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铵态氮加富对贝克喜盐草光合作用、谷氨酰胺合成酶和氨基酸成分的影响 被引量:1
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作者 江志坚 Chanaka Isuranga PREMARATHNE +4 位作者 方扬 林基桢 吴云超 刘松林 黄小平 《热带海洋学报》 CAS CSCD 北大核心 2023年第3期116-125,共10页
海草贝克喜盐草(Halophila beccarii)由于体型小,其重要性一直被忽视,且近海氮负荷增加导致其处于加速退化状态。目前贝克喜盐草对铵毒害的生理响应尚不清楚。基于室内模拟实验,设置了四种铵态氮梯度(对照;25、50和100μmol·L^(-1... 海草贝克喜盐草(Halophila beccarii)由于体型小,其重要性一直被忽视,且近海氮负荷增加导致其处于加速退化状态。目前贝克喜盐草对铵毒害的生理响应尚不清楚。基于室内模拟实验,设置了四种铵态氮梯度(对照;25、50和100μmol·L^(-1)),结合叶绿素荧光技术、非损伤微测技术和靶向代谢组学,探讨了铵态氮加富对贝克喜盐草光合作用、叶绿素、叶肉细胞铵离子流速、谷氨酰胺合成酶活性以及营养成分的影响。结果表明,贝克喜盐草叶片的最大相对电子传递速率呈现低铵态氮加富>中铵态氮加富>对照>高铵态氮加富的变化趋势,高铵态氮加富显著降低了最大相对电子传递速率和光能利用效率,进而减少碳库用于铵态氮的同化。同时,铵态氮加富显著增加了铵离子内流流速和谷氨酰胺合成酶活性,把过多的铵同化成氨基酸。但是,铵态氮加富却降低了氨基酸成分,这可能是由于氨基酸被用来合成有机物如关键次生代谢物,以进一步调节和适应铵毒害作用。因此,适度的铵营养盐增加可促进贝克喜盐草的光合作用和生长,而高浓度的铵营养盐则对贝克喜盐草产生毒害作用。 展开更多
关键词 铵态氮 贝克喜盐草 光合作用 谷氨酰胺合成酶 氨基酸
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微冻,领先国际的食材保鲜技术 被引量:1
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作者 谈永松 林基祯 +2 位作者 邱建华 陈泽群 管丽君 《上海畜牧兽医通讯》 2023年第5期1-6,F0002,共7页
微冻技术是指将食材通过(超)低温微冻液进行冻结贮藏并实现保鲜的一种新型食材锁鲜保藏方法,可应用于农产品、水产品及各类畜禽肉类产品的保鲜,可为医疗机构生物样品提供冷冻保存,可开展基于冷诱导技术的作物育种。本文介绍了微冻保鲜... 微冻技术是指将食材通过(超)低温微冻液进行冻结贮藏并实现保鲜的一种新型食材锁鲜保藏方法,可应用于农产品、水产品及各类畜禽肉类产品的保鲜,可为医疗机构生物样品提供冷冻保存,可开展基于冷诱导技术的作物育种。本文介绍了微冻保鲜技术的特点、研究应用进展,旨在为农/水产品和畜禽肉类产品的贮藏保鲜提供新技术,为微冻技术应用于更广泛领域提供参考。 展开更多
关键词 微冻技术 微冻液 农产品 水产品 肉类 贮藏 保鲜
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Carrimycin ameliorates lipopolysaccharide and cecal ligation and puncture-induced sepsis in mice
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作者 LAI Junzhong LIANG Jiadi +9 位作者 CHEN Kunsen GUAN Biyun CHEN Zhirong CHEN linqin FAN Jiqiang ZHANG Yong LI Qiumei SU Jingqian CHEN Qi lin jizhen 《Chinese Journal of Natural Medicines》 SCIE CAS CSCD 2024年第3期235-248,共14页
Carrimycin(CA),sanctioned by China’s National Medical Products Administration(NMPA)in 2019 for treating acute bronchitis and sinusitis,has recently been observed to exhibit multifaceted biological activities,encompas... Carrimycin(CA),sanctioned by China’s National Medical Products Administration(NMPA)in 2019 for treating acute bronchitis and sinusitis,has recently been observed to exhibit multifaceted biological activities,encompassing anti-inflammatory,antiviral,and anti-tumor properties.Despite these applications,its efficacy in sepsis treatment remains unexplored.This study introduces a novel function of CA,demonstrating its capacity to mitigate sepsis induced by lipopolysaccharide(LPS)and cecal ligation and puncture(CLP)in mice models.Our research employed in vitro assays,real-time quantitative polymerase chain reaction(RT-qPCR),and RNA-seq analysis to establish that CA significantly reduces the levels of pro-inflammatory cytokines,namely tumor necrosis factor-alpha(TNF-α),interleukin 1 beta(IL-1β),and interleukin 6(IL-6),in response to LPS stimulation.Additionally,Western blotting and immunofluorescence assays revealed that CA impedes Nuclear Factor Kappa B(NF-κB)activation in LPS-stimulated RAW264.7 cells.Complementing these findings,in vivo experiments demonstrated that CA effectively alleviates LPS-and CLP-triggered organ inflammation in C57BL/6 mice.Further insights were gained through 16S sequencing,highlighting CA’s pivotal role in enhancing gut microbiota diversity and modulating metabolic pathways,particularly by augmenting the production of short-chain fatty acids in mice subjected to CLP.Notably,a comparative analysis revealed that CA’s anti-inflammatory efficacy surpasses that of equivalent doses of aspirin(ASP)and TIENAM.Collectively,these findings suggest that CA exhibits significant therapeutic potential in sepsis treatment.This discovery provides a foundational theoretical basis for the clinical application of CA in sepsis management. 展开更多
关键词 Carrimycin INFLAMMATION LIPOPOLYSACCHARIDE Cecal ligation and puncture SEPSIS Gut microbiota
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