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Yeast One-hybrid System Used to Identify the Binding Proteins for Rat Glutathione S-transferase P Enhancer I 被引量:1
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作者 LiaoMX LiuDY 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2002年第1期36-40,共5页
Objective To detect the trans-factors specifically binding to the strong enhancerelement (GPEI) in the upstream of rat glutathione S-transferase P (GST-P) gene. MethodsYeast one-hybrid system was used to screen rat... Objective To detect the trans-factors specifically binding to the strong enhancerelement (GPEI) in the upstream of rat glutathione S-transferase P (GST-P) gene. MethodsYeast one-hybrid system was used to screen rat lung MATCHMAKER cDNA library toidentify potential trans-factors that can interact with core sequence of GPEI(cGPEI).Electrophoresis mobility shift assay (EMSA) was used to analyze the binding of trans-factors to cGPEI. Results cDNA fragments coding for the C-terminal part of thetranscription factor c-Jun and rat adenine nucleotide translocator (ANT) were isolated. Thebinding of c-Jun and ANT to GPEI core sequence were confirmed. Conclusions Rat c-juntranscriptional factor and ANT may interact with cGPEI. They could play an important rolein the induced expression of GST-P gene. 展开更多
关键词 Glutathione S-transferase P enhancer I yeast one-hybrid system trans-actionfactor
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Improving Semi-Dried Brown Rice Noodle Quality via Mixed Fermentation of Lactobacillus and Yeast
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作者 LUO Lijuan CHENG Zixuan +6 位作者 QIAO Fan XIONG Gangping LIU Jun HUANG Qingming LI Jiangtao LIN Qinlu LIU Chun 《Rice science》 SCIE CSCD 2024年第5期489-493,I0001-I0005,共10页
To address the coarse texture and poor cooking quality of brown rice flour,we employed fermentation using lactobacillus and yeast in varying proportions.The fermented flour from early indica rice Pear 13 was then proc... To address the coarse texture and poor cooking quality of brown rice flour,we employed fermentation using lactobacillus and yeast in varying proportions.The fermented flour from early indica rice Pear 13 was then processed into semi-dried brown rice noodles. 展开更多
关键词 DRIED COOKING yeast
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Effect of β-Glucan (Angel Yeast) Compared to a Placebo on Cold and Flu Incidence and Symptoms in an Adult Population—A Double Blind, Randomised Controlled Trial
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作者 David Briskey Haibo Zhang +1 位作者 Zhixian Chen Amanda Rao 《Food and Nutrition Sciences》 CAS 2024年第6期484-497,共14页
Background: 1-3, 1-6 β-glucan derived from Baker’s yeast (Saccharomyces cerevisiae) has been widely studied for its immune stimulatory capabilities and safety. Previous studies found β-glucan to have efficacy at re... Background: 1-3, 1-6 β-glucan derived from Baker’s yeast (Saccharomyces cerevisiae) has been widely studied for its immune stimulatory capabilities and safety. Previous studies found β-glucan to have efficacy at reducing incidence of URTIs as well as being a low risk for negative side effects. The current study aimed to examine the effects of yeast β-glucan (Angel Yeast) on cold and flu incidences and symptoms in healthy adults. Methods: Two hundred and thirty-one males and females aged 18 to 65 years old supplemented with either β-glucan or a placebo for 3-months. Participants completed a general health questionnaire every 4 weeks and in addition, if participants experienced any cold or flu symptoms, these were recorded daily (along with severity) until resolved or up to 2 weeks. Results: Supplementation with β-glucan reduced the self-reported severity of sore throats and improved sleep quality compared to the placebo group. Conclusions: Yeast β-glucan supplementation appears to be able to help reduce certain symptoms experienced during a cold or flu episode and is safe and well tolerated. 展开更多
关键词 BETA-GLUCAN COLD FLU Baker’s yeast
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Mathematical Modeling of Cell Polarity Establishment of Budding Yeast
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作者 Yue Liu Jun Xie +1 位作者 Hay-Oak Park Wing-Cheong Lo 《Communications on Applied Mathematics and Computation》 EI 2024年第1期218-235,共18页
The budding yeast Saccharomyces cerevisiae is a powerful model system for studying the cell polarity establishment.The cell polarization process is regulated by signaling molecules,which are initially distributed in t... The budding yeast Saccharomyces cerevisiae is a powerful model system for studying the cell polarity establishment.The cell polarization process is regulated by signaling molecules,which are initially distributed in the cytoplasm and then recruited to a proper location on the cell membrane in response to spatial cues or spontaneously.Polarization of these signaling molecules involves complex regulation,so the mathematical models become a useful tool to investigate the mechanism behind the process.In this review,we discuss how mathematical modeling has shed light on different regulations in the cell polarization.We also propose future applications for the mathematical modeling of cell polarization and morphogenesis. 展开更多
