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Modeling flower induction in Lilium longiflorum.

机译:在长百合中模拟花诱导。

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The effectiveness of long photoperiods and cold temperature in inducing flowering of Lilium longiflorum Thunb. 'Nellie White' was determined by comparing flower induction index (FII) values. FII was calculated by multiplying the relative effectiveness of a treatment in reducing total leaf number by the fraction of flowering plants resulting from the treatment. FII increased as the storage duration increased from 0 to 8 weeks and as the storage temperature decreased from 17.5 to 5C. Nonlinear regression analysis was used to model FII as a function of storage duration and temperature. The resulting model yielded an estimated optimum vernalization temperature of 4.0C. The surface generated by the model resembled an asymmetric hill. LDs during vernalization were not effective above 20C or below 10C and were not as effective as cold temperatures in inducing flowering. LDs induced flowering best at 17.5C. Substituting LDs for cold temperatures resulted in lower FII values. Plants were more responsive when LDs were preceded by cold temperatures. LDs alone were least effective in inducing flowering.
机译:长时间光照和低温诱导长百合百合开花的功效。通过比较花诱导指数(FII)值来确定“内莉·怀特”。通过将处理在减少总叶数方面的相对有效性乘以处理产生的开花植物的分数,即可计算出FII。 FII随着储存时间从0到8周的增加以及储存温度从17.5到5C的降低而增加。非线性回归分析被用来作为储存时间和温度的函数来模拟FII。所得模型得出的估计最佳春化温度为4.0C。该模型生成的表面类似于不对称的丘陵。春化期间的LDs在高于20°C或低于10°C时无效,并且在诱导开花方面不如低温有效。 LDs在17.5C时最佳诱导开花。用LD代替低温会降低FII值。在低温之前,LD使植物反应更灵敏。 LDs诱导开花的效果最差。

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