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Seed Germination Ecology of the Cold Desert Annual Isatis violascens (Brassicaceae): Two Levels of Physiological Dormancy and Role of the Pericarp

机译:冷漠沙漠一年生板蓝根(芸苔科)的种子萌发生态:生理休眠的两个水平和果皮的作用

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摘要

The occurrence of various species of Brassicaceae with indehiscent fruits in the cold deserts of NW China suggests that there are adaptive advantages of this trait. We hypothesized that the pericarp of the single-seeded silicles of Isatis violascens restricts embryo expansion and thus prevents germination for 1 or more years. Thus, our aim was to investigate the role of the pericarp in seed dormancy and germination of this species. The effects of afterripening, treatment with gibberellic acid (GA3) and cold stratification on seed dormancy-break were tested using intact silicles and isolated seeds, and germination phenology was monitored in an experimental garden. The pericarp has a role in mechanically inhibiting germination of fresh seeds and promotes germination of nondormant seeds, but it does not facilitate formation of a persistent seed bank. Seeds in silicles in watered soil began to germinate earlier in autumn and germinated to higher percentages than isolated seeds. Sixty-two percent of seeds in the buried silicles germinated by the end of the first spring, and only 3% remained nongerminated and viable. Twenty to twenty-five percent of the seeds have nondeep physiological dormancy (PD) and 75–80% intermediate PD. Seeds with nondeep PD afterripen in summer and germinate inside the silicles in autumn if the soil is moist. Afterripening during summer significantly decreased the amount of cold stratification required to break intermediate PD. The presence of both nondeep and intermediate PD in the seed cohort may be a bet-hedging strategy.
机译:在中国西北寒冷的沙漠中,不同种类的十字花科植物的果实开裂,这表明该特性具有适应性优势。我们假设板蓝根单晶硅谷的果皮限制了胚胎的扩张,从而阻止了1年或更长时间的萌发。因此,我们的目的是研究果皮在该物种的种子休眠和萌发中的作用。使用完整的粉仓和分离的种子测试了后熟,赤霉素(GA3)处理和冷分层处理对种子休眠的影响,并在实验花园中监测了萌发物候。果皮在机械上抑制新鲜种子的发芽,并促进非休眠种子的发芽,但不利于形成持久的种子库。浇水土壤中的硅谷种子在秋天开始发芽,并且发芽的百分比高于分离的种子。到第一个春天结束时,埋在硅土中的种子中有62%萌发了种子,而只有3%的种子保持了未萌发的状态。 25%到25%的种子具有非深层生理休眠(PD)和75-80%的中等PD。如果土壤潮湿,PD较深的种子在夏季后剥离,秋季在硅土内发芽。夏季再熟后,显着减少了打破中间PD所需的冷分层量。在种子队列中同时存在非深度和中间PD可能是一种套期保值策略。

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