整最大发芽率后,发现水热时间模型在园艺苗床通常遇到的条件下能很好地拟合数据集。最终发芽率的这种分离呈现了一种灵活的建模方法,可考虑杂草种群中通常表现出的不同休眠水平。与许多先前报道的物种不同,在任何给定的温度/水势组合下,繁缕种群内的发芽率是同步的。在广泛的温度和水势范围内,至少一部分种群的这种同步发芽可能对该杂草物种的机会主义发芽行为具有生态意义。

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