关键词 Budding yeast CDC42 MORPHOGENESIS SEPTIN Mathematical models
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Influence of nitrogen status on fermentation performances of non-Saccharomyces yeasts:a review
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作者 Jinchen Li Mengmeng Yuan +3 位作者 Nan Meng Hehe Li Jinyuan Sun Baoguo Sun 《Food Science and Human Wellness》 SCIE CSCD 2024年第2期556-567,共12页
Nitrogen,one of the most crucial nutrients present in grapes and musts,plays a key role in yeast activities during alcoholic fermentation.Such influences are imposed on yeast growth and fermentation performances inclu... Nitrogen,one of the most crucial nutrients present in grapes and musts,plays a key role in yeast activities during alcoholic fermentation.Such influences are imposed on yeast growth and fermentation performances including the formation of secondary metabolites.Saccharomyces cerevisiae,the main yeast responsible for fermentation,has been studied extensively regarding nitrogen impacts.On the other hand,a similar study for non-Saccharomyces yeasts,whose contributions to winemaking have gradually been acknowledged,remains to be fully explored,with a few studies being reported.This review starts by discussing nitrogen impacts on non-Saccharomyces yeast growth and fermentation kinetics in different case scenarios,then proceeds to summarize the nitrogen preferences of individual yeast strains with regulation mechanisms elucidated by recent studies.Detailed discussions on the influences on the production of volatile compounds and proposed pathways therein are made,followed by future work suggested as the final section.In summarizing the nitrogen impacts on non-Saccharomyces yeasts throughout alcoholic fermentation,this review will be helpful in obtaining a more comprehensive view on these non-conventional wine yeasts in terms of nutrient requirements and corresponding volatile production.Research gaps will therefore be elucidated for future research. 展开更多
关键词 Non-Saccharomyces yeasts NITROGEN Fermentation kinetics Nitrogen preference Wine aroma
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Impact of Storage Temperature on Microbial Diversity and Probiotic Effect of Liquid Brewers’ Yeast
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作者 Peter Alphonce Obuong Alaru Alfred Anakalo Shitandi +1 位作者 Symon Maina Mahungu John Muasya Kilumba Muia 《Open Journal of Animal Sciences》 2024年第3期168-182,共15页
Using probiotics as animal feed additives instead of antibiotics is gaining momentum to avert adverse negative effects on human health. Liquid brewers yeast (LBY) is an industrial by-product containing probiotic micro... Using probiotics as animal feed additives instead of antibiotics is gaining momentum to avert adverse negative effects on human health. Liquid brewers yeast (LBY) is an industrial by-product containing probiotic microorganisms and is also used as a protein supplement for dairy animals. Nevertheless, value chain actors lack of appropriate handling practices compromises the by-products quality and safety. This study aimed to determine the effect of variation in temperature on microbial diversity and probiotic effects during the storage time of LBY sampled from distributors and farmers from Githunguri sub-county of Kenya. The samples were stored at 20C, 25C and 30C, then tested on 0, 5, 10, 15 and 20 days. The studys parameters involved determining the pH levels, lactic acid bacteria (LAB), total coliform count (TCC), mould, and yeast in LBY. The rate (k) of the reaction kinetics model was used to extrapolate the expected probiotic shelf life. The LAB and yeast populations were reduced in a first-order reaction at all storage temperatures. The rate of reduction in the numbers of LAB reduced with an increase in temperature (k = 0.019 and 0.023) at 20C and 30C, respectively. Yeasts highest rate of growth reduction was 25C (k = 0.009) and least at 30C (k = 0.043). The minimum effective concentration for probiotics of 106 CFU/mL needed to observe the beneficial physiological impact on farm animals was achieved between 34.9 and 35.5 days at the tested storage temperatures. The study provides insight into the unexploited low-cost probiotic potential of LBY in dairy production. Conversely, handling practices and environmental microbial contamination along the value chain can compromise product quality and safety. There is a need to advocate its use in dairy for improved productivity and sensitize farmers to appropriate hygienic measures along the LBY value chain. 展开更多
关键词 Liquid Brewers’ yeast Microbial Diversity PROBIOTICS Shelf Life
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Microbiological Quality of “Rabilé”, a Yeast Used for Fermentation of Dolo, a Local Beer in Dédougou, Burkina Faso
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作者 Amana Metuor Dabiré Nicolas Ouédraogo +1 位作者 Cheick Alassane Djibila Damis Yves Patrik Bouniounou 《Open Journal of Applied Sciences》 2024年第4期849-864,共16页
