首页> 外文期刊>American Journal of Plant Sciences >Effects of Fermented Nori (&i&Pyropia yezoensis&/i&) Seaweed Liquid Fertilizers on Growth Characteristics, Nutrient Uptake, and Iodine Content of Komatsuna (&i&Brassica rapa&/i& L.) Cultivated in Soil
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Effects of Fermented Nori (&i&Pyropia yezoensis&/i&) Seaweed Liquid Fertilizers on Growth Characteristics, Nutrient Uptake, and Iodine Content of Komatsuna (&i&Brassica rapa&/i& L.) Cultivated in Soil

机译:发酵的紫菜(i Pyropia yezoensis / i)海藻液体肥料对土壤中栽培的Komatsuna(i)芥菜的生长特性,养分吸收和碘含量的影响

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We investigated the effects of fermented nori ( Pyropia yezoensis ) liquid fertilizers on plant growth, soil plant analysis development (SPAD) values, and nutrient uptake of komatsuna ( Brassica rapa L. var. wakana komatsuna) plants. The four types of fermented nori seaweed liquid fertilizers (SLFs) evaluated in this study were prepared by anaerobic fermentation of unwashed nori (SLF1), aerobic fermentation of unwashed nori (SLF2), anaerobic fermentation of washed nori (SLF3), and aerobic fermentation of washed nori (SLF4). In Experiment 1, the highest plant growth, SPAD, and nutrient uptake values were obtained from treatment with SLF2 and SLF4. There were no significant differences between the effects of basal and foliar application of SLFs, except for iodine (I) content; plants treated with SLF1 had the highest I content. In Experiment 2, plant growth and nutrient uptake decreased with higher concentrations of SLFs. Plants treated with 25% SLF2 + 75% chemical fertilizer (CF) or 25% SLF4 + 75% CF exhibited significantly higher plant growth and nutrient uptake. The highest I content resulted from treatment with 75% SLF1 + 25% CF or 100% SLF1. Taken together, our results showed that 25% SLF + 75% CF produced the best plant growth characteristics, nutrient uptake, and I content relative to the controls. Therefore, basal application of these liquid organic fertilizers can be used to increase productivity, nutrient uptake, and I content and to reduce nitrate-nitrogen content in komatsuna production.
机译:我们研究了发酵紫菜( 拟南芥(i。Pyropia yezoensis ))液体肥料对植物生长,土壤植物分析发展(SPAD)值和Komatsuna( 甘蓝型油菜< i> L. var。wakana komatsuna)植物。本研究中评估的四种类型的发酵紫菜海藻液体肥料是通过未洗紫菜的厌氧发酵(SLF1),需洗紫菜的需氧发酵(SLF2),需洗紫菜的厌氧发酵(SLF3)和有氧紫菜的需氧发酵制备的水洗紫菜(SLF4)。在实验1中,通过SLF2和SLF4处理获得了最高的植物生长,SPAD和养分吸收值。除碘(I)含量外,基础和叶面施用SLF的效果之间无显着差异。用SLF1处理的植物中I含量最高。在实验2中,随着SLF浓度的升高,植物的生长和养分吸收降低。用25%SLF2 + 75%化学肥料(CF)或25%SLF4 + 75%CF处理的植物表现出明显更高的植物生长和养分吸收。最高的I含量来自75%SLF1 + 25%CF或100%SLF1的处理。综上所述,我们的结果表明,相对于对照,25%的SLF + 75%的CF产生了最佳的植物生长特性,养分吸收和I含量。因此,这些液态有机肥料的基础施用可用于提高生产力,养分吸收和I含量,并降低Komatsuna生产中的硝酸盐氮含量。

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