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γ-聚谷氨酸对小麦淀粉糊化及流变学特性的影响 被引量:6
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作者 范逸超 谢新华 +3 位作者 沈玥 徐超 王娜 艾志录 《中国粮油学报》 EI CAS CSCD 北大核心 2019年第5期33-37,共5页
为了解γ-聚谷氨酸(γ-PGA)对小麦淀粉糊化及流变学特性的影响,采用快速黏度仪、差式扫描量热仪、流变仪、扫描电镜测定添加不同比例γ-PGA的小麦淀粉糊化特性、热力学性质、流变学特性、微观结构。结果表明,随γ-PGA添加量的增加,小麦... 为了解γ-聚谷氨酸(γ-PGA)对小麦淀粉糊化及流变学特性的影响,采用快速黏度仪、差式扫描量热仪、流变仪、扫描电镜测定添加不同比例γ-PGA的小麦淀粉糊化特性、热力学性质、流变学特性、微观结构。结果表明,随γ-PGA添加量的增加,小麦淀粉糊的黏度、糊化焓值降低,糊化温度升高,γ-PGA阻碍了淀粉糊化,增强了淀粉糊的热稳定性;储能模量G′和损耗模量G″降低,损耗角正切tanδ升高,该混合体系为弱凝胶动态流变学图谱,弹性大于黏性;应力随添加量的增加而降低,呈剪切稀化现象,该淀粉糊为假塑性流体;γ-PGA使淀粉凝胶孔洞变小,微观结构更加致密。γ-PGA明显改善了小麦淀粉的糊化及流变学性质,添加量为0.7%时影响效果最大。 展开更多
关键词 小麦淀粉 γ-聚谷氨酸 糊化 热力学 流变学
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Preparation and Characterization of Poly(γ-glutamic acid) Hydrogels as Potential Tissue Engineering Scaffolds 被引量:4
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作者 Wen Zeng Wei-kang Hu +4 位作者 Hao Li Yi-han Jing Hua Kang Qing Jiang 张超 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2014年第11期1507-1514,共8页
In this paper, methacrylated γ-PGA(m PGA) precursor was synthesized via reaction between γ-PGA and glycidyl methacrylate(GMA). Hydrogels from this precursor were prepared under 365 nm ultraviolet irradiation. Th... In this paper, methacrylated γ-PGA(m PGA) precursor was synthesized via reaction between γ-PGA and glycidyl methacrylate(GMA). Hydrogels from this precursor were prepared under 365 nm ultraviolet irradiation. The swelling behavior and mechanical properties were studied in detail as functions of the degree of substitution(DS), precursor concentration, and environmental p H. Results showed that the crosslink density, swelling kinetics and mechanical properties of the hdyrogel could be tailored by adjusting the DS and concentration of the precursor as well as the environmental p H. Three-dimensional photo-encapsulation of swine cartilage chondrocytes and Live/Dead assay proved the cytocompatibility of the hydrogel. 展开更多
关键词 polyγ-glutamic acid HYDROGEL Tissue engineering scaffold.
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Development of a Freeze-Dried Skin Care Product Composed of Hyaluronic Acid and Poly(γ-Glutamic Acid) Containing Bioactive Components for Application after Chemical Peels 被引量:3
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作者 Yuka Isago Ryusuke Suzuki +2 位作者 Eri Isono Yuya Noguchi Yoshimitsu Kuroyanagi 《Open Journal of Regenerative Medicine》 2014年第3期45-53,共9页
Eight types of spongy sheet were prepared by freeze-drying aqueous solutions of hyaluronic acid (HA) and poly(γ-glutamic acid) (PGA) with or without bioactive components including vitamin C derivative (VC), glucosylc... Eight types of spongy sheet were prepared by freeze-drying aqueous solutions of hyaluronic acid (HA) and poly(γ-glutamic acid) (PGA) with or without bioactive components including vitamin C derivative (VC), glucosylceramide (GC), and epidermal growth factor (EGF). Spongy sheets were categorized into the following groups: Group I (HA/PGA), Group II (HA/PGA + VC), Group III (HA/PGA + GC), Group IV (HA/PGA + VC, GC), Group V (HA/PGA + EGF), Group VI (HA/PGA + VC, EGF), Group VII (HA/PGA + GC, EGF), and Group VIII (HA/PGA + VC, GC, EGF). In the first experiment, we examined fibroblast proliferation in conditioned medium that had been prepared by immersing each spongy sheet in a conventional culture