Sorghum beer or dolo is part of the eating habits of part of the population of Dédougou because of its low price compared with industrial beers. Its production is an ancestral tradition that uses traditional equi... Sorghum beer or dolo is part of the eating habits of part of the population of Dédougou because of its low price compared with industrial beers. Its production is an ancestral tradition that uses traditional equipment and gives dolo organoleptic properties that are not found in industrial beers. The production process involves several stages, including fermentation, which itself comprises natural lactic fermentation followed by alcoholic fermentation using traditional yeasts, which are not controlled in any way. The general aim of this study is to assess the microbiological quality of these fermentative yeasts in the town of Dédougou, in order to contribute to the health safety of the population and the promotion of these local beers. Twenty samples of fermenting yeast were analyzed according to ISO standards, to isolate enterobacteria, total and faecal coliforms according to standard procedures for isolating these micro-organisms. The isolated strains were identified using the API20E gallery. Microbiological analyses revealed the presence of 51.17% enterobacteria, 45.38% total coliforms and 3.45% thermotolerant coliforms. We counted 40% Escherichia coli, 20% Enterobacter cloacae, 20% Klebsiella pneumoniae and 20% Klebsiella spp. All the strains detected are capable of surviving in hostile conditions and could harm the quality of the dolo, consumer health and cause real collective food poisoning in the town of Dédougou. This enabled us to assess the microbial quality of these yeasts and to propose more suitable measures for producing and preserving dolo under hygienic conditions to protect consumer health. 展开更多
关键词 Dolo yeast Rabilé Microbiological Quality BACTERIA
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Immobilization techniques for beverage production using yeast cell systems: challenges, types, and future perspectives - a mini review
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作者 Syed Sib Tul Hassan Shah Iqra Naeem +2 位作者 Aimen Naeem Nabeel Khalid Bhutta Fatima Noor 《Food and Health》 2024年第4期27-38,共12页
Yeast immobilization is a process of physical entrapment of yeast cells using different techniques while maintaining their biological activity.Continuous fermentation systems have significant advantages over conventio... Yeast immobilization is a process of physical entrapment of yeast cells using different techniques while maintaining their biological activity.Continuous fermentation systems have significant advantages over conventional methods.Research highlights that immobilized yeast cell systems have several benefits as compared to free yeast cells.The immobilized yeast cell systems improve fermentation rates,especially when paired with continuous fermentation and appropriate immobilization techniques.Understanding various immobilization techniques,continuous fermentation processes,yeast metabolic activity related to beverage flavor production,and bioreactor designs is vital for optimizing the use of immobilized yeast cells systems on industrial scale.This review provides an overview of recent basic research on immobilized yeast cell systems,with a focus on continuous beverage fermentation.In this study,different reactor configurations and immobilization techniques are explored.The study focus on the impacts of immobilization on the yeast cells,and discuss the recent advancements in these techniques.The review concludes with a discussion on the practical applications of immobilized yeast cells and continuous fermentation in beverage production. 展开更多
关键词 yeast Cell System Beverages Continuous Fermentation Microbial System
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Isolation of transcription factors binding auxin response elements using a yeast one-hybrid system 被引量:1
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作者 齐眉 黄美娟 陈凡 《Science China(Life Sciences)》 SCIE CAS 2002年第2期177-185,共9页
Plant hormones play an important role during higher plant embryogenesis. Auxin is central to the development of vascular tissues, formation of lateral and adventitious roots, control of apical dominance, and tropic re... Plant hormones play an important role during higher plant embryogenesis. Auxin is central to the development of vascular tissues, formation of lateral and adventitious roots, control of apical dominance, and tropic responses. Auxin response element (AuxRE), present in the promoters of many auxin-induced genes, can confer auxin responsiveness. Using carrot somatic embryo under specific developmental phase, a cDNA expression library was constructed. Several plasmids were recombined containing the tetramer of AuxRE as a bait. After screening by a yeast one-hy- brid system, one positive clone was confirmed and characterized. Electrophoretic mobility shift assay showed that AxRF1 protein expressed in yeast cell could bind AuxRE in vitro. It suggests that AxRF1 participates in regulation of the expression of auxin responsive gene during carrot somatic embryogenesis. 展开更多
关键词 AUXIN response elements TRANSCRIPTION factors yeast one-hybrid system.
