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首页> 外文期刊>Annals of Botany >Seed dormancy and germination of the European Chaerophyllum temulum (Apiaceae), a member of a trans-Atlantic genus
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Seed dormancy and germination of the European Chaerophyllum temulum (Apiaceae), a member of a trans-Atlantic genus

机译:跨大西洋属欧洲欧洲细叶藻(Aeroaceae)的种子休眠和发芽

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Background and Aims The European Chaerophyllum temulum and two North American Chaerophyllum species have a trans-Atlantic disjunct distribution. This work aimed to resolve requirements for dormancy break and germination of C. temulum seeds and to compare dormancy traits with those of the two North American congeners. Methods Phenology of germination and embryo growth was studied by regularly exhuming seeds sown in natural conditions. Temperature requirements for embryo growth, breaking of dormancy and germination were determined by incubating seeds under controlled laboratory conditions. Additionally the effect of GA(3) on germination was tested to determine the specific dormancy type. Key Results In natural conditions, embryo growth starts in early winter. Seedlings emerge in late winter shortly after the embryos reached the critical ratio for embryo length to seed length (E : S) of approx. 0.95. Growth of the embryo only occurs during a prolonged incubation period at 5 degrees C. After stratification at 5 degrees C, which breaks physiological and morphological dormancy, seeds can germinate at a wide range of temperatures. GA(3) did not substitute for cold stratification in seeds placed at 23 degrees C. Conclusions Chaerophyllum temulum has deep complex morphophysiological dormancy. This dormancy type differs considerably from that of the two North American congeners.
机译:背景和目的欧洲蓝藻(Chaerophyllum temulum)和两个北美绿藻(Chaerophyllum)物种具有跨大西洋的分离分布。这项工作旨在解决休眠破灭和破种的要求,并将休眠特性与两个北美同类动物的休眠特性进行比较。方法通过定期挖掘自然条件下播种的种子,研究种子萌发和胚胎生长的物候学。通过在受控实验室条件下孵育种子来确定胚胎生长,打破休眠和萌发的温度要求。此外,测试了GA(3)对萌发的影响,以确定特定的休眠类型。关键结果在自然条件下,胚胎的生长始于初冬。在胚胎达到胚长与种子长的临界比(E:S)的临界比后不久,幼苗在冬季末出现。 0.95。胚的生长仅发生在5摄氏度的长时间孵育期间。在5摄氏度分层后,打破了生理和形态上的休眠状态,种子可以在很宽的温度范围内发芽。 GA(3)不能代替放置在23摄氏度的种子中的冷分层。结论查罗藻具有很深的复杂形态生理休眠。这种休眠类型与两个北美同类产品有很大的不同。

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