medium. EGF-incorporating spongy sheets (Groups V-VIII) enhanced fibroblast proliferation more than EGF-free spongy sheets (Groups I-IV). In the second experiment, cytokine production by fibroblasts was evaluated using a wound surface model. This involved elevation of fibroblasts-incorporating collagen gel sheets to the air-liquid interface, on which a spongy sheet (Groups I, IV, V and VIII) was placed and cultured for 1 week. EGF-incorporating spongy sheets (Groups V and VIII) enhanced the production of vascular endothelial growth factor (VEGF) and hepatocyte growth factor (HGF) by fibroblasts more than EGF-free spongy sheets (Groups I and IV). The effect of these four types of spongy sheet on wounds was investigated in animal experiments. Chemical peel was performed by contacting 50% trichloroacetic acid (TCA) on the dorsal region of mice, after which a spongy sheet was placed, and the wound condition was then observed in a two-week period. Angiogenesis was facilitated to a greater degree in Group VIII compared with Groups I, IV and V. This finding indicates that Group VIII spongy sheet is a promising aid for skin recovery after chemical peel. 展开更多
关键词 Chemical PEEL Skin Care Product Hyaluronic ACID poly(γ-glutamic Acid) Vitamin C Derivative GLUCOSYLCERAMIDE EPIDERMAL Growth Factor
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Safety and photochemotherapeutic application of poly(γ-glutamic acid)-based biopolymeric nanoparticle 被引量:2
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作者 Dongyoon Kim Quoc-Viet Le +1 位作者 Young Bong Kim Yu-Kyoung Oh 《Acta Pharmaceutica Sinica B》 SCIE CAS CSCD 2019年第3期565-574,共10页
The safety of nanomaterials, a crucial consideration for clinical translation, is enhanced by using building blocks that are biologically nontoxic. Here, we used poly(γ-glutamic acid)(γ-PGA) and dopamine as building... The safety of nanomaterials, a crucial consideration for clinical translation, is enhanced by using building blocks that are biologically nontoxic. Here, we used poly(γ-glutamic acid)(γ-PGA) and dopamine as building blocks of polymeric nanomaterials for carrying hydrophobic anticancer drugs. The introduction of phenylalanine onto γ-PGA enabled the resulting amphiphilic derivative of γ-PGA acid to self-assemble in the presence of the anticancer drug paclitaxel(PTX) to form PTX-encapsulated micelles.The surfaces of PTX-loaded micelles were then coated with polymerized dopamine(PDA). The PDAcoated, amphiphilic γ-PGA-based micelles(AM) carrying PTX(PDA/AM/P) exerted near-infraredresponsive photothermal effects. Near-infrared irradiation of cancer cells treated with PDA/AM/P nanoparticles produced a greater anticancer effect than that observed in other treatment groups, indicating a synergistic effect. Intravenous administration of PDA/AM/P completely ablated tumors and prevented their recurrence. Notably, the in vivo safety profile of PDA/AM/P nanoparticles allowed PTX to be delivered at a 3.6-fold higher dose than was possible with PTX solubilized in surfactant, and circumvented the side effects of the surfactant. These results support the multifunctional potential of PDA/AM for the delivery of various hydrophobic drugs and imaging dyes for safe translation of nanomaterials into the clinic. 展开更多
关键词 SAFETY PHOTOCHEMOTHERAPY Biopolymeric nanoparticle poly(γ-glutamic acid) polymerized DOPAMINE PACLITAXEL