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Cloning and sequencing of a rice (Oryza sativa L.) RAPB cDNA using yeast one-hybrid system 被引量:1
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作者 姚泉洪 邢彦彦 +3 位作者 王宗阳 张景六 彭日荷 洪孟民 《Science China(Life Sciences)》 SCIE CAS 1999年第4期354-361,共8页
Cis-acting elements containing CCAAT core sequence are located in 5' upstream regions of numerous eu-karyotic genes. CCAAT-binding factors interact with these cis-acting elements as heteromeric complex and therefo... Cis-acting elements containing CCAAT core sequence are located in 5' upstream regions of numerous eu-karyotic genes. CCAAT-binding factors interact with these cis-acting elements as heteromeric complex and therefore control the gene transcription. CCAAT binding factors contain at least three subunits and each subunit alone cannot bind to CCAAT box. The cloning of a rice cDNA called RAPB which homologizes to yeast HAP2 (one of the subunits in CCAAT-binding factors) using yeast one-hybrid system and functional complementation approaches is reported. The analytic results indicate that the deduced amino acid sequence in the C terminal of RAPE also contains the functional domain of 60 amino acids highly homologous with yeast HAP2, whereas the deduced amino acids in N terminal region differs significantly, and no GIn-rich region is found in the RAPB protein as in HAP2. The Southern blotting analysis demonstrates that only one copy of RAPB gene exists in rice genome. 展开更多
关键词 CCAAT HAP complex TRANSCRIPTION regulation one-hybrid system.
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Yeast hydrolysate attenuates lipopolysaccharide-induced inflammatory responses and intestinal barrier damage in weaned piglets 被引量:5
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作者 Runqi Fu Chan Liang +8 位作者 Daiwen Chen Gang Tian Ping Zheng Jun He Jie Yu Xiangbing Mao Yuheng Luo Junqiu Luo Bing Yu 《Journal of Animal Science and Biotechnology》 SCIE CAS CSCD 2023年第4期1569-1583,共15页
Background Intestinal inflammation is the main risk factor causing intestinal barrier dysfunction and lipopolysaccharide(LPS)can trigger inflammatory responses in various eukaryotic species.Yeast hydrolysate(YH)posses... Background Intestinal inflammation is the main risk factor causing intestinal barrier dysfunction and lipopolysaccharide(LPS)can trigger inflammatory responses in various eukaryotic species.Yeast hydrolysate(YH)possesses multibiological effects and is received remarkable attention as a functional ingredient for improving growth performance and promoting health in animals.However,there is still inconclusive on the protective effects of dietary YH supplementation on intestinal barrier of piglets.This study was conducted to investigate the attenuate effects of YH supplementation on inflammatory responses and intestinal barrier injury in piglets challenged with LPS.Methods Twenty-four piglets(with an average body weight of 7.42±0.34 kg)weaned at 21 days of age were randomly assigned to one of two dietary treatments(12 replications with one pig per pen):a basal diet or a basal diet containing YH(5 g/kg).On the 22nd d,6 piglets in each treatment were intraperitoneally injected with LPS at 150μg/kg BW,and the others were injected with the same amount of sterile normal saline.Four hours later,blood samples of each piglet were collected and then piglets were euthanized.Results Dietary YH supplementation increased average daily feed intake and average daily gain(P<0.01),decreased the ratio of feed intake to gain of piglets(P sponse,evidenced by the increase o=0.048).Lipopolysaccharide(LPS)injection induced systemic inflammatory ref serum concentrations of haptoglobin(HP),adrenocorticotropic hormone(ACTH),cortisol,and interleukin-1β(IL-1β).Furthermore,LPS challenge resulted in inflammatory intestinal damage,by up-regulation of the protein or mRNA abundances of tumor necrosis factor-α(TNF-α),IL-1β,toll-like receptors 4(TLR4)and phosphor-nuclear factor-κB-p65(p-NFκB-p65)(P<0.01),and down-regulation of the jejunal villus height,the protein and mRNA abundances of zonula occludens-1(ZO-1)and occludin(OCC;P<0.05)in jejunal mucosa.Dietary YH supplementation decreased the impaired effects of ACTH,cortisol,HP,IL-1βand diamine oxidase in serum(P<0.05).Moreover,YH supplementation also up-regulated the jejunal villus height,protein and mRNA abundances of ZO-1 and OCC(P<0.05),down-regulated the mRNA expressions of TNF-αand IL-1βand the protein abundances of TNF-α,IL-1β,TLR4 and p-NFκB-p65 in jejunal mucosa in LPS-challenged pigs(P<0.01).Conclusion Yeast hydrolysate could attenuate inflammatory response and intestinal barrier injury in weaned piglets challenged with LPS,which was associated with the inhibition of TLR4/NF-κB signaling pathway activation. 展开更多
