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播种期引起的温度变化对油菜(甘蓝型油菜)的花器官发生和花芽分化过程有显著影响。

Temperature variation caused by sowing dates significantly affects floral initiation and floral bud differentiation processes in rapeseed (Brassica napus L.).

机构信息

MOA Key Laboratory of Crop Ecophysiology and Farming System in the Middle Reaches of the Yangtze River, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan 430070, Hubei, China.

MOA Key Laboratory of Crop Ecophysiology and Farming System in the Middle Reaches of the Yangtze River, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan 430070, Hubei, China.

出版信息

Plant Sci. 2018 Jun;271:40-51. doi: 10.1016/j.plantsci.2018.03.004. Epub 2018 Mar 7.

Abstract

To understand the influence of temperature on floral initiation and to reveal the relationship between floral bud development and yield potential of rapeseed (Brassica napus L.), early- ("1358"), intermediate- ("Zhongshuang No.11") and late- ("Zheshuang No.8") maturity genotypes were sown on different sowing dates under field conditions during four crop seasons. A multiplicative model was introduced to distinguish and quantify the effects of photoperiod and temperature on pre-floral initiation phase. Parameters in this model showed that early-maturity genotype was more sensitive to photoperiod; while late-maturity genotype was more sensitive to vernalization. The relationships between cumulative temperature and mean temperature of pre-floral initiation phase could be well descried by exponential equation. The developmental rate of pre-floral initiation phase against mean daily temperature displayed an asymmetrical distribution, and it decreased rapidly when the mean temperature exceeded the optimum. Leaf primordia differentiated from the shoot apical meristem showed significant linear relationship with the thermal time at pre-floral initiation phase; dynamic change of floral bud differentiated from the shoot apical meristem robustly fitted to a sigmoidal logistic curve. According to the fitted logistic equation, the maximum differentiation rate varied from 1.7 to 4.1 per 10 °Cd due to different sowing dates and genotypes. Averaged across growing seasons, sowing dates and genotypes, bud degeneration rate was 33% on the main raceme, and varied from 58% to 99% on the seven primary branches. The yield showed a significant correlation with floral bud number although the latter showed serious degeneration. In conclusion, the floral bud quantity largely determines rapeseed yield, and thus the genotypes with strong vernalization requirement should be planted early to extend the vegetative stage to achieve more fertile floral buds while the genotypes with weak vernalization requirement should be planted late to avoid flowering in chilling environment.

摘要

为了了解温度对花器官起始的影响,揭示油菜(Brassica napus L.)花芽发育与产量潜力之间的关系,在四个生育季节的田间条件下,根据不同的播种日期,分别种植了早熟(“1358”)、中熟(“中双 11”)和晚熟(“浙双 8 号”)品种。引入了一个乘法模型来区分和量化光周期和温度对花前起始阶段的影响。该模型中的参数表明,早熟基因型对光周期更敏感;而晚熟基因型对春化作用更敏感。累计温度与花前起始阶段的平均温度之间的关系可以很好地用指数方程来描述。花前起始阶段的发育速率与日均温呈不对称分布,当日均温超过最适温度时,发育速率迅速下降。从茎尖分生组织分化的叶原基与花前起始阶段的热时间呈显著线性关系;从茎尖分生组织分化的花芽的动态变化与 sigmoidal logistic 曲线拟合良好。根据拟合的 logistic 方程,由于不同的播种日期和基因型,最大分化率在 1.7 到 4.1 每 10°Cd 之间变化。在整个生育季节、播种日期和基因型中,主花序的芽退化率平均为 33%,7 个一级分枝的芽退化率从 58%到 99%不等。尽管后者严重退化,但产量与花芽数量呈显著相关。总之,花芽数量在很大程度上决定了油菜的产量,因此,具有较强春化要求的基因型应早播,以延长营养生长阶段,获得更多的可育花芽;而对春化要求较弱的基因型应晚播,以避免在寒冷环境中开花。

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