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Adsorption of La^(3+) and Ce^(3+) by poly-γ-glutamic acid crosslinked with polyvinyl alcohol 被引量:2
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作者 高玉千 张世敏 +4 位作者 赵凯亚 王志伟 徐淑霞 梁振普 吴坤 《Journal of Rare Earths》 SCIE EI CAS CSCD 2015年第8期884-891,共8页
With the exploitation of rare earth ore, more and more rare earth elements came into groundwater, caused waste of resources and toxicity to the organisms. This study aimed to find an efficient adsorption material to m... With the exploitation of rare earth ore, more and more rare earth elements came into groundwater, caused waste of resources and toxicity to the organisms. This study aimed to find an efficient adsorption material to mitigate the above issue. Through doping polyvinyl alcohol with poly-γ-glutamic acid, an immobilised PSP gel particle was produced and had the adsorption rate of La3+ up to 97.10%. The factors including initial concentration of La3+ or Ce3+, adsorbent dosage, pH and temperature of the solution, which potentially affected the adsorption rate and were studied in batch mode. It was found that the optimum adsorption conditions were composed of 50 mg/L La3 VCe3+ of initial concentration, 600 mg/L (dry mass) biomass for adsorption, pH 6, temperature 30 ℃, 150 r/min rotational speed, and 1 h adsorption time. The selective adsorption of 15 different rare earth ions in mixed aqueous solu- tions were investigated. However, no significant selective differences were observed. Scanning electron microscopy showed that the morphological characteristic of the novel gel was its porous structure, while polyvinyl alcohol gel had a compact structure. Fourier transform infrared spectroscopy suggested that carboxyl groups in the poly-γ-glutamic acid might played a key role in the adsorption process. The adsorption mechanism forecasted to be cation exchange between -COOH and R3+. The adsorption kinetic and thermodynamic process for La3+ and Ce3+ was consistent with the pseudo-second-order equation and Langmuir adsorption isotherm model. It demonstrated that PSP gels particles were useful for removing REEs from wastewater. 展开更多
关键词 ADSORPTION rare earth ion poly-γ-glutamic acid polyvinyl alcohol
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Enhanced production of poly-γ-glutamic acid via optimizing the expression cassette of Vitreoscilla hemoglobin in Bacillus licheniformis 被引量:2
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作者 Qing Zhang Yaozhong Chen +5 位作者 Lin Gao Jian’gang Chen Xin Ma Dongbo Cai Dong Wang Shouwen Chen 《Synthetic and Systems Biotechnology》 SCIE 2022年第1期567-573,共7页
Poly-γ-glutamic acid(γ-PGA)is a natural polymer with various applications,and its high-viscosity hinders ox-ygen transmission and improvement of synthesis level.Vitreoscilla hemoglobin(VHB)has been introduced into v... Poly-γ-glutamic acid(γ-PGA)is a natural polymer with various applications,and its high-viscosity hinders ox-ygen transmission and improvement of synthesis level.Vitreoscilla hemoglobin(VHB)has been introduced into various hosts as oxygen carrier,however,its expression strength and contact efficiency with oxygen hindered efficient oxygen transfer and metabolite synthesis.Here,we want to optimize the expression cassette of VHB for γ-PGA production.Firstly,our results implied that γ-PGA yields were enhanced when introducing twin-arginine