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首页> 外文期刊>Industrial Crops and Products >Seed yield in kenaf (Hibiscus cannabinus L.) as affected by sowing time in South Italy.
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Seed yield in kenaf (Hibiscus cannabinus L.) as affected by sowing time in South Italy.

机译:在意大利南部播种时间对洋麻( Hibiscus cannabinus L.)种子产量的影响。

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摘要

Kenaf is an interesting crop for fibre production, which has recently received great attention as a multi-purposes crop for energy, paper pulp, thermal insulation boards and fibre-reinforced thermoplastic composites production, etc., in Mediterranean countries. Its high sensitivity to photoperiod limits seed production to the semi-arid environments of Southern Europe. In order to investigate the effects of sowing time on seed yield of kenaf in the Mediterranean climate, a 2-year research was carried out in Sicily (South Italy) adopting cv. Tainung 2, under no water restriction (100% evapotranspiration - ETc restoration) throughout the whole growing season. Four sowings per year were carried out, from late May to late June-early July. Flowering took place in a rather restricted period (late September-early October) irrespective of sowing date, confirming a strong daylength control over floral initiation. Thermal time calculated for the interval 'plant emergence (E)-flowering (F)', on average 1900.6 degrees Cd, decreased from the first to the last sowing date in both years, as an effect of photoperiod. The photoperiodic sensitivity (PS), calculated regressing thermal time 'E-F' against photoperiod at flowering time and equal to 497.21 degrees Cd h, can be considered as thermal time to flowering controlled by photoperiod. A base vegetative phase (BVP) of 1563 degrees Cd and a critical photoperiod (CP) of 13.94 h were calculated for cv. Tainung 2. The photoperiod inductive phase (PIP), which describes the effect of photoperiod on flowering time and varied between 497.2 and 182.2 degrees Cd h, allowed to predict the date of flowering with certain reliability, with values differing, in the worst case, 2 days only from the observed date. With late May sowings, the crop produced a final dry biomass (>27 t ha-1) significantly greater than that obtained with the following sowings, which approximated 15 t ha-1 in late June-early July sowings. Seed yield was negatively affected by the shift of sowing time, decreasing from over 3.5 to less than 1.6 t ha-1 due to a cut in number of pods per plant. According to the results of this research, early sowings of kenaf are suggested in semi-arid areas of South Italy for both seed and biomass production, maximum seed yield corresponding to maximum biomass yield, and with this last achieved with sowings of late May. The identification of both thermal and photoperiodic requirements to achieve high levels of seed yield in kenaf may help to individuate areas of seed production other than South of Italy, where however similar climatic conditions must be ensured to the crop.Digital Object Identifier http://dx.doi.org/10.1016/j.indcrop.2010.06.002
机译:红麻是一种有趣的纤维生产农作物,最近在地中海国家受到广泛关注,成为能源,纸浆,隔热板和纤维增强热塑性复合材料生产等的多功能作物。它对光周期的高敏感性将种子生产限制在南欧的半干旱环境中。为了研究播种时间对地中海气候下洋麻种子产量的影响,在西西里岛(意大利南部)采用简历进行了为期2年的研究。台农2号在整个生长季节都没有水分限制(100%蒸散-ET c 恢复)。从5月下旬至6月下旬至7月上旬,每年播种四次。不论播种日期如何,花期都在相当有限的时期内(9月下旬至10月上旬)进行,这证实了对花期的强烈整日控制。由于光周期的影响,从两年的第一次播种到最后播种,平均间隔1900.6摄氏度计算出的“植物出苗(E)-开花(F)”间隔的热时间在这两年中都减少了。光周期敏感性(PS),计算的开花时间相对于光周期的回归热时间“ E-F”,等于497.21摄氏度/小时,可以认为是受光周期控制的开花热时间。计算出cv的基本营养期(BVP)为1563摄氏度,临界光周期(CP)为13.94小时。 Tainung 2.光周期诱导期(PIP),描述了光周期对开花时间的影响,在497.2和182.2 Cd h之间变化,允许以一定的可靠性预测开花日期,在最坏的情况下,其值会有所不同,从观察日期起仅2天。在五月下旬播种时,该作物产生的最终干燥生物量(> 27 t ha -1 )明显大于随后播种的最终生物量,后者约为15 t ha -1 6月下旬至7月上旬播种。种子时间受到播种时间变化的不利影响,由于单株豆荚数量减少,种子产量从3.5吨ha -1 降低到1.6吨ha -1 。根据这项研究的结果,建议在意大利南部半干旱地区进行洋麻的早播,以生产种子和生物量,最大的种子产量对应于最大的生物量产量,最后一次播种是在五月下旬进行。识别洋麻的热和光周期需求以实现高水平的红麻种子产量可能有助于使意大利南部以外的种子生产区域个性化,但是必须确保作物具有类似的气候条件。Digital Object Identifier http:// dx.doi.org/10.1016/j.indcrop.2010.06.002

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