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101.
102.
Grape seeds (GS) are one of the most important by-products of the winery and grape juice industry. GS contain a vast array of health-giving metabolites, including several polyphenols known for their remarkable antioxidant activity. In this study, it has been evaluated the nutraceutical potential of seeds from 15 grapevine cultivars/clones in terms of total phenols, monomeric, dimer, polymeric, gallate esters flavan 3-ols composition and in vitro antiradical activity. Considerable quali-quantitative differences in polyphenol content and AA had been observed among GS from different cultivars/clones collected in 2013 and 2014. In most of the investigated cultivars/clones, the better values of TP, FL and AA were recorded in GS collected in 2014. The polymeric procyanidins were significantly higher in 2014 in all the cultivars, while the gallate esters were significantly higher in 2013. These differences can be attributed to different climatic conditions in 2013 and 2014. In conclusion, the data here reported help to identify the best source of GS for the recovery of bioactive polyphenols and to valorize these waste materials. 相似文献
103.
臭氧与海藻酸钠涂膜对葡萄的保鲜效果及其贮藏生理特性的影响 总被引:1,自引:0,他引:1
以采后"红地球"葡萄果实为试材,分别设置对照(CK)、250μL/L臭氧处理(O3)、0.3%海藻酸钠涂膜处理(M)、250μL/L臭氧+0.3%海藻酸钠涂膜处理(O3+M),在(0±0.5)℃条件下贮藏,通过测定贮藏过程中葡萄可溶性固形物含量、可滴定酸含量、呼吸强度、硬度、过氧化物酶(POD)、超氧化物歧化酶(SOD)、几丁质酶(CHI)、β-1,3-葡聚糖酶(GLU)的活性以及膜脂过氧化物质丙二醛(MDA)和总酚含量等的变化,统计果实失重率与腐烂率情况,观察各处理对葡萄保藏效果的影响。结果表明:与对照相比,250μL/L臭氧处理、0.3%海藻酸钠涂膜及250μL/L臭氧+0.3%海藻酸钠涂膜复合处理均能显著降低葡萄果实的失重率和腐烂率,抑制葡萄果实的呼吸上升,延缓硬度下降,提高果实抗性相关酶(POD、SOD、GLU、CHI)的活性,减少膜脂的过氧化程度,延缓果实总酚含量下降,有效改善葡萄的贮藏品质,并以250μL/L臭氧+0.3%海藻酸钠涂膜复合处理对葡萄果实保鲜效果最佳。 相似文献
104.
Stereoselective Behavior of the Fungicide Benalaxyl During Grape Growth and the Wine‐Making Process 下载免费PDF全文
Benalaxyl is widely applied as a fungicide during grape planting processing. In this experiment, the stereoselective behavior of benalaxyl was studied during the grape growth and wine‐making process. A simple method based on high‐performance liquid chromatography (HPLC) equipped with a chiral column and UV detector was established to separate and determine the enantiomers of benalaxyl. Stereoselective degradation of the two enantiomers of benalaxyl was found in grapes. The degradation of both enantiomers followed pseudofirst‐order kinetics, and the degradation rate of R‐(?)‐benalaxyl was faster than S‐(+)‐benalaxyl. The half‐life of R‐(?)‐benalaxyl was 27 h, while the half‐life of S‐(+)‐benalaxyl was 31 h. The enantiomer fraction value decreased from 0.50 to 0.34 and finally only S‐(+)‐benalaxyl could be detected. In the fermentation process, both enantiomers of benalaxyl were hardly degraded, and no configuration interconversion was observed. Meanwhile, both enantiomers of benalaxyl showed little influence on the growth of the yeast, consumption of carbon sources, or production of alcohol. The result of this study might provide more sufficient data for the evaluation of food safety and potential risk. Chirality 28:394–398, 2016. © 2016 Wiley Periodicals, Inc. 相似文献
105.
报道了葡萄上两个国内新记录真菌病害:由茶子小穴壳菌(Dothiorella ribis)引起的熟腐病和败育假蜜环菌(Armillariella tabescens)引起的根腐病。病害附有症状和病原菌的描述和形态图。 相似文献
106.
