Bioregenerative dietary supplementation in space: Brassica rapa var. nipposinica and other Brassica cultivars

IF 2.9 3区 生物学 Q2 ASTRONOMY & ASTROPHYSICS Life Sciences in Space Research Pub Date : 2024-08-01 DOI:10.1016/j.lssr.2023.12.002
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Abstract

Despite the precise environmental manipulation enabled by controlled environment agriculture (CEA), plant genotype remains a key factor in producing desirable traits. Brassica rapa var. nipposinica (mizuna) is a leading candidate for supplementing deficiencies in the space diet, however, which cultivar of mizuna will respond best to the environment of the international space station (ISS) is unknown. It is also unclear if there are more inter-varietal (mizuna - mustards) or intra-varietal (mizuna - mizuna) differences in response to the ISS environment. Twenty-two cultivars of mustard greens, including 13 cultivars of mizuna, were grown under ISS-like conditions to determine which would provide the greatest yield and highest concentrations of carotenoids, anthocyanins, calcium, potassium, iron, magnesium, ascorbic acid, thiamine, and phylloquinone. The experiment was conducted thrice, and data were analyzed to determine which cultivar is most suited for further optimization of space-based cultivation. It was found that phylloquinone and β-carotene concentrations did not vary between cultivars, while all other metrics of interest showed some variation. ‘Amara’ mustard (B. carinata) provided the best overall nutritional profile, despite its low biomass yield of 36.8 g, producing concentrations of 27.85, 0.40, and 0.65 mg·g  1 of ascorbic acid, thiamine, and lutein, respectively. Of the mizuna cultivars evaluated, open pollinated mibuna provided the best profile, while 'Red Hybrid’ mizuna provided a complimentary profile to that of ‘Amara’, minimally increasing dietary iron while providing beneficial anthocyanins lacking in ‘Amara’.

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太空生物再生膳食补充剂:Brassica rapa var.
尽管受控环境农业(CEA)可以实现精确的环境控制,但植物基因型仍然是产生理想性状的关键因素。水菜(Brassica rapa var. nipposinica)是补充太空饮食不足的主要候选植物,然而,哪种水菜栽培品种最适合国际空间站(ISS)的环境尚不清楚。对国际空间站环境的反应是品种间(水菜-芥菜)差异大还是品种内(水菜-水菜)差异大也不清楚。在类似 ISS 的条件下种植了 22 个芥菜品种(包括 13 个水田芥品种),以确定哪个品种的产量最高,类胡萝卜素、花青素、钙、钾、铁、镁、抗坏血酸、硫胺素和植物醌的浓度最高。实验进行了三次,并对数据进行了分析,以确定哪种栽培品种最适合进一步优化太空栽培。结果发现,不同栽培品种之间的植黄酮和β-胡萝卜素浓度没有差异,而所有其他相关指标都出现了一些变化。尽管'Amara'芥菜(B. carinata)的生物量产量较低,仅为 36.8 克,但其整体营养成分最好,抗坏血酸、硫胺素和叶黄素的浓度分别为 27.85、0.40 和 0.65 毫克∙克-1。在所评估的水发栽培品种中,开放授粉的水发栽培品种提供的营养成分最好,而 "红色杂交 "水发栽培品种提供的营养成分与 "Amara "水发栽培品种的营养成分相辅相成,在提供 "Amara "水发栽培品种所缺乏的有益花青素的同时,最大限度地减少了膳食铁的摄入量。
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来源期刊
Life Sciences in Space Research
Life Sciences in Space Research Agricultural and Biological Sciences-Agricultural and Biological Sciences (miscellaneous)
CiteScore
5.30
自引率
8.00%
发文量
69
期刊介绍: Life Sciences in Space Research publishes high quality original research and review articles in areas previously covered by the Life Sciences section of COSPAR''s other society journal Advances in Space Research. Life Sciences in Space Research features an editorial team of top scientists in the space radiation field and guarantees a fast turnaround time from submission to editorial decision.
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