关键词 Inflammatory response Intestinal barrier LIPOPOLYSACCHARIDE PIGLETS yeast hydrolysate
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In Search of Regulators of <i>LeSPL-CNR</i>by South-Western Blotting and Yeast One-Hybrid Library Screening System
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作者 Xiaohong Wang Bishun Ye +2 位作者 Ying Wang Ting Zhou Tongfei Lai 《American Journal of Plant Sciences》 2018年第5期1037-1050,共14页
LeSPL-CNR is a crucial transcription factor for fruit ripening of Solanum lycopersicum. The cnr (colorless non-ripening) epimutation resulted from hypermethylation in a 286 bp region of LeSPL-CNR promoter inhibits nor... LeSPL-CNR is a crucial transcription factor for fruit ripening of Solanum lycopersicum. The cnr (colorless non-ripening) epimutation resulted from hypermethylation in a 286 bp region of LeSPL-CNR promoter inhibits normal fruit ripening. In present study, potential regulators of LeSPL-CNR, which could bind to the specific 286 bp region, were screened via south-western blotting and yeast one-hybrid (Y1H) library screening system. Results indicated that a total of 13 and 19 candidate proteins were acquired respectively, and both ribulose-1,5-bisphosphate carboxylase/oxygenase and 40S ribosomal protein were identified by two methods. These would provide some information for revealing roles of DNA methylation and the regulatory mechanism for LeSPL-CNR. 展开更多
关键词 Solanum lycopersicum LeSPL-CNR 286 bp Region South-Western Blotting yeast one-hybrid
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Evaluation and selection of yeasts as potential aroma enhancers for the production of dry-cured ham 被引量:3
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作者 Xiaohui Gong Ruifang Mi +4 位作者 Xi Chen Qiujin Zhu Suyue Xiong Biao Qi Shouwei Wang 《Food Science and Human Wellness》 SCIE CSCD 2023年第1期324-335,共12页
Yeasts play a critical role in the flavor formation of dry-cured ham.In this study,41 yeast isolates from the dry-cured ham at different processing stages were evaluated for their technological properties.Debaryomyces... Yeasts play a critical role in the flavor formation of dry-cured ham.In this study,41 yeast isolates from the dry-cured ham at different processing stages were evaluated for their technological properties.Debaryomyces hansenii was the most dominant yeast and has been detected at each phase of dry-cured ham,followed by Candida zeylanoides which was mainly detected in salting phase.Yarrowia bubula and Yarrowia alimentaria were found at the first two-phase of dry-cured ham.All isolates of yeast showed enzymatic activities against milk protein and tributyrin,while only 4 strains displayed proteolytic activity on meat protein.Yeast strains were grown in a meat model medium and volatile compounds were identified.The result showed that inoculated yeast strains could promote the production of volatiles and there were significant differences among strains.D.hansenii S25 showed the highest production of volatile compounds,followed by the strain C.zeylanoides C4.D.hansenii S25 was the highest producer of alcohols showing the highest production of benzeneethanol and 3-(methylthio)-1-propanol.Based on OAV and PLS analysis,D.hansenii S25 was strongly correlated with overall flavor and key volatile compounds of dry-cured ham,which could be selected as potential starter cultures. 展开更多
关键词 yeast FLAVOR Dry-cured ham Meat model medium Debaryomyces hansenii
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Dairy Farming Conditions and Utilization Levels of Liquid Brewers’ Yeast in Kenya
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作者 Peter Alphonce Obuong Alaru Alfred Anakalo Shitandi +1 位作者 Symon Maina Mahungu John Muasya Kilumba Muia 《Open Journal of Animal Sciences》 CAS 2023年第1期1-19,共19页
