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首页> 外文期刊>Journal of Applied Phycology >Responses of winter wheat to Ascophyllum nodosum (L.) Le Jol. extract application under the effect of N fertilization and water supply
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Responses of winter wheat to Ascophyllum nodosum (L.) Le Jol. extract application under the effect of N fertilization and water supply

机译:冬小麦对Nocosum(L.)Ascophyllum的响应。施氮和供水作用下提取物的施用

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A greenhouse experiment was conducted to evaluate the effects of foliar application of an Ascophyllum nodosum seaweed extract (AZAL5) on the growth, nutrient uptake, and yield of winter wheat in a surface soil of the Thessaly Plain classified as TypicXerorthent. Twelve treatment combinations in a randomized complete block design with a factorial arrangement were composed of two rates of inorganic fertilizer (0 and 50 ppm N), three rates of AZAL5 (0, 1.5, and 3 % diluted extract), and two levels of water supply (75 and 45 % of field capacity). Under soil P and K sufficiency, the addition of fertilizer N greatly increased grain yield and nutrient uptake in the shoots (N and K) and grain (N, P, and K). Reduced water supply decreased grain yield and caused water stress as evidenced by decreased Delta C-13 in the N-deficient treatments and decreased nutrient uptake. AZAL5 application caused increased grain K uptake and a 25 % increase in yield only when mineral N was added. Differences in the efficacy of the two AZAL5 concentrations indicated that optimal dilution ratios were directly or indirectly dependent on soil water content. Complex interaction effects between AZAL5 and water supply on grain Delta C-13 could not be explained by conventional physiological response to water stress. The lack of biomass, nutrient content, and Delta C-13 differences between AZAL5 and control treatments in the shoot indicated that the reproductive organs of wheat were the main site of biostimulant action. Overall, the results underline the potential of this product to enhance the effectiveness of inorganic N fertilizers in intensively managed cropping systems under optimal irrigation, deficit irrigation, or rainfed conditions.
机译:进行了一个温室实验,以评估叶面应用Ascophyllum nodosum海藻提取物(AZAL5)对色卡利平原被划分为TypicXerorthent的表层土壤中冬小麦生长,养分吸收和产量的影响。十二个处理组合(按因子排列的随机完整块设计)由两种比例的无机肥(0和50 ppm N),三种比例的AZAL5(0、1.5和3%稀释提取物)和两种水平的水组成供应(现场容量的75%和45%)。在土壤P和K充足的情况下,氮肥的施用大大增加了芽(N和K)和谷粒(N,P和K)的籽粒产量和养分吸收。供水不足会降低谷物产量并引起水分胁迫,这在缺氮处理中降低了Delta C-13并减少了养分吸收。仅在添加矿质氮的情况下,AZAL5的施用会增加谷物K的吸收,并使产量增加25%。两种AZAL5浓度的功效差异表明最佳稀释比直接或间接取决于土壤含水量。 AZAL5和水分对谷物C-13的复杂相互作用影响无法通过常规生理对水分胁迫的反应来解释。芽中AZAL5和对照处理之间缺乏生物量,营养成分和Delta C-13差异,表明小麦的生殖器官是生物刺激作用的主要部位。总体而言,结果强调了该产品在优化灌溉,亏缺灌溉或雨育条件下,在集约化耕作系统中增强无机氮肥的潜力。

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