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Microwave, as a new heat treatment technology, has the characteristics of uniform and fast heating speed. It is an energy-saving technology known for improving oilseed product quality. Its efficiency mainly depends on the roasting power and time. However, the production of high-quality peanut butter using short-time roasting conditions are limited. Herein, we determined an appropriate microwave roasting power and time for peanuts and evaluated its impacts on the quality of peanut butter. Different roasting powers (400 ​W, 800 ​W and 1200 ​W) and times (4, 4.5, 5, and 5.5 ​min) were preliminarily tested. Among them, 800 ​W at 5 ​min was the most suitable. The roasting efficiency was further evaluated using color, sensory, bioactive compounds, storage stability, and safety risk factors of peanut butter produced from four peanut cultivars (Silihong, Baisha-1016, Yuanza-9102, and Yuhua-9414). The pre-treated butter obtained from three cultivars (Silihong, Yuanza-9102, and Yuhua-9414) with moisture content between 5% and 7.2% had a similar sensory score (6–7) as the commercial on a 9-point hedonic scale compare to the other. The color of the pre-treated peanut butter varies statistically with the commercial but remained in the recommended range of Hunter L1 values of 51–52, respectively, for high initial moisture peanut cultivars. The total polyphenol (35.20-31.59 ​± ​0.59 ​μmol GAE/g) and tocopherol (19.05 ​± ​0.35 ​mg/100 ​g) content in the butter obtained from three cultivars (Yuahua-9102, Yuhua, and Baisha-1016) and Silihong respectively, were significantly (P ​< ​0.05) higher than those in the commercial butter. The induction times of all pre-treated butter (19.80 ​± ​0.99–7.84 ​± ​0.07 ​h) were significantly (P ​< ​0.05) longer during storage at accelerated temperature than commercial samples. In addition, no benzo[a]pyrene was found in the pre-treated samples. Collectively, the microwave pretreated peanut butter was superior to the commercial one. These findings provided data support and a reference basis to promote microwave use for peanut butter production.  相似文献   
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以‘Micro-Tom’番茄(Solanum lycopersicum L.)为试材,种子发芽后30d移入人工气候室,分别进行红/蓝光组合(1:1、3:1、5:1、7:1)处理,以白光处理为对照。在番茄果实绿熟期、转色期、成熟期取样,测定果实挥发性物质含量及蛋白组数据。结果表明,在转色期和成熟期,对番茄风味有积极作用的己醛、反式–2–己烯醛、β–紫罗兰酮、牻牛儿丙酮、6–甲基–5–庚烯–2–酮、2–苯乙醇、愈伤木酚的含量在红/蓝光3︰1组合处理中最高,而对风味有消极作用的水杨酸甲酯的含量较低,并且在成熟期为0。进一步分析了红/蓝光3︰1组合处理与对照相比的差异蛋白,在成熟过程中番茄果实共鉴定到12个与挥发性物质产生有关的差异蛋白,其中8个上调表达,4个下调表达。通过对12个差异蛋白进行mRNA水平的验证发现,只有转色期的苯丙酮酸互变异构酶(MIF)在蛋白质和mRNA水平表达不一致,其他11个蛋白在两个水平表达均一致。  相似文献   
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李琳  修春丽  路伟  陆宴辉 《新疆农业科学》2020,57(11):2020-2027
【目的】 筛选对黄地老虎Agrotis segetum雌性成虫具有引诱活性的植物挥发物,为黄地老虎食诱剂的研发提供候选物质【方法】 利用触角电位仪(EAG)测试黄地老虎雌性成虫对15种植物挥发物的电生理反应,通过风洞试验,评价每种物质对黄地老虎雌性成虫的吸引作用。【结果】 黄地老虎雌性成虫触角对4种挥发物(癸烷、对乙基苯乙酮、2-甲基壬烷和3,3-二甲基辛烷)没有明显的EAG反应,对其余11种挥发物(1,2-二乙苯、1,4-二乙苯、丁酸丁酯、4,8-二甲基-1,3,7-壬三烯、桉叶油醇、乙酸叶醇酯、芳樟醇、β-月桂烯、壬醛、罗勒烯和β-蒎烯)的电生理反应明显,且反应程度随着挥发物浓度的增加而增加,在最大测试浓度100 μg/mL时产生最强烈的电生理反应。在风洞测试中,黄地老虎雌性成虫对1,2-二乙苯、1,4-二乙苯、丁酸丁酯、癸烷、4,8-二甲基-1,3,7-壬三烯、对乙基苯乙酮、桉叶油醇、乙酸叶醇酯、芳樟醇、β-月桂烯、壬醛、3,3-二甲基辛烷、罗勒烯和β-蒎烯14种挥发物表现出明显的行为趋好。【结论】 筛选出对黄地老虎雌性成虫具有电生理和行为吸引活性的植物挥发物组分。  相似文献   
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天牛科昆虫是危害严重的林业害虫,给林业生产造成重大损失。昆虫信息化合物的鉴定及应用,在害虫综合治理(IPM)中发挥着重要的作用。到目前为止,已从100多种天牛科物种中鉴定出信息化合物质,天牛亚科(Cerambycinae)、沟胫天牛亚科(Lamiinae)和椎天牛亚科(Spondylidinae)鉴定出雄性天牛的聚集信息素组分,花天牛亚科(Lepturinae)和锯天牛亚科(Prioninae)物种主要是鉴定出雌性天牛释放性的性信息素组分。这些信息素组分在不同亚科、不同属和种之间重叠率高,同一种组分可以在多种天牛物种中发挥作用,调节昆虫行为活动的信息化学物质在害虫治理中具有应用潜力和广阔的前景。对国内外已研究的天牛科信息素组分进行系统分析,可为今后鉴定新的天牛科信息素组分提供依据,加快我国天牛科信息素组分鉴定和应用进程。  相似文献   