translocation(Tat)signal peptides(SP_(YwbN),SP_(PhoD) and SP_(TorA))into VHB expression cassette,and the best per-formance was attained by SP YwbN from Bacillus subtilis,theγ-PGA yield of which was 18.53% higher than that of control strain,and intracellular ATP content and oxygen transfer coefficient(K_(L)a)were increased by 29.71% and 73.12%,respectively,indicating that VHB mediated by SP YwbN benefited oxygen transfer and ATP generation forγ-PGA synthesis.Furthermore,four promoters were screened,and P vgb was proven as the more suitable promoter for VHB expression andγ-PGA synthesis,andγ-PGA yield of attaining strain WX/pPvgb-YwbN-Vgb was further increased to 40.59 g/L by 10.18%.Finally,WX/pPvgb-YwbN-Vgb was cultivated in 3 L fermentor for fed-batch fermentation,and 46.39 g/Lγ-PGA was attained by glucose feeding,increased by 49.26%compared with the initial yield(31.01 g/L).Taken together,this study has attained an efficient VHB expression cassette for oxygen transfer andγ-PGA synthesis,which could also be applied in the production of other metabolites. 展开更多
关键词 Vitreoscilla hemoglobin Expression element Twin-arginine translocation poly-γ-glutamic acid Bacillus licheniformis
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Preparation and Evaluation of Poly-γ-Glutamic Acid Hydrogel Mixtures with Basic Drugs or Acidic Drugs: Effect on Ease of Swallowing and Taste Masking 被引量:1
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作者 Honami Kojima Saeri Ikegami +6 位作者 Shiho Nakamura Haruka Nishikawa Tamami Haraguchi Miyako Yoshida Minoru Ozeki Ikuo Kawasaki Takahiro Uchida 《Pharmacology & Pharmacy》 2019年第10期427-444,共18页
The purpose of this study was to prepare a poly-γ-glutamic acid hydrogel (PGA gel), to examine its ease of swallowing using texture profile analysis (TPA) and to evaluate its taste-masking effects on basic or acidic ... The purpose of this study was to prepare a poly-γ-glutamic acid hydrogel (PGA gel), to examine its ease of swallowing using texture profile analysis (TPA) and to evaluate its taste-masking effects on basic or acidic drugs using the artificial taste sensor. Using TPA, 0.5% and 1.0% PGA gels, 0.5% and 1.0% agar and 1.0% ι-carrageenan in the absence of drug was examined the hardness, adhesiveness and cohesiveness, ranked according to permission criteria published by the Japanese Consumers Affairs Agency. 0.5% PGA gel and 1.0% agar were classified into grade II. In the taste sensor measurement, the bitterness suppressions by 0.5% PGA gel were larger than that by 1.0% agar in all drugs and the bitterness suppressions of basic drugs in 0.5% PGA gel were more potent than those of acidic drugs in 0.5% PGA gel. 1H-nuclear magnetic resonance spectroscopic analysis was carried out to examine the difference in mechanism of bitterness suppression between basic drugs and acidic drugs mixed with PGA gel. The signals of the proton nearest to the nitrogen atom of basic drugs shifted clearly upfield, suggesting an interaction between the amino group of basic drugs and the carboxyl group of PGA gel. In conclusion, PGA gel is expected to be a useful excipient in formulations contained various drugs, especially basic drugs;it also has advantage for not only increasing ease of swallowing but also masking the bitterness of drugs even though a small amount of a single drug dose might be preferred. 展开更多
关键词 poly-γ-glutamic Acid HYDROGEL BITTERNESS TASTE Sensor
