确定决定埃塞俄比亚西北部阿姆哈拉地区马铃薯(Solanum tuberosum L.)生长和块茎产量的主要营养元素

IF 2.3 3区 农林科学 Q1 AGRONOMY Potato Research Pub Date : 2024-01-03 DOI:10.1007/s11540-023-09677-x
Erkihun Alemu, Zerfu Bazie, Tadele Amare, Abere Tenagne, Abriham Awoke, Atakilte Abebe, Ateneh Abewa, Zelalem Addis, Bitewlign Kerebeh, Zemie Amibawu, Tesfaye Feyisa, Zelalem Ayalineh, Temesigen Mamo
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引用次数: 0

摘要

在埃塞俄比亚,肥料消耗呈线性增长。在阿姆哈拉地区开展了为期一年的农场研究,以确定决定阿姆哈拉地区马铃薯(Solanum tuberosum L.)生长和块茎产量的主要养分类型。实验于 2021 年在雨水灌溉条件下进行,在阿姆哈拉地区的八个农田进行,分为三个主要马铃薯种植区(Quarit-Yilmana Densa、Dembecha 和 Baja-Sekela)。试验共评估了十种处理(NPSZnBK、NPSZnK-B、NPSBK-Zn、NPZnBK-S、NPSZnB-K、NSZnBK-P、PSZnBK-N、NPS、NP 和对照)。试验采用随机完全区组设计(RCBD),重复三次。试验作物为改良马铃薯品种 "Gudenie(CIP-386423-13)"。氮(N)、磷(P)、钾(K)、硫(S)、锌(Zn)和硼(B)养分的来源分别为尿素、三过磷酸钙(TSP)、氯化钾(KCl)、硫酸镁(MgSO4)、乙二胺四乙酸(EDTA)和硼砂。除尿素外,所有肥料都在播种时施用一次,而尿素则在不同作物生长阶段(播种、开花和块茎萌发)分三次施用。种植前,在每个实验点的 0-20 厘米深处采集一个复合土壤样本,并对一些重要的土壤参数进行分析。马铃薯产量成分和生物产量(块茎产量)均被采集。马铃薯的适销产量和块茎总产量在每个试验点的处理平均值之间以及在研究区域的综合分析中都显示出非常显著的差异。在方差分析中,处理平均值之间出现显著差异的主要原因是省略了氮和磷养分。马铃薯块茎产量对省略氮和磷表现出快速和自动的反应。然而,无论是添加还是省略S、Zn、B和K养分,可销售块茎产量和总块茎产量均未表现出显著差异。这表明,目前氮和磷养分是埃塞俄比亚阿姆哈拉地区限制马铃薯产量的主要养分。
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Identifying Major Determinant Nutrients for Potato (Solanum tuberosum L.) Growth and Tuber Yield in North Western Amhara, Ethiopia

In Ethiopia, fertilizer consumption has shown a linear increment. One-year-on-farm research was conducted in the Amhara region to identify major determinant nutrient types for potato (Solanum tuberosum L.) growth and tuber yields in Amhara region. The experiment was conducted in 2021 under rain fed conditions on eight farm fields in the Amhara region classified under three major potato-growing domains (Quarit-Yilmana Densa, Dembecha, and Baja-Sekela). A total of ten treatments (NPSZnBK, NPSZnK-B, NPSBK-Zn, NPZnBK-S, NPSZnB-K, NSZnBK-P, PSZnBK-N, NPS, NP, and control) were evaluated in the experiment. The treatments were laid out in a randomized complete block design (RCBD) and replicated three times. The improved potato variety “Gudenie (CIP-386423–13)” was used as a test crop. Urea, TSP (triple super phosphate), KCl (muriate of potash), MgSO4 (magnesium sulfate), EDTA, and Borax were used for the sources of nitrogen (N), phosphorus (P), potassium (K), sulfur (S), zinc (Zn), and boron (B) nutrients, respectively. Except for urea, all fertilizer sources were applied once at planting, while urea was applied in three equal splits at different crop stages (planting, flowering, and tuber initiation). Before planting, one composite soil sample from each experimental site was taken at 0–20 cm depth, and analysed for some important soil parameters. Both potato yield components and biological yield (tuber yield) were taken. Marketable and total tuber yields of potato showed highly significant differences among treatment means at each experimental site as well as from combined analysis in the study domains. The main driving force for the occurrence of significant differences between treatment means in the ANOVA was due to omitting N and P nutrients. Tuber yield of potato showed quick and automatic responses to omitting N followed by omitting P. However, both marketable and total tuber yields did not show any significant differences, either due to adding or omitting S, Zn, B, and K nutrients. This showed that currently N and P nutrients are major potato yield-limiting nutrients in Amhara region, Ethiopia.

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来源期刊
Potato Research
Potato Research AGRONOMY-
CiteScore
5.50
自引率
6.90%
发文量
66
审稿时长
>12 weeks
期刊介绍: Potato Research, the journal of the European Association for Potato Research (EAPR), promotes the exchange of information on all aspects of this fast-evolving global industry. It offers the latest developments in innovative research to scientists active in potato research. The journal includes authoritative coverage of new scientific developments, publishing original research and review papers on such topics as: Molecular sciences; Breeding; Physiology; Pathology; Nematology; Virology; Agronomy; Engineering and Utilization.
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