Dairy production plays an integral part in supporting smallholder farmers’ livelihoods. The desire to increase the number of dairy cattle is not feasible due to the reduced output of feed resources occasioned by clim... Dairy production plays an integral part in supporting smallholder farmers’ livelihoods. The desire to increase the number of dairy cattle is not feasible due to the reduced output of feed resources occasioned by climate change. Consequently, the need to increase productivity per cow is inevitable. Conventional protein supplements are costly;hence, the need to explore affordable nutrientdense alternative feed resources. Liquid brewers’ yeast (LBY), a by-product of the brewing industry, is a rich protein supplement in dairy production. This study aimed to assess the dairy farming conditions and utilization levels of LBY as a feed supplement in Githunguri Sub-county, Kiambu. Semi-structured questionnaires were administered to 457 dairy farmers in a cross-sectional survey. The findings revealed that most farmers (94.2%) fed their cattle on established forage/fodder and crop residues with supplementation. Even though 53.1% of the respondents were aware of the use of LBY, only 30.6% utilized it to supplement dairy cows, most of whom (96.0%) used it fresh without preservation. Membership in farmers’ organizations increased awareness of LBY (r = 0.732). Principal component analysis indicated that the benefits of using LBY outweigh the challenges involved with a loading matrix of 0.891 - 0.954 and 0.681 - 0.807, respectively. The low adoption and use levels of LBY as a source of protein supplements were due to low awareness. There is a need for concerted efforts by stakeholders in the industry to increase farmers’ knowledge base on the utilization and effectiveness of LBY in dairy production. 展开更多
关键词 Dairy-Production Liquid Brewers’ yeast PROTEIN SUPPLEMENT
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Growth performance,nutrient digestibility,intestinal morphology,cecal mucosal cytokines and serum antioxidant responses of broiler chickens to dietary enzymatically treated yeast and coccidia challenge
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作者 Emmanuel Oluwabukunmi Alagbe Hagen Schulze Olayiwola Adeola 《Journal of Animal Science and Biotechnology》 SCIE CAS CSCD 2023年第4期1438-1450,共13页
Background There is a growing search for natural feed additives to alleviate the deleterious effects of coccidia infection in poultry production.This study aimed to investigate the effect of enzymatically treated yeas... Background There is a growing search for natural feed additives to alleviate the deleterious effects of coccidia infection in poultry production.This study aimed to investigate the effect of enzymatically treated yeast(ETY) on the growth performance,nutrient digestibility,intestinal morphology,antioxidative status,and cecal mucosa cytokines of coccidia-challenged broiler chickens.Methods From d 1 to 14 post hatching,480 broiler chickens were allocated to 3 corn-soybean meal-based experimental diets with increasing concentrations of ETY(0,1,or 2 g/kg).The experiment was designed as a randomized complete block design with body weight(BW) used as a blocking factor.On d 14 post hatching,the birds were re-randomized within each of the 3 experimental diets.Each of the 3 diet groups was split into a challenge or no-challenge group.This resulted in a 3 × 2 factorial arrangement of treatments.The coccidia challenge was administered on d 15 by an oral gavage.Results Dietary ETY improved(P < 0.05) the G:F of birds on d 21 regardless of the challenge state and linearly increased(P < 0.01) the apparent ileal digestibility of dry matter(DM),nitrogen,and gross energy(GE).The coccidia challenge decreased(P < 0.05) BW gain and feed intake of broiler chickens and reduced(P < 0.01) the total tract retention of DM,GE,and nitrogen.The coccidia challenge increased(P < 0.01) the mRNA gene expression of TNFα,IL-1β,IL-10,and IL-6 in the cecal mucosa.There was a tendency(P ne = 0.08) for ETY to linearly reduce IL-1β expression.Additionally,ETY supplementation increased(P < 0.05) the geexpression of OCLN.Serum catalase increased(P < 0.05) with dietary ETY in broiler chickens on d 21.Dietary ETY linearly increased(P < 0.05) the ileal villus height to crypt depth ratio,and ileal goblet cell density in broiler chickens.The ileal and excreta oocyst counts decreased(P < 0.01) with increasing supplementation of dietary ETY in coccidia-challenged broiler chickens on d 21.Conclusions Dietary ETY enhanced nutrient utilization and augmented intestinal development in broiler chickens.However,dietary ETY did not completely attenuate the adverse effects of a coccidia challenge in broiler chickens. 展开更多