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An Anionic Polymer Incorporating Low Amounts of Hydrophobic Residues Is a Multifunctional Surfactant. Part 2: Emulsification, Moisture Absorption, and Moisture Retention of Alkyl Esterified Poly-γ-Glutamic Acid
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作者 Makoto Urai Tomoko Aizawa +1 位作者 Mutsuyasu Nakajima Michio Sunairi 《Advances in Chemical Engineering and Science》 2015年第2期181-191,共11页
In the accompanying paper (Part 1), we showed that the fatty acid moiety and the acidity of the polysaccharide-backbone of a fatty acid-containing polysaccharide might be involved in its emul-sification, moisture abso... In the accompanying paper (Part 1), we showed that the fatty acid moiety and the acidity of the polysaccharide-backbone of a fatty acid-containing polysaccharide might be involved in its emul-sification, moisture absorption, and moisture retention abilities. In this study, we synthesized alkyl esterified poly-γ-glutamic acid (PGA) with various chain lengths and degrees of substitution of the alkyl moieties to examine how hydrophobic groups incorporated in the anionic polymer contribute to enhanced emulsification, moisture absorption, and moisture retention. With a low degree of alkylation of PGA, these abilities were drastically improved. To improve the moisture absorption of PGA, alkylation with a short chain length is effective in forming interspaces between PGA chains to trap water molecules. Hydrophobic-hydrophilic balance may also be important to improve the emulsification and moisture retention abilities of PGA alkylates. To the best of our knowledge, this is the first report of the relationship between the structure and the multifunctional abilities of an anionic polymer incorporated with a small amount of hydrophobic residue. PGA alkylates, as well as fatty acid-containing polysaccharides, have potential use as multifunctional surfactants throughout various industries. 展开更多
关键词 poly-γ-glutamic Acid (PGA) ALKYL ESTER EMULSIFICATION MOISTURE Absorption MOISTURE Retention
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Electrostatic assembly functionalization of poly(γ-glutamic acid)for biomedical antibacterial applications 被引量:1
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作者 Xiaodan Wang Hengchong Shi +5 位作者 Haoyu Tang Huan Yu Qiuyan Yan Huawei Yang Xu Zhang Shifang Luan 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2020年第24期14-25,共12页
Poly(γ-glutamic acid)(γ-PGA)has been found widespread applications in biomedical field because of its excellent water solubility,biocompatibility,and bioactivity.Herein,a water-insoluble γ-PGA antibacterial compoun... Poly(γ-glutamic acid)(γ-PGA)has been found widespread applications in biomedical field because of its excellent water solubility,biocompatibility,and bioactivity.Herein,a water-insoluble γ-PGA antibacterial compound is facilely fabricated via one-pot electrostatic assembly of γ-PGA with cationic ethyl lauroyl arginate(ELA).The functionalized γ-PGA compound(γ-PGA-ELA)ethanol solution can facilely produce colorless and transparent coatings on various inorganic,metal,and polymeric substrates,especially for the lumen of slender catheters(length up to 2 m,and inner diameter down to 1 mm).The functionalized γ-PGA coating presents remarkable antibacterial efficacy in vitro and in vivo.In addition,the γ-PGA compound is used as antibacterial additives of polyolefin via melting extrusion,and the asprepared antibacterial polyolefin demonstrates advantageous antibacterial efficacy.More importantly,the functionalized γ-PGA coating exhibit good hemocompatibility,low cytotoxicity,and satisfactory histocompatibility.The as-proposed γ-PGA compound has a great potential to serve as a safe and multifunctional antibacterial candidate to combat biomedical devices-related infections. 展开更多
