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Cultural treatments for accelerated growth and flowering of Panicum virgatum

机译:文化处理,以加快紫阳花的生长和开花

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摘要

Background: Exploiting heterosis through hybrid breeding is essential to increase biomass yields of switchgrass (Panicum virgatum). However, life cycle timespan for clone evaluation for field evaluation is a major limitation to genetic selection. Methods & results: In an attempt to shorten the switchgrass life cycle timespan, we investigated the effect of four variables on the vegetative and reproductive morphology of the P. virgatum cultivar "Alamo": day length, temperature, container size, and application of plant growth regulators. Seedlings grew fastest and reached flowering fastest under 18 hours of daylight with growth being severely and mildly inhibited at 8 h and 23 h, respectively. Under the optimum (18 h) photoperiod, day temperature of 25℃ led to the fastest growth and flowering whereas a 5℃ increase or decrease inhibited growth and flowering. Within the 18 h/25℃ treatment, 44% of plants flowered after 90 d and >15% of plants reached full anthesis or post-anthesis seed set. Conclusions: Allowing 45 d for seed set and 30 d for cold stratification, generation time for the post-anthesis plants grown in 18 h/25℃ conditions is approximately 165 days, allowing for the production of two generations of switchgrass per year for accelerating germplasm development for this perennial bioenergy crop.
机译:背景:通过杂种育种利用杂种优势对于提高柳枝biomass(Panicum virgatum)的生物量产量至关重要。但是,用于克隆评估以进行现场评估的生命周期时间跨度是遗传选择的主要限制。方法与结果:为了缩短柳枝life的生命周期,我们研究了四个变量对野豌豆“ Alamo”的营养和生殖形态的影响:日长,温度,容器大小和植物的应用增长监管者。日光下18小时,幼苗生长最快,开花最快,分别在8小时和23小时受到严重和轻微的抑制。在最佳光周期(18 h)下,日温度为25℃导致生长和开花最快,而5℃升高或降低则抑制生长和开花。在18 h / 25℃处理中,90 d后开花的植物中有44%达到了全花期或花后种子的定植率,其中> 15%。结论:种子结实期45 d,冷分层期30 d,在18 h / 25℃条件下生长的花后植物的生成时间约为165天,每年可产生两代柳枝switch以加速种质多年生生物能源作物的开发。

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  • 来源
    《Biofuels》 |2014年第6期|771-780|共10页
  • 作者单位

    University of Tennessee, Department of Plant Sciences, Knoxville, TN37996, USA;

    University of Tennessee, Department of Plant Sciences, Knoxville, TN37996, USA;

    University of Tennessee, Department of Plant Sciences, Knoxville, TN37996, USA;

    University of Tennessee, Department of Plant Sciences, Knoxville, TN37996, USA Genera Energy Inc., Feedstock Development and Supply, Vonore, TN37885, USA;

    University of Tennessee, Department of Plant Sciences, Knoxville, TN37996, USA;

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