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Qionglin Chen Xinlei Yu Shixia Liu Suya Luo Xiaojiao Chen Nianjun Xu Xue Sun 《Marine drugs》2022,20(7)
Agar is widely applied across the food, pharmaceutical and biotechnology industries, owing to its various bioactive functions. To better understand the agar biosynthesis in commercial seaweed Gracilariopsis lemaneiformis, the activities of four enzymes participating in the agar biosynthesis were detected, and phosphoglucomutase (PGM) was confirmed as highly correlated with agar accumulation. Three genes of PGM (GlPGM1, GlPGM2 and GlPGM3) were identified from the G. lemaneiformis genome. The subcellular localization analysis validated that GlPGM1 was located in the chloroplast and GlPGM3 was not significantly distributed in the organelles. Both the GlPGM1 and GlPGM3 protein levels showed a remarkable consistency with the agar variations, and GlPGM3 may participate in the carbon flux between (iso)floridoside, floridean starch and agar synthesis. After treatment with the PGM inhibitor, the agar and floridean starch contents and the activities of floridean starch synthase were significantly decreased; products identified in the Calvin cycle, the pentose phosphate pathway, the Embden-Meyerhof-Parnas pathway and the tricarboxylic acid cycle were depressed; however, lipids, phenolic acids and the intermediate metabolites, fructose-1,6-phosphate were upregulated. These findings reveal the essential role of PGM in regulating the carbon flux between agar and other carbohydrates in G. lemaneiformis, providing a guide for the artificial regulation of agar accumulation. 相似文献
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Marine collagen is an ideal material for tissue engineering due to its excellent biological properties. However, the limited mechanical properties and poor stability of marine collagen limit its application in tissue engineering. Here, collagen was extracted from the skin of tilapia (Oreochromis nilotica). Collagen-thermoplastic polyurethane (Col-TPU) fibrous membranes were prepared using tilapia collagen as a foundational material, and their physicochemical and biocompatibility were investigated. Fourier transform infrared spectroscopy results showed that thermoplastic polyurethane was successfully combined with collagen, and the triple helix structure of collagen was retained. X-ray diffraction and differential scanning calorimetry results showed relatively good compatibility between collagen and TPU.SEM results showed that the average diameter of the composite nanofiber membrane decreased with increasing thermoplastic polyurethane proportion. The mechanical evaluation and thermogravimetric analysis showed that the thermal stability and tensile properties of Col-TPU fibrous membranes were significantly improved with increasing TPU. Cytotoxicity experiments confirmed that fibrous membranes with different ratios of thermoplastic polyurethane content showed no significant toxicity to fibroblasts; Col-TPU fibrous membranes were conducive to the migration and adhesion of cells. Thus, these Col-TPU composite nanofiber membranes might be used as a potential biomaterial in tissue regeneration. 相似文献
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3个玉米自交系对盐胁迫的生理响应及耐盐性评价 总被引:2,自引:0,他引:2
以自交系M-2导入系、Hr30导入系和Mo17导入系为试验材料,研究不同浓度NaCl(0、100 mmol·L~(-1)、150 mmol·L~(-1)、200 mmol·L~(-1)、250 mmol·L~(-1))对3个玉米幼苗的超氧化物歧化酶(SOD)、过氧化物酶(POD)、可溶性蛋白等生理指标的变化规律的影响,并采用主成份分析与隶属函数相结合的方法对其耐盐性进行综合评价,旨在为玉米耐盐性筛选及抗盐新品种的选育奠定基础。结果表明,3个自交系的株高、生物量、叶绿素含量、净光合速率(Pn)以及可溶性蛋白质的含量大体上随着盐浓度的增加而呈下降的趋势;根长、相对电导率、丙二醛(MDA)含量、超氧化物歧化酶(SOD)活性、过氧化物酶(POD)活性和根冠比大体上呈先上升后下降的趋势。利用主成份分析归纳出株高、净光合速率(Pn)、丙二醛(MDA)等9个与耐盐密切相关的生理指标,运用模糊数学隶属函数分析得出,3个玉米自交系的耐盐性强弱依次为M-2导入系Hr30导入系Mo17导入系。 相似文献
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为了探索不同酶系组成对玉米弯孢叶斑病菌原生质体制备的影响,建立该病菌原生质体遗传转化系统,采用酶系混合物裂解菌丝体制备原生质体,采用PEG介导方法进行原生质遗传转化,通过PCR和Southern blotting技术对转化子进行验证。结果表明:1%溶壁酶+1%蜗牛酶+1%纤维素酶混合酶系为玉米弯孢叶斑病菌原生质体制备的最佳酶系,可以产生原生质体6.78×106 cfu/mL。用PEG介导方法转化共获得16个稳定的转化子,从中随机挑取5个转化子发现质粒pV2已被成功整合到基因组中。本研究获得了制备玉米弯孢叶斑病菌原生质体的最佳酶系,建立了PEG介导的原生质体遗传转化体系,为开展该菌致病相关基因克隆和基因功能研究提供了一种手段。 相似文献
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