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【目的】研究蒸馏时间对1,8-桉叶素型互叶白千层油得率和成分的影响,探讨其利用价值。【方法】采用水蒸气蒸馏法从1,8-桉叶素型互叶白千层提取精油,采集不同蒸馏时间段的挥发油,利用气相色谱-质谱联用(GC-M S)对挥发油的化学成分进行定性,参照ISO 4730:2017标准用气相色谱进行定量分析。【结果】随着蒸馏时间的延长,1,8-桉叶素型互叶白千层叶挥发油相对得率随之降低,蒸馏2小时后,96%以上的挥发油已被蒸出,精油主要成分1,8-桉叶素(70.537%,),α-松油醇(10.222%),柠檬烯(8.429%),α-蒎烯(3.080%),β-月桂烯(2.030%),4-松油醇(1.351%)含量变化不大。【结论】1,8-桉叶素型互叶白千层蒸馏时间以2小时为宜。  相似文献   
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Einkorn wheat bulgur is a traditional food deeply rooted in some areas of Turkey, since ages. The objective of this study was to evaluate the impact of simulated traditional bulgur preparation on einkorn wheat bioactive compound content.A local einkorn wheat grain sample from Turkey was boiled for 2, 3 and 4 h, then dried in a thermo-ventilated oven. Tocols, carotenoids, phytosterols and phenolics, determined as free (FPC) and bound (BPC) phenolic compounds, were analysed in hulled (spikelets) and dehulled (kernels) bulgur samples, to highlight also glumes’ contribute to their content and evolution.Kernel carotenoid and tocol content significantly decreased following bulgur preparation, to an extent of 42–58% and 15–30%, respectively. Phytosterols slightly decreased in cooked (12–19%), with respect to raw kernels. Phenolics showed different patterns, highlighting glumes’ contribute: kernel FPC increased (+87%) after 4 h of boiling, whereas no significant variations were observed for BPC. A drastic decrease of total and BPC (20.5–28.0%), was observed in spikelets following bulgur preparation. Ferulic and p-coumaric acid resulted the most abundant phenolic acids, respectively, in kernels and spikelets.Decreases in tocol, carotenoids and phytosterol contents were observed whereas an increase of kernel FPC content was calculated after cooking.  相似文献   
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为改善酱鸭的质地、色泽和风味,本试验在传统酱鸭加工工艺的基础上,引入低温风干工艺制备酱鸭,并研究其加工过程中理化特性(水分含量、色泽、剪切力值、质构特性)和挥发性风味成分的变化。结果表明,在加工过程中,酱鸭水分含量从76.55%降至58.27%(P0.05);与原料肉相比,L~*值在风干6 h显著降低,a~*值在腌制和风干结束下降,b~*值和咀嚼性在酱制阶段增加,杀菌阶段下降,硬度在酱制阶段升高,而弹性和内聚性均在杀菌阶段降低;与风干24 h相比,胶着性在杀菌阶段降低(P0.05),剪切力值先升高后下降。酱鸭挥发性风味成分分析显示,酱鸭成品有70种挥发性风味成分,主要为萜烯类、醛类、呋喃类、酮类、烃类和醇类;其中,莰烯、己醛和2-戊基呋喃是酱鸭成品主要的特征风味成分,分别占总相对含量的16.51%、10.44%和11.88%。本试验结果为低温风干工艺下酱鸭品质变化特征的研究提供了一定的理论依据。  相似文献   
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A comparative study on the volatile compounds in cooked muscle of wild and farmed large yellow croaker (LYC) was conducted. The two farmed LYC groups were fed with diets containing 44% (CF) and 25% (LF) of fish meal (FM) respectively. Results showed that 48 volatiles, including aldehydes, alcohols, ketones, hydrocarbons, aromatics, acids, esters, furans and miscellaneous compound, were detected in cooked fillets. The LF group had significantly lower amounts of total aldehydes and ketones, higher content of miscellaneous compound in cooked fillets than that in the CF and wild groups (< .05). Compared with the wild group, the LF group had significantly lower amounts of total alcohols, acids and esters, while the CF group had significantly lower amounts of total aldehydes, higher content of total ketones in cooked muscle (< .05). According to the principal component analysis (PCA), some volatiles (propanal, nonanal, etc.) could be considered as sensitive indicators to classify cooked muscle samples. In conclusion, differences in the volatiles in the cooked muscle between the wild and farmed LYC have been found. Low level of dietary FM (25%) changed the volatile profiles in cooked fillets of farmed LYC. A PCA may be useful to screen potential volatiles to classify cooked muscle samples in this study.  相似文献   
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