Soltani E, Baskin C C, Baskin J M
Department of Agronomy and Plant Breeding Sciences, College of Aburaihan, University of Tehran, Tehran, Iran.
Department of Biology, University of Kentucky, Lexington, KY, USA.
Plant Biol (Stuttg). 2017 Sep;19(5):673-682. doi: 10.1111/plb.12590. Epub 2017 Jun 28.
We present a new seed dormancy classification scheme for the non-deep level of the class physiological dormancy (PD), which contains six types. Non-deep PD is divided into two sublevels: one for seeds that exhibit a dormancy continuum (types 1, 2 and 3) and the other for those that do not exhibit a dormancy continuum (types 4, 5 and 6). Analysis of previous studies showed that different types of non-deep PD also can be identified using a graphical method. Seeds with a dormancy (D) ↔ conditional dormancy (CD) ↔ non-dormancy (ND) cycle have a low germination percentage in the early stages of CD, and during dormancy loss the germination capacity increases. However, seeds with a CD/ND (i.e. D→CD↔ND) cycle germinate to a high percentage at a narrow range of temperatures in the early stages of CD. Cardinal temperatures for seeds with either a D/ND or a CD/ND cycle change during dormancy loss: the ceiling temperature increases in seeds with Type 1, the base temperature decreases in seeds with Type 2 and the base and ceiling temperatures decrease and increase, respectively, in seeds with Type 3. Criteria for distinguishing the six types of non-deep PD and models of the temperature functions of seeds with types 1, 2 and 3 with both types of dormancy cycles are presented. The relevancy of our results to modelling the timing of weed seedling emergence is briefly discussed.
我们提出了一种针对生理休眠(PD)类非深度水平的新种子休眠分类方案,该方案包含六种类型。非深度PD分为两个亚水平:一个针对表现出休眠连续体的种子(类型1、2和3),另一个针对不表现出休眠连续体的种子(类型4、5和6)。对先前研究的分析表明,不同类型的非深度PD也可以使用图形方法来识别。具有休眠(D)↔条件休眠(CD)↔非休眠(ND)循环的种子在CD早期发芽率较低,并且在休眠丧失期间发芽能力增加。然而,具有CD/ND(即D→CD↔ND)循环的种子在CD早期在狭窄的温度范围内发芽率很高。具有D/ND或CD/ND循环的种子的基本温度在休眠丧失期间会发生变化:类型1的种子上限温度升高,类型2的种子下限温度降低,类型3的种子下限温度和上限温度分别降低和升高。本文给出了区分六种非深度PD类型的标准以及具有两种休眠循环的类型1、2和3种子的温度函数模型。简要讨论了我们的结果与杂草幼苗出土时间建模的相关性。