关键词 Functionalized poly(γ-glutamic acid)compound Electrostatic assembly Antibacterial coating Antibacterial additive Catheter-associated infections
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Genomic and metabolomic analysis of Bacillus licheniformis with enhanced poly-γ-glutamic acid production through atmospheric and room temperature plasma mutagenesis
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作者 Xiaoyu Wei Lijie Yang +6 位作者 Haiyan Wang Zhen Chen Yiyuan Xu Yue Weng Mingfeng Cao Qingbiao Li Ning He 《Frontiers of Chemical Science and Engineering》 SCIE EI CSCD 2022年第12期1751-1760,共10页
Poly-γ-glutamic acid is an extracellular polymeric substance with various applications owing to its valuable properties of biodegradability,flocculating activity,water solubility,and nontoxicity.However,the ability o... Poly-γ-glutamic acid is an extracellular polymeric substance with various applications owing to its valuable properties of biodegradability,flocculating activity,water solubility,and nontoxicity.However,the ability of natural strains to produce poly-γ-glutamic acid is low.Atmospheric and room temperature plasma was applied in this study to conduct mutation breeding of Bacillus licheniformis CGMCC 2876,and a mutant strain M32 with an 11%increase in poly-γ-glutamic acid was obtained.Genome resequencing analysis identified 7 nonsynonymous mutations of ppsC encoding lipopeptide synthetase associated with poly-γ-glutamic acid metabolic pathways.From molecular docking,more binding sites and higher binding energy were speculated between the mutated plipastatin synthase subunit C and glutamate,which might contribute to the higher poly-γ-glutamic acid production.Moreover,the metabolic mechanism analysis revealed that the upregulated amino acids of M32 provided substrates for glutamate and promoted the conversion between L-and D-glutamate acids.In addition,the glycolytic pathway is enhanced,leading to a better capacity for using glucose.The maximum poly-γ-glutamic acid yield of 14.08 g·L^(–1)was finally reached with 30 g·L^(–1)glutamate. 展开更多
关键词 ARTP mutagenesis Bacillus licheniformis poly-γ-glutamic acid metabolomics
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Efficient production of poly-γ-glutamic acid by Bacillus velezensis via solid-state fermentation and its application
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作者 Hong Liu Qiaojuan Yan +2 位作者 Yuchuan Wang Yanxiao Li Zhengqiang Jiang 《Food Bioscience》 SCIE 2022年第2期631-638,共8页
