布基纳法索藜麦(Chenopodium quinoa wild .)试验环境的双图分析

D. Abdalla, Alvar Jorge, Guira Amidou, Nebie Louis, G. Abdou, Sanou Jacob
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引用次数: 1

摘要

确定稳定和适应性强的高产藜麦(野生藜麦)和高度歧视性的环境对于在布基纳法索成功引进和采用这种作物是值得的。本研究的目的是确定试验环境之间的关系,确定最具判别性和代表性的试验环境,并确定高产稳定的藜麦品种。这项研究强调指出,一个地区普遍存在的农业气象条件决定了环境的特殊性。因此,藜麦的生长和生产力受到土壤和气象条件差异的影响。新发现表明,farako - b的E1环境风速相对较低(2.03 m/s),无降雨(0 mm),温度适中(25.07°C),是布基纳法索藜麦生长条件的有效区分和代表,无论是籽粒产量还是单株籽粒产量。藜麦品种普诺(Puno)和提提卡卡(Titicaca)的产量最高(分别为1132和892 kg/ha),且在不同环境下都很稳定,而帕桑卡拉(Pasankalla)的平均产量为779 kg/ha,对萨利亚(Saria)和兰菲尔拉(Lanfiera)两个昼长较短的环境表现出特定的适应性。光周期和温度是决定该品种对环境适应性的关键因素。黑草株高和枝数稳定,但产量表现较低(121 kg/ha)。这项研究的研究意义是多方面的,包括定制藜麦生长日历和在确定的最佳测试环境下筛选大量基因型,在多地点试验之前。关键词:藜麦,gx E相互作用,GGEbiplot,土壤气象条件
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biplot analysis of test environments of quinoa (Chenopodium quinoa Willd.) in Burkina Faso
The identification of stable and adaptable high yielding quinoa (Chenopodium quinoa Willd.) and, highly discriminative environments are worthwhile for a successful introduction and adoption of this crop in Burkina Faso. The objectives of this study were to determine the relationship among test environments, to identify the most discriminative and representative test environment(s), and to identify high yielding and stable quinoa variety. The study highlighted that prevailing agrometeorological conditions in an area determine the specificity of the environment. Thus, quinoa growth and productivity is affected by differences in pedological and meteorological conditions. Emerging findings showed that environment E1 at Farako-Bâ characterized by a relative low wind speed (2.03 m/s), no rainfall (0 mm) and moderate temperature (25.07°C), was efficient discriminative and representative of quinoa growing conditions in Burkina Faso for both grain yield and grain yield per plant. Quinoa varieties, Puno and Titicaca were the highest yielding (1132 and 892 kg/ha, respectively) and stable across the environments, while Pasankalla, with an average yield of 779 kg/ha, showed a specific adaptation in two environments having a short day length located at Saria and Lanfiera. The photoperiodicity and temperature were key factors determining the adaptation of this variety in an environment. Plant height and number of branches of Negra Collana were highly stable but its yield performance was low (121 kg/ha). The research implications of this study are numerous, including tailoring quinoa growing calendars and screening a large number of genotypes under the best test environment identified, prior a multi-location trial.   Key words: Quinoa, G x E interaction, GGEbiplot, pedological and meteorological conditions.
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