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首页> 外文期刊>Notulae Botanicae Horti Agrobotanici Cluj-Napoca >Seed and Saponin Production of Organic Quinoa (Chenopodium quinoa Willd.) for different Tillage and Fertilization
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Seed and Saponin Production of Organic Quinoa (Chenopodium quinoa Willd.) for different Tillage and Fertilization

机译:有机藜麦(Chenopodium quinoa Willd。)用于不同耕作和施肥的种子和皂素生产

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Field experiment was conducted to determine the effects of tillage systems and fertilization on growth, yield and quality of quinoa crop (Chenopodium quinoa Willd.). The experiment was laid out in a split-plot design with four replicates, two main plots [conventional tillage (CT) and minimum tillage (MT)] and three sub-plots (fertilization treatments: control, cow manure and compost). The soil porosity (45.5-49.75%) and total nitrogen (0.144-0.173%) were higher in soils subjected to MT system than under CT. In soil porosity, an interaction between fertilization and tillage system was found. The highest leaf area index (4.47-5.03), dry weight (8650-9290 kg ha-1) and root density (1.03-1.21 cm cm-3) were also found in MT. Moreover, there were significant differences between the organic fertilization treatments concerning the LAI, dry weight and root density. The highest seed yield (2485-2643 kg ha-1) and saponin content (0.42-0.45%) were found in cow manure and compost treatments. Also, the highest saponin yield (7.70-12.05 kg ha-1) was found in the MT system. Saponin yield had positive and significant correlation with total N (r=0.866). In quinoa measurements, an interaction between fertilization and tillage system was not found. The present results indicated that MT and organic fertilization increase saponin yield of quinoa.
机译:进行了田间试验,以确定耕作制度和施肥对藜麦(Chenopodium quinoa Willd。)的生长,产量和品质的影响。该实验以分块设计的方式进行设计,该设计有四个重复样本,两个主块[常规耕作(CT)和最小耕作(MT)]和三个子图(施肥处理:对照,牛粪和堆肥)。 MT处理土壤的孔隙度(45.5-49.75%)和总氮(0.144-0.173%)均高于CT处理。在土壤孔隙度中,发现施肥与耕作系统之间存在相互作用。在MT中也发现最高的叶面积指数(4.47-5.03),干重(8650-9290 kg ha-1)和根系密度(1.03-1.21 cm cm-3)。此外,有机施肥处理之间的LAI,干重和根系密度也存在显着差异。在牛粪和堆肥处理中发现最高的种子产量(2485-2643 kg ha-1)和皂苷含量(0.42-0.45%)。此外,在MT系统中发现了最高的皂素产量(7.70-12.05 kg ha-1)。皂素产量与总氮呈正相关(r = 0.866)。在藜麦测量中,未发现施肥和耕作系统之间存在相互作用。目前的结果表明,MT和有机肥可提高藜麦的皂苷产量。

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