Physiological characterization and bioactive compounds of promising accessions of cowpea (Vigna unguiculata L. Walp) in the Peruvian Amazon

IF 3.5 Q1 AGRONOMY
Hipólito Murga-Orrillo, Jhon K. Chuquímez Gonzales, Luis A. Arévalo López
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Abstract

Cowpea production in the Peruvian Amazon is increasing due to its ability to adapt to diverse environments, its contribution to soil conservation, and its versatility of uses. This crop is particularly valuable in human nutrition due to its high nutritional quality and nutraceutical properties of its bioactive compounds. The aim of the study was to evaluate the physiology of cowpea plants in accessions PER1005854, PER1005851, and PER12645, under the influence of rice husk mulch, screw tree litter, and oil palm fiber, as well as to determine the bioactive compounds present in the grains. This study aims to promote sustainable cowpea production, expose the nutritional aspects of the grains, and foster their consumption both locally and nationally. The experiment was conducted from November 2022 to March 2023, in Yurimaguas, Loreto, Peru. The application of organic mulches demonstrates a significantly positive impact on the growth of cowpea accessions during their vegetative phase. This effect is possibly attributed to increased water availability, as the mulch reduces soil evaporation. In particular, cowpea accessions PER12645 and PER1005851 exhibit desirable physiological characteristics for grain production, with short cycles of 71 days and higher yields of 1141 and 1125 kg/ha respectively. In contrast, accession PER1005854 is distinguished by its higher biomass production, reaching a value of 14497 kg/ha, a relevant trait for foliage production and its contribution to soil conservation. The bioactive compounds, such as proteins, lipids, and carbohydrates, present in the accessions PER1005854, PER1005851, and PER12645, are similar to those found in other legumes. However, the antioxidant activity of dark tegument cowpeas proved to be superior, particularly highlighted in accession PER12645 (black tegument) with 26.3 μmolTG/g, and in accession PER1005854 (dark red tegument) with 19.5 μmolTG/g. This characteristic is particularly important for consumption, as it is related to the ability to combat oxidative stress in the human body.
秘鲁亚马逊地区有前途的豇豆(Vigna unguiculata L. Walp)品种的生理学特征和生物活性化合物
秘鲁亚马逊地区的豇豆产量不断增加,这是因为豇豆能够适应各种环境,有助于土壤保持,而且用途广泛。由于其生物活性化合物的高营养质量和营养保健特性,这种作物在人类营养方面尤其有价值。本研究的目的是评估在稻壳覆盖物、螺旋木屑和油棕榈纤维的影响下,豇豆品种 PER1005854、PER1005851 和 PER12645 植物的生理状况,并确定谷物中的生物活性化合物。这项研究旨在促进可持续的豇豆生产,揭示谷物的营养成分,促进当地和全国的豇豆消费。实验于 2022 年 11 月至 2023 年 3 月在秘鲁洛雷托的尤里马瓜斯进行。有机覆盖物的应用对豇豆品种无性期的生长产生了显著的积极影响。这种影响可能是由于地膜减少了土壤蒸发,从而增加了水分供应。特别是,豇豆品种 PER12645 和 PER1005851 表现出了理想的谷物生产生理特性,生长周期短达 71 天,产量较高,分别为 1141 公斤/公顷和 1125 公斤/公顷。相比之下,品种 PER1005854 的特点是生物量产量较高,达到 14497 公斤/公顷,这是叶片生产的一个相关特性,有助于土壤保持。PER1005854、PER1005851 和 PER12645 中的生物活性化合物,如蛋白质、脂类和碳水化合物,与其他豆科植物中的生物活性化合物相似。然而,事实证明深色外皮豇豆的抗氧化活性更胜一筹,尤其突出的是品种 PER12645(黑色外皮)的抗氧化活性为 26.3 μmolTG/g,而品种 PER1005854(深红色外皮)的抗氧化活性为 19.5 μmolTG/g。这一特性对食用尤为重要,因为它与人体抗氧化能力有关。
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来源期刊
Frontiers in Agronomy
Frontiers in Agronomy Agricultural and Biological Sciences-Agricultural and Biological Sciences (miscellaneous)
CiteScore
4.80
自引率
0.00%
发文量
123
审稿时长
13 weeks
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