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Antioxidant properties and sensory evaluation of microgreens from commercial and local farms 被引量:1
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作者 Libo Tan Holly Nuffer +4 位作者 Jiannan Feng Shu Hang Kwan Hsiangting Chen Xiao Tong Lingyan Kong 《Food Science and Human Wellness》 SCIE 2020年第1期45-51,共7页
Microgreens are young and tender vegetables or herbs that provide attractive color,flavor,and nutrition.The purpose of this study was to evaluate the nutritional and sensory qualities of broccoli microgreens grown by ... Microgreens are young and tender vegetables or herbs that provide attractive color,flavor,and nutrition.The purpose of this study was to evaluate the nutritional and sensory qualities of broccoli microgreens grown by different methods(hydroponically vs.soil grown)and from different sources(commercial vs.local farm).No significant difference in total phenolic concentration and antioxidant capacity was found in all broccoli microgreens,but a significantly higher chlorophyll concentration was found in farm microgreens than the commercial ones.Moreover,the soil-grown farm microgreens possessed a significantly higher vitamin C concentration than hydroponically-grown farm sample and commercial sample.Participants in the sensory study favored farm samples regardless of growing method,and their overall liking was significantly correlated with taste of the microgreens.In addition,six other microgreens from the local farm were analyzed for their nutritional quality.These conclusions suggested a potential for consumers to still benefit nutritionally by purchasing commercial microgreens at a lower cost;however,it may be worthwhile for consumers to purchase microgreens from local farms for a better sensory experience. 展开更多
关键词 microgreens ANTIOXIDANT PHENOLIC CHLOROPHYLL SENSORY HYDROPONICS
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Advancement in Indoor Vertical Farming for Microgreen Production
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作者 Preethi Rajan Rajasekaran R. Lada Mason T. MacDonald 《American Journal of Plant Sciences》 2019年第8期1397-1408,共12页
With the growing global urban population and the emergence of megacities, there is a huge demand for arable land to meet the food demand and reduce malnutrition. Conventional agricultural practices lead to deforestati... With the growing global urban population and the emergence of megacities, there is a huge demand for arable land to meet the food demand and reduce malnutrition. Conventional agricultural practices lead to deforestation of the land for crop production and agricultural intensification to produce higher yield per unit area. These activities have been established to have negative impact on the environment thereby causing soil and water pollution. It is important to consider the use of vertical farming technology, which utilizes both horizontal and vertical space, and efficiently uses nutrients, water, and time (off season production with artificial lighting) more effectively to produce higher yield per unit volume of space than the conventional outdoor farming. Microgreens are taken into consideration to be grown under innovative vertical farming technology since they are rich in phytonutrients and they can be harvested in a short period of time. This paper reviews the current growing conditions of microgreens in vertical farming such as crop selection, media, light, nutrient solution, and containers while identifying knowledge gaps. Further, study in this area may lead to improved growing conditions to help solve the global issues and challenges surrounding food security, safety, and resource optimization. 展开更多
关键词 VERTICAL FARMING microgreens Phytonutrients BioStrate Light EMITTING DIODES Plant NUTRITION
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Wheatgrass(Triticum aestivum):a miraculous microgreen:an overview 被引量:1
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作者 Neetu Mishra Renu Tripathi +2 位作者 Dhananjay Pandey Kamal Shah Nagendra Singh Chauhan 《Journal of Future Foods》 2025年第3期239-247,共9页
