首页> 外文期刊>American Journal of Botany >Temperature requirements differ for the two stages of seed dormancy break in Aegopodium podagraria (Apiaceae), a species with deep complex morphophysiological dormancy
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Temperature requirements differ for the two stages of seed dormancy break in Aegopodium podagraria (Apiaceae), a species with deep complex morphophysiological dormancy

机译:七叶草(Aegopodium podagraria)(Apiaceae)的种子休眠中断的两个阶段的温度要求不同,该物种具有深复杂的形态生理休眠

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Only a few studies have considered the possibility that low temperature requirements may vary among stages of dormancy break in seeds with morphophysiological dormancy (MPD). We show that this lack of consideration in previous studies on seed dormancy and germination of Aegopodium podagraria might explain the low germination percentages and/or the relatively long periods of incubation needed for germination. Under natural temperatures, embryos began to grow in September and were fully elongated by late December; most growth occurred when the average daily mean temperature was about 10°C. Radicles emerged under snow in late winter, and cotyledons emerged after snowmelt in early spring. In laboratory experiments, 100% of the embryos grew to full length at both 0 and 5°C, whereas 0°C was much more effective than 5°C in overcoming the physiological dormancy in seeds after embryos were fully elongated. Following radicle emergence, cotyledons emerged readily in a wide range of temperatures 5°C. GA3 did not substitute for the low temperature requirement for dormancy break. Seed dormancy in A. podagraria fits Nikolaeva’s formula for deep complex MPD, i.e., C3B-C3. Better germination of seeds pretreated at 0° than at 5°C has practical implications for cultivating this species.
机译:只有很少的研究考虑了形态生理学休眠(MPD)种子的休眠期不同阶段低温需求可能不同的可能性。我们表明 在先前关于种子休眠和种子萌发的研究中缺乏考虑可能解释了 发芽率低和/或相对较低的发芽率。发芽需要长时间的 孵育。在自然温度下, 胚胎在九月开始生长,并在12月下旬完全伸长。大部分生长发生在平均每日 平均温度约为10°C时。冬末在 雪下出现胚根,而 早春融雪后子叶出现。在实验室实验中,在0和5°C时100%的胚胎 长到全长,而0°C的 克服5°C的效率要高得多。胚胎完全伸长后,种子的生理 休眠。在 胚根出现后,子叶很容易在5°C的宽范围 中出现。 GA 3 不能替代休眠中断所需的 低温要求。 A中的种子休眠。 podagraria符合Nikolaeva的深层复合 MPD公式,即C 3 B-C 3 。在 0°下预处理的种子比在5°C下更好的萌发,对于种植 该物种具有实际意义。

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