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发文基金:国家自然科学基金北京市自然科学基金国家重点基础研究发展计划更多>>
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γ-亚麻酸对小鼠免疫系统的调节作用被引量:14
2011年
目的:分析γ-亚麻酸3种不同作用途径对小鼠血清中24种细胞因子的影响,进而探索γ-亚麻酸对小鼠免疫系统的调节作用。方法:将γ-亚麻酸以口服灌胃、腹腔注射、耳静脉注射3种方式作用于小鼠,分别在3、2、2 h后眼球取血,分离血清。采用液体芯片检测技术测定小鼠血清中2 4种细胞因子含量的变化。结果:口服灌胃组中,G-CSF、MCP-1、MIP-1α、VEGF、IL-1α、IL-3、IL-10、IL-13,8种细胞因子显著变化;腹腔注射组中有IFN-γ、TNF-α、IL-1β、IL-5、IL-6、IL-10,6种细胞因子显著变化;耳静脉注射组中G-CSF、KC、IP-10、IL-1α、IL-4、IL-12(p40)、IL-17 7种细胞因子显著变化。根据每种作用途径显著变化的细胞因子的产生及作用靶细胞,分别构建γ-亚麻酸作用后机体细胞通讯网络的变化。结论:γ-亚麻酸能通过小鼠胃肠黏膜系统和血液系统传递信号,调节机体的免疫,其作用的信号途径涉及NF-κB、P38/JNK/MAPK、JAK-STAT等途径。γ-亚麻酸不仅具有必需脂肪酸的作用,而且具有显著的免疫调节作用,不仅具有刺激炎症作用,同时还可以发挥抗炎症作用。
乔冬庞广昌李杨
关键词:Γ-亚麻酸细胞因子免疫调节
Interactive effects of phosphorus deficiency and exogenous auxin on root morphological and physiological traits in white lupin (Lupinus albus L.)被引量:5
2013年
White lupin (Lupinus albus) exhibits strong root morphological and physiological responses to phosphorus (P) deficiency and auxin treatments, but the interactive effects of P and auxin in regulating root morphological and physiological traits are not fully understood. This study aimed to assess white lupin root traits as influenced by P (0 or 250 μmol L-1 ) and auxin (10-8 μmol L-1 NAA) in nutrient solution. Both P deficiency and auxin treatments significantly altered root morphological traits, as evidenced by reduced taproot length, increased number and density of first-order lateral roots, and enhanced cluster-root formation. Changes in root physiological traits were also observed, i.e., increased proton, citrate, and acid phosphatase exudation. Exogenous auxin enhanced root responses and sensitivity to P deficiency. A significant interplay exists between P and auxin in the regulation of root morphological and physiological traits. Principal component analysis showed that P availability explained 64.8% and auxin addition 21.3% of the total variation in root trait parameters, indicating that P availability is much more important than auxin in modifying root responses of white lupin. This suggests that white lupin can coordinate root morphological and physiological responses to enhance acquisition of P resources, with an optimal trade-off between root morphological and physiological traits regulated by external stimuli such as P availability and auxin.
TANG HongLiangSHEN JianBoZHANG FuSuoRENGEL Zed
关键词:外源生长素白羽扇豆生理性状缺磷根系性状
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