Plants have been utilized by humans throughout history for a variety of purposes,including sustenance and medicinal intentions.Since ancient times,wheatgrass has been utilized as a type of microgreen for therapeutic p... Plants have been utilized by humans throughout history for a variety of purposes,including sustenance and medicinal intentions.Since ancient times,wheatgrass has been utilized as a type of microgreen for therapeutic purposes.Phenolic flavonoids,vitamins,minerals,proteins and enzymes are all abundant in wheatgrass.These nutrients and bioactive substances enhanced wheatgrass’s therapeutic efficacy and made it a powerful antioxidant agent for the treatment of a range of diseases.it has been shown to have a wide variety of pharmacological potentials,including an antioxidative potential that helps to neutralize free radicals,anti-cancer,anti-ulcer,anti-diabetic,anti-arthritic,anti-microbial action,and many more.However,there is a dearth of scientific evidence to back up wheatgrass’s possible pharmacological effects and clinical value.To investigate its clinical utility for human welfare,in-depth research studies are needed.Through this analysis of the review literature,an attempt has been made to explain wheatgrass and its therapeutic potentials. 展开更多
关键词 microgreen Wheatgrass antioxidant activity Nutritive value BIOACTIVES
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芽苗菜的营养价值与功能特性以及安全性研究进展 被引量:1
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作者 付贵 曹杰 +2 位作者 朱峰志 尹明雨 樊震宇 《食品科学》 北大核心 2025年第11期394-404,共11页
芽苗菜是一类蔬菜幼苗,因其生长方式简单、营养丰富而备受关注。芽苗菜的生长过程受光照影响较大,光照会改变芽菜中对人体健康有益的微量元素、多酚、抗坏血酸和类胡萝卜素的含量。与其成熟的芽菜相比,微型芽菜具有独特的感官和风味特性... 芽苗菜是一类蔬菜幼苗,因其生长方式简单、营养丰富而备受关注。芽苗菜的生长过程受光照影响较大,光照会改变芽菜中对人体健康有益的微量元素、多酚、抗坏血酸和类胡萝卜素的含量。与其成熟的芽菜相比,微型芽菜具有独特的感官和风味特性,并含有更多的活性成分,具有抗肥胖、抗糖尿病、抗氧化、抗炎症等药理功效。芽苗菜也存在食用安全隐患,可采取对灌溉水消毒、在生长过程中更换栽培介质等措施降低食品安全风险。此外,通过采前采后干预处理、气调包装等方式可延长芽苗菜的货架期。本综述探讨芽苗菜生长过程中光照对其生理形态以及植物化学成分的影响,总结其营养和功能特性及有效的储存方法,并评估其食用安全性,旨在为芽苗菜的可持续发展提供理论支持。 展开更多
关键词 芽苗菜 光照 营养成分 药食功能 安全
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发光二极管调控芽苗菜品质的研究进展
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作者 郭水欢 袁思洁 +4 位作者 郭楠楠 陈贤 樊亚敏 高晗 詹丽娟 《轻工学报》 北大核心 2025年第1期49-57,共9页
芽苗菜正逐渐成为一类具有广阔发展前景和巨大市场潜力的新兴健康植物源食品。发光二极管(Light Emitting Diode,LED)作为一种高效、节能、环保的固态光源,已被广泛应用于芽苗菜的栽培和品质调控。基于芽苗菜的营养价值和LED光照技术,综... 芽苗菜正逐渐成为一类具有广阔发展前景和巨大市场潜力的新兴健康植物源食品。发光二极管(Light Emitting Diode,LED)作为一种高效、节能、环保的固态光源,已被广泛应用于芽苗菜的栽培和品质调控。基于芽苗菜的营养价值和LED光照技术,综述LED光照对芽苗菜色泽(叶绿素、β-胡萝卜素)、营养物质(可溶性糖、可溶性蛋白质)、抗氧化物质(酚类物质、维生素C)及抗氧化活性的调控作用,并解析其调控机制。认为,与同种成熟蔬菜相比,芽苗菜含有更多的β-胡萝卜素、叶绿素、酚类物质、维生素C等生物活性物质,具有更高的营养价值及更强的抗氧化活性。LED能够提供与植物体内光感受器和光合色素(如叶绿素、类胡萝卜素)吸收谱相匹配的最优光波长,对植物生长发育、光合作用、次生代谢产物合成等具有重要促进作用,可实现植物生产效率的最大化。红光、蓝光、红蓝复合光和绿光均能促进芽苗菜中营养物质和抗氧化物质的合成,并提高其抗氧化活性。未来研究将集中在LED光质配比、LED光照协同其他因素、LED光照对采后芽苗菜贮藏保鲜的调控作用及机制等方面,为芽苗菜生产、加工、贮藏保鲜全产业链发展提供理论依据和技术参考。 展开更多
关键词 芽苗菜 发光二极管(LED) 品质调控 色泽 营养物质 抗氧化活性
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Sneak-peek into the chlorophyll content, antioxidant activity, targeted and non-targeted UHPLC-QTOF LC/MS metabolomic fingerprints of pulse microgreens grown under different photoperiod regimes
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作者 Arun Kumar Narpinder Singh +1 位作者 Amritpal Kaur Robin Joshi 《Food Bioscience》 SCIE 2023年第2期1293-1302,共10页
Pulse microgreens(mung bean,chickpea and lentil)were evaluated for compositional changes as a function of photoperiod.The pulse microgreens were cultivated under photoperiod of 16 and 22 h,with an optimum growing temp... Pulse microgreens(mung bean,chickpea and lentil)were evaluated for compositional changes as a function of photoperiod.The pulse microgreens were cultivated under photoperiod of 16 and 22 h,with an optimum growing temperature of 22℃ in light and 17℃ in dark in polypropylene trays containing moist cotton bed.The photoperiodic response of pulse microgreens in terms of plant height,chlorophyll content,antioxidant activity,phenolic profile,sugar profile and secondary metabolites were undertaken as the experimental factors.The targeted phenolic and sugar profile varied significantly with photoperiod.The various phenolic acids,especially chlorogenic acid and p-coumaric acid increased amongst different microgreens on extending photoperiod.The increase in sugar and their derivatives reflected the upregulation of carbohydrate metabolism under longer photoperiod.Also,the plant height,total chlorophyll content and antioxidant activity of pulse microgreen increased significantly on prolonging the photoperiod.The non-targeted analysis by UHPLC-QTOF LC/MS revealed the presence of secondary metabolites of five major classes,which were known to have beneficial effects in biological system.DIMBOA-glucoside,an organic compound was exclusively present in mung bean microgreens which further increased in longer photoperiod.The extraordinary supply of secondary metabolites makes the pulse microgreens excellent ingredient for therapeutic functional foods. 展开更多