A novel glutamate-dependent poly-γ-glutamic acid(γ-PGA)-producing strain Bacillus velezensis CAU263 isolated from Chinese traditional Douchi was evaluated.An efficient method ofγ-PGA production was performed by thi... A novel glutamate-dependent poly-γ-glutamic acid(γ-PGA)-producing strain Bacillus velezensis CAU263 isolated from Chinese traditional Douchi was evaluated.An efficient method ofγ-PGA production was performed by this strain via solid-state fermentation(SSF)using guar meal.The maximal yield ofγ-PGA reached 158.5 g/kg dry weight(DW)in 250 mL flasks and 155.1 g/kg DW in shallow tray,respectively.The molecular weight ofγ-PGA was 3.8×106 Da,the ratio of L/D-glutamic acid was 26.1%and 73.9%.Additionally,γ-PGA significantly improved the operating characteristics of wheat dough,the specific volume of bread was increased by 15.8%and the bread hardness was reduced by 44.2%owing to the addition of 0.3 g/kgγ-PGA.Thus,γ-PGA could be produced by Bacillus velezensis CAU263 at high level using guar meal and might have potential application prospect in food industry. 展开更多
关键词 Bacillus velezensis poly-γ-glutamic acid Guar meal Solid-state fermentation Bread quality
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γ-聚谷氨酸的生物合成及应用 被引量:50
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作者 游庆红 张新民 +2 位作者 陈国广 徐虹 欧阳平凯 《现代化工》 CAS CSCD 北大核心 2002年第12期56-59,共4页
聚谷氨酸是一种可降解的生物高分子 ,可由微生物生物聚合而得到。综述了聚谷氨酸的生物合成方法、高吸水性聚谷氨酸制备技术以及在农业、医药。
关键词 生物聚合 高吸水树脂 γ-聚谷氨酸 生物合成 应用
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添加γ-聚谷氨酸减少土壤水分深层渗漏提高持水能力 被引量:43
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作者 史文娟 梁嘉平 +2 位作者 陶汪海 谭帅 王全九 《农业工程学报》 EI CAS CSCD 北大核心 2015年第23期94-100,共7页
γ-聚谷氨酸(Poly-γ-glutamic acid,γ-PGA)是一种高分子聚合物,具有超强的吸水能力和生物降解性。为探明γ-PGA在土壤改良方面的应用及对土壤水分运动的影响,该文基于室内垂直一维入渗土柱试验,研究了不同γ-PGA施量配比(0、0.5%、1%... γ-聚谷氨酸(Poly-γ-glutamic acid,γ-PGA)是一种高分子聚合物,具有超强的吸水能力和生物降解性。为探明γ-PGA在土壤改良方面的应用及对土壤水分运动的影响,该文基于室内垂直一维入渗土柱试验,研究了不同γ-PGA施量配比(0、0.5%、1%、2%、4%)对土壤水分入渗及持水特性的影响。结果表明:与对照组相比,添加4%的γ-PGA的累积入渗量、入渗率和湿润锋分别减少了57.95%、53.89%、59.58%;四种入渗模型参数的模拟结果显示,与对照组相比,随着γ-PGA施量的增加,Kostiakov公式中的经验系数从0.808减小到0.538,经验指数从0.530增大到0.623;Philip入渗公式中的吸渗率从0.704减小到0.292;Green-Ampt公式中,饱和导水率从0.0043减小到0.0011 cm/min,湿润区有效的土壤水扩散率从1.19减小到0.16 cm^2/min,湿润锋处的土壤水吸力无明显变化;垂直一维入渗代数模型中,饱和导水率从0.0044减小到0.001 cm/min,非饱和土壤吸力分配系数和土壤水分特征曲线和非饱和导水率综合形状系数均无明显变化趋势。土壤的持水特性结果表明:随着γ-PGA施量的增加,土壤饱和含水率增加,且与对照相比,表层土壤(0~10 cm土层)的含水率呈显著增加趋势,深层土壤(≥10~40 cm土层)的含水率则呈减小趋势。同时,湿润土层的厚度逐渐减小,说明γ-PGA不仅可增强土壤的持水能力,而且还可改变土壤剖面水分的分布形态,使更多水分蓄积在作物根区土层区域。该研究为γ-PGA的田间土壤改良及应用提供了理论支撑。 展开更多
关键词 土壤 水分 入渗 γ-聚谷氨酸 入渗特性 土壤持水特性
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γ-聚谷氨酸的微生物合成、相关基因及应用展望 被引量:31
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作者 曹名锋 金映虹 +2 位作者 解慧 王淑芳 宋存江 《微生物学通报》 CAS CSCD 北大核心 2011年第3期388-395,共8页
γ-聚谷氨酸是一种具有极强水溶性、生物相容性、可完全降解性的环境友好型新材料。介绍γ-聚谷氨酸的基本性质、微生物合成及其影响因素,综述其合成相关基因、合成酶复合体的研究进展及在水凝胶和药物载体方面的应用前景。
关键词 γ-聚谷氨酸 生物合成 合成酶基因 应用前景
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肥料增效剂γ-聚谷氨酸对小青菜产量和品质的影响 被引量:29
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作者 许宗奇 万传宝 +2 位作者 许仙菊 张丹 徐虹 《生物加工过程》 CAS CSCD 2012年第1期58-62,共5页
研究了γ-聚谷氨酸(γ-PGA)肥料增效剂对盆栽小青菜产量和品质的影响。结果表明:正常施肥条件下,施用50 mg/kg的γ-PGA可以显著提高小青菜叶绿素、地下部鲜质量,使小青菜地上部鲜质量最大增产幅度达8.8%,与对照相比差异显著;同时还可以... 研究了γ-聚谷氨酸(γ-PGA)肥料增效剂对盆栽小青菜产量和品质的影响。结果表明:正常施肥条件下,施用50 mg/kg的γ-PGA可以显著提高小青菜叶绿素、地下部鲜质量,使小青菜地上部鲜质量最大增产幅度达8.8%,与对照相比差异显著;同时还可以明显提高土壤铵态氮的含量,氮肥利用率增加10.6%。施用100 mg/kg的γ-PGA与对照相比,可降低小青菜中的硝酸盐含量44.8%,维生素C(Vc)含量提高18.1%,小青菜品质达到最好;当减施15%质量的氮肥时,20 mg/kg的γ-PGA可提高氮肥利用率10.2%~11.6%,说明在肥料缺乏时γ-PGA对小青菜产量、品质的改善效果显著。 展开更多
关键词 小青菜 肥料 γ-聚谷氨酸
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γ-聚谷氨酸的研究及应用进展 被引量:28
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作者 王卫国 王卫 +2 位作者 赵永亮 管景帅 张仟伟 《河南工业大学学报(自然科学版)》 CAS 北大核心 2016年第2期117-122,128,共7页
