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Assessing Suitability of Sorghum to Alleviate Sub-Saharan Nutritional Deficiencies through the Nutritional Water Productivity Index in Semi-Arid Regions

机译:评估高粱通过半干旱地区营养水生产率指数缓解亚撒哈兰营养缺陷的适用性

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摘要

Lack of cereal nutritional water productivity (NWP) information disadvantages linkages of nutrition to water–food nexus as staple food crops in Sub-Saharan Africa (SSA). This study determined the suitability of sorghum (Sorghum bicolor L. Moench) genotypes to alleviate protein, Zn and Fe deficiency under water-scarce dryland conditions through evaluation of NWP. Sorghum genotypes (Macia, Ujiba, PAN8816, IsiZulu) NWP was quantified from three planting seasons for various sorghum seed nutrients under dryland semi-arid conditions. Seasons by genotypes interaction highly and significantly affected NWPStarch, Ca, Cu, Fe, and significantly affected NWPMg, K, Na, P, Zn. Genotypic variations highly and significantly affected sorghum NWPProtein, Mn. Macia exhibited statistically superior NWPprotein (13.2–14.6 kg·m−3) and NWPZn (2.0–2.6 g·m−3) compared to other tested genotypes, while Macia NWPFe (2.6–2.7 g·m−3) was considerably inferior to that of Ujiba and IsiZulu landraces under increased water scarcity. Excellent overall NWPprotein, Fe and Zn under water scarcity make Macia a well-rounded genotype suitable to alleviating food and nutritional insecurity challenges in semi-arid SSA; however, landraces are viable alternatives with limited NWPprotein and Zn penalty under water-limited conditions. These results underline genotype selection as a vital tool in improving “nutrition per drop” in semi-arid regions.
机译:缺乏谷物营养水生产率(NWP)信息缺点营养与水食Nexus作为撒哈拉以南非洲(SSA)的主食作物。本研究通过评价NWP确定了高粱(高粱双子L. Moench)基因型在水资源稀缺的旱地条件下缓解蛋白质,Zn和Fe缺乏的适用性。高粱基因型(MacIA,Ujiba,Pan816,isizulu)NWP从三种种植季节量化了Dryland半干旱条件下的各种高粱种子营养素。季节通过基因型相互作用高度和显着影响NWPSTARCH,CA,Cu,Fe,以及显着影响NWPMG,K,Na,P,Zn。基因型变异高度和显着影响高粱NWPPROTEIN,MN。与其他测试基因型相比,MacIA表现出统计上优越的NWPProtein(13.2-14.6 kg·m-3)和Nwpzn(2.0-2.6g·m-3),而Macia nwpfe(2.6-2.7 g·m-3)相当不等乌吉巴和伊希尔鲁的含水稀缺性含量下的伊斯坦鲁的体力。水资源稀缺的优异总体NWPProtein,Fe和Zn使Macia成为一种适合缓解半干旱SSA的食物和营养不安全挑战的圆形基因型;然而,LADERACES是在有限条件下有限的NWPPROTEIN和ZN惩罚的可行替代品。这些结果利用基因型选择作为改善半干旱区“营养”的重要工具。

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