关键词 Broiler chickens COCCIDIA Goblet cells Growth performance Health OOCYST Peptides Postbiotics yeast
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Meta-Analysis Study of the Effects of Yeast Probiotic Supplementation on Milk Production and Energy Corrected Milk of Lactating Dairy Cows
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作者 Nizar Salah Héloïse Legendre +4 位作者 Pauline Peltier Pain Clara Berger Valentin Nenov Francois Machuron Maxime Briche 《Agricultural Sciences》 2023年第9期1179-1192,共14页
The aim of this study was to use a meta-analytic approach to evaluate the effect of commercially available yeast probiotic “Actisaf<sup>&#174</sup>; Sc 47” (Saccharomyces cerevisiae CNCM I-4407)... The aim of this study was to use a meta-analytic approach to evaluate the effect of commercially available yeast probiotic “Actisaf<sup>&#174</sup>; Sc 47” (Saccharomyces cerevisiae CNCM I-4407) produced and marketed by Phileo by Lesaffre on milk performance in dairy cows. Data from 22 trials including 17 with parallel designs and 5 with cross-over designs were collected, and only data with parallel designs were analyzed. From those trials, 4 are published and 13 are from technical reports. In total, 34 comparisons and 1074 dairy cows met the criteria for inclusion in the final analysis of milk yield (MY). For energy corrected milk (ECM), six trials with 12 comparisons and 476 dairy cows met the criteria for inclusion in the final analysis. Because the data are from different trials with different conditions, the statistical model defined includes the fixed effect of the treatment (with vs. without Actisaf<sup>®</sup> Sc 47) and the random effect of the trial. The meta-analysis showed a moderate heterogeneity for MY and ECM. The random effect meta-analysis showed an estimated mean difference +1.72 kg/d [95% confidence interval (CI): 1.01 to 2.44] and +2.45 kg/d (95% CI: 1.73 to 3.17) for MY and ECM respectively, in favour of Actisaf<sup>®</sup><sup> </sup>Sc 47. The analysis of data without trials conducted under heat stress conditions showed positive effect of Actisaf<sup>®</sup> Sc 47. The random effect meta-analysis showed an estimated mean difference of +1.69 kg/d [95% CI: 1.24 to 2.14] and +2.92 kg/d (95% CI: 2.45 to 3.40) for MY and ECM respectively, in favour of Actisaf<sup>®</sup> Sc 47. These observations provide strong evidence that this commercially available yeast probiotic can significantly improve milk performances of dairy cows under different conditions. 展开更多
关键词 MILK yeast Probiotic META-ANALYSIS
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A systematic identification of cold tolerance genes in peanut using yeast functional screening system
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作者 Xin Wang Yue Liu +11 位作者 Ruonan Yao Lei Ouyang Tingting Yu Liying Yan Yuning Chen Dongxin Huai Zhihui Wang Yanping Kang Qianqian Wang Huifang Jiang Yong Lei Boshou Liao 《Oil Crop Science》 CSCD 2023年第3期184-190,共7页
Peanut(Arachis hypogaea L.)is a thermophilic crop,and low temperature leads to a significant reduction in annual yields.Despite a few cold tolerant germplasms or cultivars have been discovered and developed,molecular ... Peanut(Arachis hypogaea L.)is a thermophilic crop,and low temperature leads to a significant reduction in annual yields.Despite a few cold tolerant germplasms or cultivars have been discovered and developed,molecular mechanisms governing peanut cold tolerance is poorly understood.Identification of keys genes involved in cold tolerance is the first step to address the underlying mechanism.In this study,we isolated and characterized 157 genes with potentials to confer cold tolerance in peanut by using a yeast functional screening system.GO(Gene ontology)and KEGG(Kyoto encyclopedia of genes and genomes)enrichment analysis of these genes revealed that ribosome and photosynthesis