γ-聚谷氨酸是一种由L-谷氨酸和D-谷氨酸通过脱水缩合而成的聚合物,为一种极具开发潜力的生物可降解高分子材料,其分子呈直链状,含有大量酰胺键和可游离的羧基,具有良好的延展性、柔韧性、生物相容性、黏着性、稳定性与吸水性等特点。... γ-聚谷氨酸是一种由L-谷氨酸和D-谷氨酸通过脱水缩合而成的聚合物,为一种极具开发潜力的生物可降解高分子材料,其分子呈直链状,含有大量酰胺键和可游离的羧基,具有良好的延展性、柔韧性、生物相容性、黏着性、稳定性与吸水性等特点。因其分子中谷氨酸聚合度的差异较大,所以γ-聚谷氨酸的相对分子质量分布范围较广,可为10万至200万不等,不同相对分子质量的γ-聚谷氨酸性质迥然不同,应用也千差万别,领域涉及化妆品、食品、母婴用品、农业、临床治疗、地质研究及地震分析与预测。主要介绍了γ-聚谷氨酸的研究经历与生产方法的改进过程,阐述了其结构特点及与之对应的理化性质,概述了其物理诱变、化学诱变及基因改造等育种方法,总结了其不同相对分子质量对应的应用范围及新发掘的应用领域,并提出了其目前存在的问题与改进方案,并对其未来的发展方向做出了展望。 展开更多
关键词 γ-聚谷氨酸 高分子 生物相容性 菌种选育
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产γ-聚谷氨酸菌株的筛选及其对玉米幼苗生长的影响 被引量:20
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作者 尹成红 雍晓雨 +2 位作者 冉炜 杨兴明 沈其荣 《南京农业大学学报》 CAS CSCD 北大核心 2011年第2期91-96,共6页
从土壤样品中分离和筛选到1株γ-聚谷氨酸(poly-γ-glutamic acid,γ-PGA)高产菌株C1。经形态、生理生化和16S rRNA序列分析,将C1鉴定为枯草芽孢杆菌。水培试验表明:添加γ-PGA对全养分条件下玉米幼苗生物量增长没有明显的影响,但显著... 从土壤样品中分离和筛选到1株γ-聚谷氨酸(poly-γ-glutamic acid,γ-PGA)高产菌株C1。经形态、生理生化和16S rRNA序列分析,将C1鉴定为枯草芽孢杆菌。水培试验表明:添加γ-PGA对全养分条件下玉米幼苗生物量增长没有明显的影响,但显著提高了1/2和1/4养分条件下玉米幼苗地上部和地下部生物量。γ-PGA在各种养分条件下都能提高叶绿素相对含量(SPAD值)和根系活力,但1/2和1/4养分条件下提高作用更显著。当γ-PGA浓度低于0.30 g.L-1时,生物量和SPAD值随γ-PGA浓度增加而增加;添加γ-PGA处理的玉米根系活力始终高于对照且与γ-PGA添加量无关。本研究首次揭示了较低浓度的细菌源γ-PGA对低营养条件下玉米的生长有显著的促进作用。 展开更多
关键词 γ-聚谷氨酸 筛选 芽孢杆菌 玉米 生物量
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γ-聚谷氨酸高产菌株筛选及发酵条件优化 被引量:19
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作者 胡荣章 叶海峰 +2 位作者 金丽 吴昌琳 吴自荣 《中国生物工程杂志》 CAS CSCD 北大核心 2005年第12期62-65,共4页
γ聚谷氨酸是一种生物可降解的高分子材料,可应用于多种领域,因此受到普遍重视。报道了以11株枯草芽孢杆菌菌株为培养菌株,用3种谷氨酸钠含量不同的培养基进行筛选获得1株γ聚谷氨酸高产菌株;再以该菌株为研究对象进行碳源、氮源、谷氨... γ聚谷氨酸是一种生物可降解的高分子材料,可应用于多种领域,因此受到普遍重视。报道了以11株枯草芽孢杆菌菌株为培养菌株,用3种谷氨酸钠含量不同的培养基进行筛选获得1株γ聚谷氨酸高产菌株;再以该菌株为研究对象进行碳源、氮源、谷氨酸钠浓度、初始pH、接种量、通气量等发酵条件的优化实验,结果表明最佳发酵条件为:250ml三角烧瓶装液40ml,接种体积分数5%,麦芽糖50g/L,酵母膏10g/L,谷氨酸钠30g/L,NaCl10g/L,KH2PO45g/L,MgSO4·7H2O0.5g/L,初始pH6.0,发酵60h,此时γ聚谷氨酸产量最高,达到30.26g/L,比国外报道的20g/L的产量有显著提高。纯化后产物经红外光谱及核磁共振检测,鉴定为γ聚谷氨酸。 展开更多
关键词 聚谷氨酸 芽孢杆菌 筛选 发酵 条件优化
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PGA增效剂在温州蜜柑中施用效果的评价 被引量:19
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作者 王润凡 尹业雄 +5 位作者 胡世权 刘进 柯云 张红艳 张帆 姜玲 《湖北农业科学》 北大核心 2010年第4期884-887,共4页
研究了聚γ-谷氨酸(PGA)肥料增效剂和增效肥对温州蜜柑果重、外观和品质的影响。结果表明,施用不同浓度的聚γ-谷氨酸肥料增效剂后,温州蜜柑的果实单果重、榨汁率和维生素C含量3个指标与对照相比产生了明显差异。200mg/L的聚γ-谷氨酸... 研究了聚γ-谷氨酸(PGA)肥料增效剂和增效肥对温州蜜柑果重、外观和品质的影响。结果表明,施用不同浓度的聚γ-谷氨酸肥料增效剂后,温州蜜柑的果实单果重、榨汁率和维生素C含量3个指标与对照相比产生了明显差异。200mg/L的聚γ-谷氨酸使温州蜜柑单果重极显著增加;添加0.2g/L磷酸二氢钾时,300mg/L的聚γ-谷氨酸处理使果实的榨汁率显著增加,200mg/L的聚γ-谷氨酸处理后的果实维生素C含量极显著增加。在宜昌市的示范试验结果表明,聚γ-谷氨酸增效复合肥使可溶性固形物和维生素C含量分别提高了35.4%和11.7%;200mg/L的聚γ-谷氨酸水溶剂灌根处理使可溶性固形物和维生素C含量分别提高了40.2%和19.3%。荆门市的示范试验结果表明,聚γ-谷氨酸增效剂处理可以明显改善大棚栽植柑橘的外观品质,使露地的果实整齐一致,果形圆正,着色均匀,具有天然打蜡的效果,外观表现最好。 展开更多
关键词 γ-谷氨酸 温州蜜柑 肥料增效剂 品质
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聚-γ-谷氨酸施用对草莓产量和果实品质的影响 被引量:18
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作者 喻三保 张红艳 +1 位作者 陈守文 姜玲 《湖北农业科学》 北大核心 2010年第7期1638-1641,共4页
试验研究了聚-γ-谷氨酸(Poly-γ-glutamicacid,PGA)肥料增效剂对草莓(Fragaria ananassa Duchesne)产量和果实品质的影响。结果表明,50、100mg/L的PGA处理后,草莓单果重与对照相比呈极显著的差异;用50、100、200mg/L的PGA灌根2次后,草... 试验研究了聚-γ-谷氨酸(Poly-γ-glutamicacid,PGA)肥料增效剂对草莓(Fragaria ananassa Duchesne)产量和果实品质的影响。结果表明,50、100mg/L的PGA处理后,草莓单果重与对照相比呈极显著的差异;用50、100、200mg/L的PGA灌根2次后,草莓产量比对照依次增产了30.4%、29.5%和19.9%,产生了显著的增产效果;草莓苗定植后,100mg/L的PGA处理加快了植株根系的生长速度,平均根长与对照相比呈显著的差异;使叶片厚度增加,叶片厚度与对照相比呈极显著的差异;果实中可溶性固形物比对照分别增加了2.6%、11.4%和3.9%;色度计检测结果表明,100mg/L的PGA处理,果实亮度L值、着色强度C值、红色着色值a均比对照增加,果实表面更富有光泽。 展开更多
关键词 草莓 聚-γ-谷氨酸 肥料增效剂 产量 果实品质
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