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首页> 外文期刊>Tropical Agriculture and Development >Genotypic Variation of Sensitivities to Photoperiod and Temperature in Different Growth Stages in Soybean World Mini-Core Collections (GmWMC)
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Genotypic Variation of Sensitivities to Photoperiod and Temperature in Different Growth Stages in Soybean World Mini-Core Collections (GmWMC)

机译:大豆世界迷你核心收集(GMWMC)不同生长阶段敏感性对光周期和温度的基因型变异(GMWMC)

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摘要

Short photoperiod and high temperature could be causal factors for the low productivity of soybean in tropical Asian countries. In order to find adaptable genotypes suited to tropical areas, we evaluated the variation in responses to photoperiod and temperature of soybean in the world mini-core collections (GmWMC). Seeds were sown in late May (long photoperiod) and early August (short photoperiod) from 2015 to 2017 in the field and in a growth chamber at Saga University, Japan. The dates of emergence, first flowering (Rl), first pod appearance (R3), and the start of seed filling (R5) were recorded. The daily average temperatures and photoperiodic hours were collected from weather stations. The days from emergence to first flower 叩en (DEF) were shortened by late sowing in all genotypes, whereas the accumulated temperatures during emergence to first flower open (ATEF) did not respond to sowing time in some early flowering genotypes, indicating that these genotypes may be insensitive to photoperiod.The accumulated temperature (AT) of R1-R3 (for pod formation) responded to the sowing time similarly to that for flowering. However, there were no such responses observed for AT of R3-R5 (for pod elongation). The growth chamber experiment showed a longerDEF at lower temperature; however, the ATEF and EATEF (effective ATEF) did not respond to the change in temperature. The results suggested that ATEF could represent photosensitivity better than DEF in natural conditions, and temperature might affect plant development quantitatively in soybean.
机译:短光周期和高温可能是热带亚洲国家大豆生产率低的因果区。为了发现适合热带地区的适应性基因型,我们评估了世界迷你核心收集(GMWMC)在大豆的光周期和温度反应的变化。种子在5月下旬(长光周期)和8月初从2015年到2017年播种,日本Saga大学的一个增长室中的2015年至2017年。记录出苗的日期,首先开花(RL),第一荚外观(R3),以及种子填充(R5)的开始。从气象站收集每日平均气温和光周期小时。在所有基因型中播种的晚期播种,从出现到第一朵花的日子,而在初始开花(atef)期间累积的温度在一些早期开花基因型中没有响应播种时间,表明这些基因型可以对光周期不敏感。R1-R3(用于豆荚形成)的累积温度(AT)与开花的播种时间响应播种时间。然而,对于R3-R5(用于豆荚伸长),没有观察到这种反应。生长室实验在较低温度下显示出长度;然而,atef和eatef(有效的atef)没有响应温度的变化。结果表明,atef可以在自然条件下更好地代表光敏性,温度可能在大豆中定量地影响植物发育。

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