proteins might play essential roles in peanut cold response.Transcriptome results indicated that 60 cold tolerance candidate genes were significantly induced or depressed by low temperature.qRT-PCR analysis demonstrated that several candidate genes could be also regulated by salt or drought stress.Individual overexpression of two UDP-glycosyltransferases(AhUGT2 and AhUGT268)in transgenic yeast cells could enhance their tolerance to multiple abiotic stress.In conclusion,this study advances our understanding of the mechanisms associated with the cold stress responses in peanut,and offers valuable gene resources for genetic improvement of abiotic stress tolerance in crops. 展开更多
关键词 PEANUT yeast screening system Cold tolerance UDP-glycosyltransferase Abiotic stress
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ARTP-ALE Optimized Selection of Low Acetaldehyde Producing Brewer's Yeast and Fermentation Validation
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作者 Chen Zuo-hui Dong Chun-xiu +4 位作者 Sun Yao Hui Mi-zhou Zhang Hui Tang Fei Shuang Bao 《Journal of Northeast Agricultural University(English Edition)》 CAS 2023年第2期8-19,共12页
Higher levels of acetaldehyde in beer are one of the major concerns in the current beer industry.Yeast produces acetaldehyde during alcoholic fermentation,and its modification significantly affects beer flavor and qua... Higher levels of acetaldehyde in beer are one of the major concerns in the current beer industry.Yeast produces acetaldehyde during alcoholic fermentation,and its modification significantly affects beer flavor and quality.A different mutant strain with lower acetaldehyde production and improved ethanol tolerance was constructed using the ARTP-ALE mutagenesis strategy with 4-methylpyrazole-disulfiram.As a result of the mutation,the alcohol dehydrogenase activity of the mutant strain decreased to about 71.22%of that of the wild-type strain.At the same time,the fermentation properties and genetic stability of the newly screened strain showed slight differences from the wild-type strain,and there were no safety concerns regarding industrial use of the mutant strain. 展开更多
关键词 brewer's yeast ACETALDEHYDE atmospheric pressure room temperature plasma adaptive laboratory evolution ethanol dehydrogenase acetaldehyde dehydrogenase
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不同酵母发酵的白兰地基酒在蒸馏前后的香气分析 被引量:1
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作者 马玥 吴元 +5 位作者 张葆春 申春华 于立娜 巩传斌 李成林 唐柯 《食品与发酵工业》 CAS CSCD 北大核心 2024年第7期250-258,I0006-I0013,共17页
本研究旨在探究以不同酵母(71B、KD、F33、K1、FC9DP、D254、FC9)酿造的新疆产区的白兰地基酒及其新蒸馏白兰地原酒在挥发性风味物质及香气特征的差异。通过对不同样品进行全二维气相色谱-飞行时间质谱分析结合感官定量描述分析。结果显... 本研究旨在探究以不同酵母(71B、KD、F33、K1、FC9DP、D254、FC9)酿造的新疆产区的白兰地基酒及其新蒸馏白兰地原酒在挥发性风味物质及香气特征的差异。通过对不同样品进行全二维气相色谱-飞行时间质谱分析结合感官定量描述分析。结果显示,添加酵母D254的基酒香气物质总量最高,果香、花香、木质香气特征更突出;在蒸馏后,添加酵母FC9和FC9DP的酒样香气属性更为丰富,其中花香、果香、木质香气属性突出,此外,FC9DP酒样香气化合物相对含量也最高。对比蒸馏前后的基酒,结果显示,除了酚类化合物及内酯类化合物,大部分香气化合物的相对含量皆在蒸馏后有所增加,其中FC9DP样品的酯类、醇类、酸类及萜烯类化合物增加最为明显。此外,经过蒸馏,基酒去除了生青味和酸味的不良气味特征,香气品质有所改善。该研究可为白兰地酿造工艺的进一步改进提供数据参考。 展开更多
关键词 白兰地 香气化合物 香气 蒸馏 酵母
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酵母复合微生态制剂对鲤鱼生长性能、免疫指标及抗氧化能力的影响
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作者 赵倩 王俊贤 +5 位作者 高绪娜 张志焱 徐海燕 谷巍 王慧 单宝龙 《中国饲料》 北大核心 2024年第19期102-107,共6页
本试验旨在研究饲料中添加酵母复合微生态制剂对鲤鱼生长性能、免疫指标及抗氧化能力的影响,并确定其适宜的添加量。选用初始体重为(35±0.5)g的鲤鱼540尾,随机分为6组,每组3个重复,每个重复30尾鱼,预饲14 d。以基础日粮为CK组,试... 本试验旨在研究饲料中添加酵母复合微生态制剂对鲤鱼生长性能、免疫指标及抗氧化能力的影响,并确定其适宜的添加量。选用初始体重为(35±0.5)g的鲤鱼540尾,随机分为6组,每组3个重复,每个重复30尾鱼,预饲14 d。以基础日粮为CK组,试验组分别饲喂含0.1‰、0.5‰、1‰、2‰、3‰酵母复合微生态制剂饲料,饲养56 d后采样分析。结果表明:(1)与CK组相比,饲料中添加酵母复合微生态制剂可显著提高鲤鱼的生长性能,2‰、3‰组增重率(WGR)增加了23.01%、24.15%(P<0.05),特定生长率(SGR)增加了13.79%、14.37%(P<0.05),饲料系数(FCR)降低了18.09%、18.59%(P<0.05)。(2)与CK组相比,饲料中添加酵母复合微生态制剂可显著提高鲤鱼的免疫指标,2‰、3‰组溶菌酶(LSZ)提高了47.9%、48.74%(P<0.05),免疫球蛋白M(IgM)提高了48.31%、49.44%(P<0.05),补体C3(C3)提高了39.61%、39.61%(P<0.05),碱性磷酸酶(AKP)提高了17.05%、17.44%(P<0.05),总蛋白(TP)提高了31.03%、30.38%(P<0.05)。(3)与CK组相比,饲料中添加酵母复合微生态制剂可显著提高鲤鱼的抗氧化能力,2‰、3‰组总抗氧化能力(T-AOC)提高了41.69%、41.36%(P<0.05),超氧化物歧化酶(SOD)提高了37.63%、45.71%(P<0.05),过氧化氢酶(CAT)提高了41.69%、41.36%(P<0.05),丙二醛(MDA)降低了22.71%、20.92%(P<0.05)。由此得出,饲料中添加2‰、3‰酵母复合微生态制剂能够显著提高鲤鱼的生长性能、血清免疫指标及肝脏抗氧化能力。基于2‰、3‰添加量组各指标差异不显著,建议酵母复合微生态制剂的最佳添加剂量为2‰。 展开更多
关键词 酵母复合微生态制剂 酵母培养物 酵母细胞壁 鲤鱼 生长性能 免疫指标 抗氧化能力
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