关键词 Pulse microgreen PHOTOPERIOD Chlorophyll content Phenolic compounds Sugars Secondary metabolites
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Nutritional quality and health benefits of microgreens,a crop of modern agriculture
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作者 Yanqi Zhang Zhenlei Xiao +2 位作者 Emily Ager Lingyan Kong Libo Tan 《Journal of Future Foods》 2021年第1期58-66,共9页
Microgreens are young,tender greens that are used to enhance the color,texture,or flavor of salads and main dishes.They can be grown in small scales and indoors,making them widely adopted by controlled environment agr... Microgreens are young,tender greens that are used to enhance the color,texture,or flavor of salads and main dishes.They can be grown in small scales and indoors,making them widely adopted by controlled environment agriculture,an indoor farming practice is particularly important for feeding increasing urban populations.Besides,microgreens are attracting more consumers’attention due to their high nutritional value and unique sensory characteristics.This review focuses on the nutrition quality,sensory evaluation,pre-and post-harvest interventions,and health benefits of microgreens.Microgreens are rich in vitamins(e.g.,VC),minerals(e.g.,copper and zinc),and phytochemicals,including carotenoids and phenolic compounds,which act as antioxidants in human body.Pre-harvest interventions,such as illumination,salinity stress,nutrient fortification,and natural substrates,infl uence the photosynthetic and metabolic activities of microgreens and were shown to improve their nutritional quality,while the effects varied among species.After harvesting,packaging method and storage temperature can infl uence the nutrient retention in microgreens.Both in vitro and in vivo studies have shown that microgreens have anti-infl ammatory,anti-cancer,anti-bacterial,and anti-hyperglycemia properties,making it a new functional food beneficial to human health.The sensory attributes and overall acceptability and liking of microgreens are primarily infl uenced by their phytochemical content.Microgreens are only getting popular during the last decades and research on microgreens is still at its early stage.More studies are warranted to optimize the pre-and post-harvest practices for nutrient enhancement and retention and to explore the potential health benefits of different microgreens for the prevention and treatment of chronic diseases. 展开更多
关键词 microgreen NUTRITION ANTIOXIDANT Preharvest POSTHARVEST Health benefits
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Effect of combined light-emitting diodeson the accumulation of glucosinolates in Brassica microgreens
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作者 Oday Alrifai Lili Mats +3 位作者 Ronghua Liu Xiuming Hao Massimo F.Marcone Rong Tsao 《Food Production, Processing and Nutrition》 2021年第1期365-380,共16页
As of recent,microgreen vegetable production in controlled environments are being investigated for their bioactive properties.Phytochemicals like glucosinolates(GLS)are highly sensitive to varying spectral qualities o... As of recent,microgreen vegetable production in controlled environments are being investigated for their bioactive properties.Phytochemicals like glucosinolates(GLS)are highly sensitive to varying spectral qualities of light,especially in leafy greens of Brassica where the responses are highly species-dependent.The accumulation of bioactive GLS were studied under 8 different treatments of combined amber(590 nm),blue(455 nm),and red(655 nm)light-emitting diodes(rbaLED).A semi-targeted metabolomics approach was carried out to profile common intact-GLS in microgreen extracts of Brassica by means of LC-HRMS/MS.Thirteen GLS were identified,among them were 8 aliphatic,4 indolic and 1 aromatic GLS.Mass spectrometry data showed sinigrin had the highest average concentration and was highest in B.juncea,progoitrin