首页> 美国卫生研究院文献>Annals of Botany >The Changing Window of Conditions that Promotes Germination of Two Fire Ephemerals Actinotus leucocephalus (Apiaceae) and Tersonia cyathiflora (Gyrostemonaceae)
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The Changing Window of Conditions that Promotes Germination of Two Fire Ephemerals Actinotus leucocephalus (Apiaceae) and Tersonia cyathiflora (Gyrostemonaceae)

机译:促进两种火短发芽萌发的条件变化的条件窗口:白腹猕猴桃(Apiaceae)和特氏沙蚕(Gyrostemonaceae)

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摘要

• Background and Aims Following a period of burial, more Actinotus leucocephalus (Apiaceae) and Tersonia cyathiflora (Gyrostemonaceae) seeds germinate in smoke water. The main aim of this study was to determine whether these fire-ephemeral seeds exhibit annual dormancy cycling during burial. This study also aimed to determine the effect of dormancy alleviation on the range of light and temperature conditions at which seeds germinate, and the possible factors driving changes in seed dormancy during burial.• Methods Seeds were collected in summer, buried in soil in mesh bags in autumn and exhumed every 6 months for 24 months. Germination of exhumed and laboratory-stored (15 °C) seeds was assessed at 20 °C in water or smoke water. Germination response to light or dark conditions, incubation temperature (10, 15, 20, 25 and 30 °C), nitrate and gibberellic acid were also examined following burial or laboratory storage for 24 months. In the laboratory seeds were also stored at various temperatures (5, 15, 37 and 20/50 °C) for 1, 2 and 3 months followed by germination testing in water or smoke water.• Key Results The two species exhibited dormancy cycling during soil burial, producing low levels of germination in response to smoke water when exhumed in spring and high levels of germination in autumn. In autumn, seeds germinated in both light and dark and at a broader range of temperatures than did laboratory-stored seeds, and some Actinotus leucocephalus seeds also germinated in water alone. Dormancy release of Actinotus leucocephalus was slow during dry storage at 15 °C and more rapid at higher temperatures (37 and 20/50 °C); weekly wet/dry cycles further accelerated the rate of dormancy release. Cold stratification (5 °C) induced secondary dormancy. By contrast, no Tersonia cyathiflora seeds germinated following any of the laboratory storage treatments.• Conclusions Temperature and moisture influence dormancy cycling in Actinotus leucocephalus seeds. These factors alone did not simulate dormancy cycling of Tersonia cyathiflora seeds under the conditions tested.
机译:•背景和目的经过一段时间的埋葬,更多的白光猕猴桃(Apiaceae)和特松(Tersonia cyathiflora)(Gyrostemonaceae)种子在烟水中发芽。这项研究的主要目的是确定这些火临时种子在埋葬期间是否表现出年度休眠周期。这项研究还旨在确定休眠缓解对种子发芽的光照和温度条件范围的影响,以及可能导致埋藏过程中种子休眠发生变化的因素。•方法夏季收集种子,将其埋在网袋中的土壤中在秋天,每6个月挖掘一次,持续24个月。在水或烟水中,在20°C下评估发掘出的和实验室储存的(15°C)种子的发芽率。在埋葬或实验室存放24个月后,还要检查其在明亮或黑暗条件下的萌发响应,孵育温度(10、15、20、25和30°C),硝酸盐和赤霉素。在实验室中,种子还分别在各种温度(5、15、37和20/50°C)下保存1、2和3个月,然后在水或烟水中进行发芽测试。土壤埋藏物,春季出土时对烟水产生低水平的发芽,秋季时则发芽高。秋天,种子在黑暗和黑暗中以及在比实验室储存的种子更宽的温度范围内发芽的种子,一些白背猕猴桃种子也仅在水中发芽。在温度为15 C的干燥储存过程中,白线猕猴桃的休眠释放缓慢,而在较高的温度(37和20/50 C)下,休眠释放速度更快。每周的干/湿循环进一步加快了休眠释放的速度。冷分层(5 C)引起次生休眠。相比之下,在任何实验室存储处理后,都没有特尔沙尼亚(Tesonia cyathiflora)种子发芽。•结论温度和湿度会影响白背猕猴桃种子的休眠周期。在这些条件下,仅这些因素并不能模拟特尔沙尼亚茶树种子的休眠循环。

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