Strawberry production was determined by climatic conditions in the pas的简体中文翻译

Strawberry production was determine

Strawberry production was determined by climatic conditions in the past. Extending the harvest period started by adapting growing techniques and developing new cultivation systems. This led in Belgium to a production from March until end of December. Lack of light availability limited winter production. Advancing the season to early February became possible, and this study focusses on filling the final gap of strawberry production in Belgium, by using artificial assimilation lighting. Three experiments were done in 2015-2016 to determine the harvest period and fruit quality. Two experiments with short-day cultivars under high pressure sodium lamps were done: the plant density of 'Sonata' is tested (2015) and 'Sonata' is compared with 'Clery' and 'Mailing Centenary' (2016). An exploratory experiment with ever bearing cultivars and different plant types under LED lamps was conducted. Two types of 'mini tray' plants and one type of 'plug' plants were compared for all cultivars. The experiments with short-day cultivars show it is possible to store tray plants for 10 months, planting in October and harvesting in January-February. In this way, a high yield of good quality strawberries was reached. The exploratory experiment indicates potential of everbearers in a winter production. Plug plants seem to be the most suited plant type for all tested cultivars, but more research is needed for optimization. Both winter production systems with assimilation lighting fill the final gap in winter, and results in year-round qualitative Belgian strawberries.
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过去草莓的产量取决于气候条件。通过适应生长技术和开发新的耕作系统来延长收获期。这导致比利时从3月至12月底开始生产。缺乏光照限制了冬季产量。可以将季节提前到2月初,这项研究的重点是通过使用人工同化照明来填补比利时草莓生产的最终缺口。2015-2016年进行了三个实验,以确定收获期和果实品质。在高压钠灯​​下对短日栽培品种进行了两个实验:测试了'Sonata'的植物密度(2015),并将'Sonata'的植物密度与'Clery'和'Mailing Centenary'(2016)进行了比较。在LED灯下进行了具有不同品种和不同植物类型的探索性实验。比较了所有品种的两种“迷你托盘”植物和一种“插塞”植物。对短日栽培品种进行的实验表明,可以将托盘植物保存10个月,十月种植,一月至二月收获。以这种方式,获得了高产量的优质草莓。这项探索性实验表明,养家者在冬季生产中的潜力。矮生植物似乎是所有测试品种最适合的植物类型,但是需要更多的研究来优化。两种具有同化照明功能的冬季生产系统都填补了冬季的最后空白,并产生了全年定性的比利时草莓。
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结果 (简体中文) 2:[复制]
复制成功!
Strawberry production was determined by climatic conditions in the past. Extending the harvest period started by adapting growing techniques and developing new cultivation systems. This led in Belgium to a production from March until end of December. Lack of light availability limited winter production. Advancing the season to early February became possible, and this study focusses on filling the final gap of strawberry production in Belgium, by using artificial assimilation lighting. Three experiments were done in 2015-2016 to determine the harvest period and fruit quality. Two experiments with short-day cultivars under high pressure sodium lamps were done: the plant density of 'Sonata' is tested (2015) and 'Sonata' is compared with 'Clery' and 'Mailing Centenary' (2016). An exploratory experiment with ever bearing cultivars and different plant types under LED lamps was conducted. Two types of 'mini tray' plants and one type of 'plug' plants were compared for all cultivars. The experiments with short-day cultivars show it is possible to store tray plants for 10 months, planting in October and harvesting in January-February. In this way, a high yield of good quality strawberries was reached. The exploratory experiment indicates potential of everbearers in a winter production. Plug plants seem to be the most suited plant type for all tested cultivars, but more research is needed for optimization. Both winter production systems with assimilation lighting fill the final gap in winter, and results in year-round qualitative Belgian strawberries.
正在翻译中..
结果 (简体中文) 3:[复制]
复制成功!
草莓的产量过去是由气候条件决定的。通过调整种植技术和开发新的栽培系统来延长收获期。这导致比利时从3月到12月底开始生产。光照不足限制了冬季的生产。将草莓季节提前到2月初成为可能,本研究的重点是利用人工同化光照填补比利时草莓生产的最终空白。在2015-2016年进行了三次试验,以确定收获期和果实质量。在高压钠灯下对短日品种进行了两个试验:测试了“索纳塔”的植物密度(2015年),并将“索纳塔”与“克莱里”和“邮寄百年”(2016年)进行了比较。在LED灯下对不同品种、不同株型、不同生育期的水稻品种进行了探索性试验。比较了两种“迷你托盘”植物和一种“插头”植物。对短日品种的试验表明,盘栽10个月,10月播种,1-2月收获是可能的。这样,优质草莓就获得了高产。探索性试验表明了长春藤在冬季生产中的潜力。插头植物似乎是所有试验品种最适合的植物类型,但需要更多的研究来优化。这两种冬季生产系统均采用同化光照,填补了冬季生产的最后一个空白,并产生了全年优质的比利时草莓。<br>
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