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The effect of alternating temperature on the rest break process of male flowers of Cryptomeria japonica D. Don

机译:交变温度对日本柳杉雄花歇息过程的影响

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摘要

In order to develop a model for predicting the period of male flower anthesis in Cryptomeria japonica, it is requisite to clarify the rest break process in male flowers. In this study, the effect of alternating temperatures in a daily cycle on rest break was investigated using twigs bearing male flowers from three clones of C. japonica. Four temperature treatments with the same daily mean of 8°C were applied to sample twigs over a period of 35 days: (1) 8°C constant (TR-A); (2) 7°–10°C alternating (TR-B); (3) 5.5°–13°C alternating (TR-C); and (4) 4°–16°C alternating (TR-D). After treatment, the sample twigs were forced to bloom at a constant temperature of 16°C, and the cumulative effective temperatures (CETs) required for anthesis were compared. While the CETs for anthesis were the same for TR-A and TR-B, that for TR-C was significantly higher. After TR-D, almost no male flower bloomed, indicating that this treatment was ineffective in breaking rest. When considering these results on an hour basis, it was a reasonable interpretation that 13°C had no effect on breaking rest while the temperatures below 10°C were all equally effective. On the other hand, temperatures of 16°C or above were considered to have an antagonizing effect that cancels the effects of chilling temperatures below 10°C. These results suggest that the effects of high temperatures during the daytime in chilling periods should be properly incorporated into a model of the process by which rest of male flowers is broken.
机译:为了建立一个预测日本柳杉雄花期的模型,有必要弄清雄花的休息时间。在这项研究中,使用带有三个日本粳稻无性系的雄花的嫩枝研究了每日温度交替变化对休息的影响。在35天的时间内,将四种平均日平均温度为8°C的温度处理应用于样品树枝:(1)8°C恒定(TR-A); (2)交替7°–10°C(TR-B); (3)5.5°–13°C交替(TR-C); (4)4°–16°C交替(TR-D)。处理后,迫使样品树枝在16°C的恒定温度下开花,并比较花粉所需的累积有效温度(CET)。虽然TR-A和TR-B的花药CET相同,但TR-C的CET显着更高。 TR-D后,几乎没有雄花盛开,表明该处理方法对打破休息无效。以小时为单位考虑这些结果时,可以合理地解释为13°C对休息休息没有影响,而10°C以下的温度都同样有效。另一方面,认为16℃或更高的温度具有抵消冷却温度低于10℃的影响的拮抗作用。这些结果表明,在寒冷时期白天高温的影响应该适当地纳入到打破雄花的过程模型中。

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