盐胁迫对山葡萄叶绿素荧光参数及超微结构的影响 总被引:3,自引:0,他引:3
采用不同浓度NaCl(0、0.1%、0.3%、0.5%)处理山葡萄品种‘左山二’幼苗,于盐胁迫20d时测定叶绿素荧光参数,盐胁迫25d时对0(CK)和0.3%NaCl溶液处理的植株进行叶片超微结构观察,以探讨山葡萄品种的耐盐机理。结果表明:(1)中度(0.3%)或重度(0.5%)盐胁迫下,山葡萄叶初始荧光(F0)显著升高,PSⅡ原初光化学效率(Fv/Fm)、PSⅡ潜在活性(Fv/F0)、光化学淬灭系数(qP)、实际光化学效率(ΦPSⅡ)、非光化学淬灭系数(NPQ)和电子传递效率(ETR)显著降低,表明叶片PSⅡ反应中心破坏,PSⅡ受体侧电子传递受害,通过热耗散散失过剩激发能的能力减弱。(2)中度盐胁迫条件下,叶绿体超显微结构较对照发生明显变化,其外形明显皱缩变短呈不规则球形,大的淀粉粒消失,质壁分离明显,基粒和基质片层界限模糊不清,被膜破损或解体,叶绿素内部质体小球增多,表明其形态结构已受到严重损伤。(3)盐胁迫处理下,山葡萄线粒体嵴排列紊乱,线粒体膜结构模糊不清或溶解,但未见明显的破裂现象,说明线粒体受害程度较叶绿体小,线粒体较叶绿体对NaCl相对不敏感。(4)盐处理下细胞核形态较对照发生改变,核膜溶解或消失,但未完全崩解,说明盐胁迫对细胞核造成了一定损伤。 相似文献
107.
《Bioscience, biotechnology, and biochemistry》2013,77(9):1692-1697
Advanced glycation end product (AGE)-induced vascular smooth muscle cell (VSMC) proliferation is vital to the progression of diabetic vasculopathy. A grape seed procyanidin extract has been reported to possess anti-oxidative and anti-inflammatory properties and to display a significant cardiovascular protective effect, but little is know about the underlying mechanism. The objective of this present study was to determine whether GSPB2 (grape seed procyanidin B2), which is a dimeric procyanidin and more biologically active, could inhibit AGE-induced VSMC proliferation by affecting the production of ubiquitin COOH-terminal hydrolase 1 (UCH-L1), the degradation of IκB-α and nuclear translocation of NF-κB in human aortic smooth muscle cells (HASMCs). Our data show that GSPB2 preincubation markedly inhibited AGE-induced proliferation and migration of HASMCs in a dose-dependent manner and upregulated the protein level of UCH-L1. Further studies revealed that the GSPB2 pretreatment markedly attenuated the degradation of IκB-α and nuclear translocation of NF-κB by modulating ubiquitination of IκB-α in AGE-exposed HASMCs. These results collectively suggest that AGE-induced HASMC proliferation and migration was suppressed by GSPB2 through regulating UCH-L1 and ubiquitination of IκB-α. GSPB2 may therefore have therapeutic potential in preventing and treating vascular complications of diabetes mellitus. 相似文献
108.
Si-si Luan Fei Yu Bao-ying Li Rui-jie Qin Xiao-li Li Qian Cai 《Bioscience, biotechnology, and biochemistry》2013,77(9):1577-1583
Diabetic cardiomyopathy is one of the major complications of diabetes mellitus. Oxidative stress appears to play a substantial role in cardiomyopathy. Grape seed procyanidin B2 (GSPB2) has been known as an anti-oxidant in treating diabetes mellitus; however, little is known about its effects and underlying mechanisms on diabetic cardiomyopathy. The present study is to explore the molecular targets of GSPB2 responsible for the anti-oxidative effects in db/db mice by quantitative proteomics. GSPB2 (30?mg/kg body weight/day) were intragastric administrated to db/db mice for 10?weeks. Proteomics of the heart tissue extracts by isobaric tags for relative and absolute quantification analysis was obtained from db/db mice. Our study provides important evidence that GSPB2 protect against cardiomyopathy in diabetes mellitus, which are believed to result from regulating the expression of key proteins involving cardiac fibrosis and proliferation. GSPB2 could be expected to become novel clinical application in fighting against diabetic cardiomyopathy. 相似文献
109.
《Bioscience, biotechnology, and biochemistry》2013,77(5):802-806
The effects were determined of dietary fish oil on the polyunsaturated fatty acid desaturation in rats fed on fish oil-containing diets (FS group) and on non-fish oil diets (CN group) during the fetal to postnatal periods. Although the desaturase activity in the liver microsomes of the FS group was higher than that of the CN group before birth, this was not altered by dietary fish oil after birth. However, a lower 20:4n-6 concentration before and after birth, and lower linoleic acid desaturation index ((dihomo-γ-linolenic acid + arachidonic acid)/linoleic acid)) at 10 wk of age in the FS group than in the CN group were observed in the liver microsomal phospholipids. The Δ6-desaturase activity in the brain microsomes of the FS group was lower than that of the CN group. These findings suggest that an intake of dietary fish oil by dams and postnatal rats affected the arachidonic acid concentration due to the decreased desaturase activity in the rats’ microsomes. 相似文献
110.