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长效专用控释肥在受控生态生保系统中应用的实验研究 被引量:1
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作者 艾为党 郭双生 +2 位作者 邓一兵 唐永康 秦利锋 《航天医学与医学工程》 CAS CSCD 北大核心 2005年第5期347-349,共3页
目的研究并验证长效专用控释肥料在受控生态生保系统中应用的可行性,为未来受控生态生保系统中高等植物的栽培提供合适的养分资源。方法在特定的光照、温度和大气等环境条件下,通过植物栽培实验,进行施肥、不施肥以及不同专用控释肥料... 目的研究并验证长效专用控释肥料在受控生态生保系统中应用的可行性,为未来受控生态生保系统中高等植物的栽培提供合适的养分资源。方法在特定的光照、温度和大气等环境条件下,通过植物栽培实验,进行施肥、不施肥以及不同专用控释肥料品种的生菜培养,比较不同处理下植株的生长形态、测试并分析植株体内的各种营养组分等。结果在不施肥的条件下,植株不能正常生长,施肥能促进植株的正常生长发育;利用肥料1栽培的生菜植株品质好于肥料2栽培的生菜植株。结论所研制的长效控释专用肥料能在受控生态生保系统中应用,针对不同的植物品种应选用不同的肥料品种作为养分资源。 展开更多
关键词 受控生态生保系统 长效专用控释肥料 养分资源 生菜培养
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Response of Over-summer Hydroponic Lettuce to Nutrient Solution Temperature Control 被引量:3
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作者 李锋 陈学东 《Agricultural Science & Technology》 CAS 2017年第6期1072-1075,共4页
Temperature, as an important feature of hydroponic nutrient solution, is closely related to dissolved oxygen content of nutrient solution and growth status of plant roots. How to precisely adjust the temperature of nu... Temperature, as an important feature of hydroponic nutrient solution, is closely related to dissolved oxygen content of nutrient solution and growth status of plant roots. How to precisely adjust the temperature of nutrient solution is the key to obtain high quality and high yield of hydroponic vegetables over summer. With Lactuca sativa vat. crispa 'Luosheng No.3' as the test material, the effect of chiller cooling technology on the temperature of nutrient solution, as well as on the yield and quality of Luosheng No.3, in over-summer hydroponic cultivation was studied. The results showed that the chiller cooling technology controlled the nutrient solution temperature in a reasonable range ((20 ± 1)℃) and promoted the growth and dry matter accumulation of Luosheng No.3, instead of affecting the quality. In short, the chiller cooling technology is applicable to the temperature regulation of nutrient solu- tion in hydroponics over summer. 展开更多
关键词 HYDROPONICS Nutrient solution temperature control LETTUCE Over sum-mer
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The δ^15N response and nitrate assimilation of Orychophragmus violaceus and Brassica napus plantlets in vitro during the multiplication stage cultured under different nitrate concentrations 被引量:1
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作者 Kaiyan Zhang Yanyou Wu 《Acta Geochimica》 EI CAS CSCD 2017年第2期190-197,共8页
Natural nitrogen isotope composition(δ^(15)N) is an indicator of nitrogen sources and is useful in the investigation of nitrogen cycling in organisms and ecosystems. δ^(15)N is also used to study assimilation of ino... Natural nitrogen isotope composition(δ^(15)N) is an indicator of nitrogen sources and is useful in the investigation of nitrogen cycling in organisms and ecosystems. δ^(15)N is also used to study assimilation of inorganic nitrogen. However, the foliar δ^(15)N of intact plants, which is a consequence of nitrate assimilation occurring in the roots and shoots, is not suited for studying nitrate assimilation in cases where nitrate is the sole nitrogen source. In this study, Orychophragmus violaceus(Ov) and Brassica napus(Bn) plantlets, in which nitrate assimilation occurred in the leaves, were used to study the relationship between foliar δ^(15)N and nitrate assimilation.The plantlets were grown in vitro in culture media with different nitrate concentrations, and no root formation occurred for the plantlets during the multiplication stage.Nitrogen isotope fractionation occurred in both the Ov and the Bn plantlets under all treatments. Furthermore, the foliar nitrogen content of both the Ov and Bn plantlets increased with increasing nitrate concentration. Foliar nitrogen isotope fractionation was negatively correlated with foliar nitrogen content for both the Ov and Bn plantlets. Our results suggest that the foliar nitrogen isotope fractionation value could be employed to evaluate nitrate assimilation ability and leaf nitrate reductase activity.Moreover, high external nitrate concentrations couldcontribute to improved foliar nitrogen content and enhanced nitrate assimilation ability. 展开更多
关键词 δ^15N Nitrate assimilation Nitrogen isotopefractionation Nitrogen content Nitrate reductase activity
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