was highest in B.rapa and glucobrassicin in R.sativus.The individual and total GLS in the microgreens of the present study were largely different under rbaLED;B.rapa microgreens contained the highest profile of total GLS,followed by R.sativus and B.juncea.Sinigrin was increased and gluconasturtiin was decreased under rbaLED lighting in most microgreens,glucoalyssin uniquely increased in R.sativus and decreased in B.rapa and glucobrassicin uniquely decreased in both B.rapa and B.juncea.The present study showed that rbaLED contributed to the altered profiles of GLS resulting in their significant modulation.Optimizing the light spectrum for improved GLS biosynthesis could lead to production of microgreens with targeted health-promoting properties. 展开更多
关键词 Amber light GLUCOSINOLATES Light-emitting diodes microgreens Controlled environment agriculture PHYTOCHEMICAL Controlled environment systems
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Production and Financial Analyses of the Rotating Living Wall, an Urban Agricultural System 被引量:1
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作者 Jonathan Gumble Robert Berghage Dan Stearns 《Journal of Environmental Protection》 2015年第9期1029-1041,共13页
Experiments were performed from June 2014 to May 2015 at Penn State University’s greenhouse facilities in order to understand the production capacities and financial viability of an innovative growing system referred... Experiments were performed from June 2014 to May 2015 at Penn State University’s greenhouse facilities in order to understand the production capacities and financial viability of an innovative growing system referred to as the Rotating Living Wall produced by GreenTowers, a student innovation/entrepreneurship team. The system is a six-foot vertical conveyor that rotates troughs of microgreen plants to achieve even distribution of sunlight as well as relatively low maintenance within a minimal square foot area. Experiments were performed to understand differences in seasonal yields, differences in yields based on variety of microgreen, yield comparison to a traditionally grown microgreen control group;both on a yields per/trough method as well as a yields per/ft.2 method, rotational timing, moving versus stationary growth, differences in growth based on media depth, and differences in production yields from supplemental lighting. Performance criteria were based on measuring fresh weight, dry weight, height, and SPAD-meter readings (soil plant analysis development). Differences in yields throughout seasons were significant as well as differences between the Rotating Living Wall systems compared to a control group of traditional static greenhouse benches. The use of LED supplemental lighting provided significant differences in yields throughout winter season growing. Rotational timing, media depth, and physical movement of plants showed minimal or no significant influence on yields. By establishing the potential revenues and costs that were part of growing with the Rotating Living Wall system, financial viability was analyzed showing that these systems could be profitable when utilized in State College, PA, within certain operating parameters. The research completed throughout these studies has not only provided a baseline of operation for the systems but has also shown potential for the development of urban agricultural systems capable of aiding in the elimination of “food deserts” or urban neighborhoods and rural towns with limited food access. 展开更多
关键词 URBAN AGRICULTURAL Systems ROTATING LIVING Wall FOOD Deserts microgreens
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绿豆芽苗菜粉末作为再制奶酪中乳化盐的替代品及其对品质参数的影响
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作者 郭书伯 张善强 孙亚婷 《食品与发酵工业》 2025年第23期244-251,共8页
该文研究了用绿豆芽苗菜粉末(0%、25%、50%、75%、100%,质量分数)替代乳化盐对再制奶酪加工的影响。评估了奶酪的总组成、钙和钠值、功能特性(熔化速率)、色差和白度指数、质构特征、脂肪酸特性、挥发性化合物和感官评价。结果显示,添... 该文研究了用绿豆芽苗菜粉末(0%、25%、50%、75%、100%,质量分数)替代乳化盐对再制奶酪加工的影响。评估了奶酪的总组成、钙和钠值、功能特性(熔化速率)、色差和白度指数、质构特征、脂肪酸特性、挥发性化合物和感官评价。结果显示,添加芽苗菜粉对再制奶酪总组成的影响无显著性差异(P>0.05),但是钠和熔化速率值下降,钙值呈现相反的趋势。芽苗菜粉末改变了再制奶酪的光学参数,观察到白度指数增加。芽苗菜粉末添加量越高,硬度越高,弹性越低。随着芽苗菜粉末添加量的增加,不同的挥发性化合物成比例地增加,这反映在对照样品相似的感官接受度上。然而,添加芽苗菜粉会导致再制奶酪中更多脂肪酸的释放,整体营养质量需进一步评估。但使用芽苗菜粉末作为再制奶酪中乳酸盐乳化盐的替代品似乎是一种可行的选择,尤其是考虑部分替代。 展开更多
关键词 再制奶酪 芽苗菜粉 乳化盐 配方 质构
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