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生殖生长期间的土壤水势和积温控制着 Huds 中的种子休眠。

Soil water potential and temperature sum during reproductive growth control seed dormancy in Huds.

作者信息

Menegat Alexander, Milberg Per, Nilsson Anders T S, Andersson Lars, Vico Giulia

机构信息

Department of Crop Production Ecology Swedish University of Agricultural Sciences (SLU) Uppsala Sweden.

Department of Physics, Chemistry and Biology (IFM) Linköping University Linköping Sweden.

出版信息

Ecol Evol. 2018 Jun 12;8(14):7186-7194. doi: 10.1002/ece3.4249. eCollection 2018 Jul.

Abstract

The sustainable management of unwanted vegetation in agricultural fields through integrated weed control strategies requires detailed knowledge about the maternal formation of primary seed dormancy, to support the prediction of seedling emergence dynamics. This knowledge is decisive for the timing of crop sowing and nonchemical weed control measures. Studies in controlled environments have already demonstrated that thermal conditions and, to some extent, water availability during seed set and maturation has an impact on the level of dormancy. However, it is still unclear if this applies also under field conditions, where environmental stressors and their timing are more variable. We address this question for in south-western Sweden. We quantified the effects of cumulated temperature and precipitation as well as soil water potential during the reproductive growth phase of on primary seed dormancy under field conditions. Empirical models differing in focal time intervals and, in case of soil water potential, focal soil depths were compared regarding their predictive power. The highest predictive power for the level of primary dormancy of seeds was found for a two-factorial linear model containing air temperature sum between 0 and 7 days before peak seed shedding as well as the number of days with soil water potential below field capacity between 7 and 35 days before peak seed shedding. For soil water potential, it was found that only the top 10 cm soil layer is of relevance, which is in line with the shallow root architecture of . We conclude that for this species the level of dormancy depends on the magnitude and timing of temperature and water availability during the reproductive growth phase. Water availability appears to be more important during maternal environmental perception and temperature during zygotic environmental perception.

摘要

通过综合杂草控制策略对农田中有害植被进行可持续管理,需要详细了解初级种子休眠的母体形成情况,以支持对幼苗出土动态的预测。这些知识对于作物播种时间和非化学杂草控制措施至关重要。在可控环境中的研究已经表明,种子形成和成熟期间的热条件以及在一定程度上的水分供应会对休眠水平产生影响。然而,在田间条件下(环境压力因素及其时间变化更大)这是否也适用仍不清楚。我们针对瑞典西南部的[具体物种]解决了这个问题。我们量化了[具体物种]生殖生长阶段累积温度、降水量以及土壤水势对田间条件下初级种子休眠的影响。比较了在焦点时间间隔不同以及在土壤水势情况下焦点土壤深度不同的经验模型的预测能力。对于[具体物种]种子的初级休眠水平,发现包含种子脱落高峰期前0至7天的气温总和以及种子脱落高峰期前7至35天土壤水势低于田间持水量天数的双因素线性模型具有最高的预测能力。对于土壤水势,发现只有顶部10厘米土层具有相关性,这与[具体物种]浅根系结构一致。我们得出结论,对于该物种,休眠水平取决于生殖生长阶段温度和水分供应的大小和时间。在母体环境感知期间水分供应似乎更重要,而在合子环境感知期间温度更重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d54f/6065331/a09358527182/ECE3-8-7186-g001.jpg

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