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2篇 您的检索式:作者名="XING Menglin"
    题名 作者 年代 出处 被引量
1Agricultural non-point nitrogen pollution control function of dierent vegetation types in riparian wetlands: A case study in the Yellow River wetland in China显示文摘Riparian wetland is the major transition zone of matter, energy and information transfer between aquatic and terrestrial ecosystems and has important functions of water purification and non-point pollution control. Using the field experiment method and an isotope tracing technique, the agricultural non-point nitrogen pollution control function of dierent vegetation types in riparian wetland was studied in the Kouma Section of the Yellow River. The results showed that the retention of agricultural non-point nitrogen pollution by riparian wetland soil occurs mainly in top 0-10 cm layer. The amount of nitrogen retained by surface soils associated with three types of vegetation are 0.045 mg/g for Phragmites communis Trin Linn, 0.036 mg/g for Scirpus triqueter Linn, and 0.032 mg/g for Typha angustifolia Linn, which account for 59.21%, 56.25%, and 56.14% of the total nitrogen interception, respectively. Exogenous nitrogen in 0-10 cm soil layer changes more quickly than in other layers. One month after adding K15NO3 to the tested vegetation, nitrogen content was 77.78% for P. communis Trin, 68.75% for T. angustifolia, and 8.33% for S. triqueter in the surface soil. After three months, nitrogen content was 93.33% for P. communis Trin, 72.22% for S. triqueter, and 37.50% for T. Angustifolia. There are large dierences among vegetation communities respecting to purification of agricultural non-point nitrogen pollution. The nitrogen uptake amount decreases in the sequence: new shoots of P. communis Trin (9.731 mg/g) > old P. communis Trin (4.939 mg/g) > S. triqueter (0.620 mg/g) > T. angustifolia (0.186 mg/g). Observations indicated that the presence of riparian wetlands as buers on and adjacent to stream banks could be recommended to control agricultural non-point pollution.ZHAO Tongqian XU Huashan HE Yuxiao TAI Chao MENG Hongqi ZENG Fanfu XING Menglin 2009Journal of Environmental Sciences2009,21,7:29
2SDCBP-AS1 destabilizesβ-catenin by regulating ubiquitination and SUMOylation of hnRNP K to suppress gastric tumorigenicity and metastasis显示文摘Background:Gastric cancer(GC)is among the most malignant tumors,yet the pathogenesis is not fully understood,especially the lack of detailed information about the mechanisms underlying long non-coding RNA(lncRNA)-mediated post-translational modifications.Here,the molecular mechanisms and clinical significance of the novel lncRNA syndecan-binding protein 2-antisense RNA 1(SDCBP2-AS1)in the tumorigenesis and progression of GC were investigated.Methods:The expression levels of SDCBP2-AS1 in 132 pairs of GC and adjacent normal tissues were compared,and the biological functions were assessed in vitro and in vivo.RNA pull-down and immunoprecipitation assays were conducted to clarify the interactions of SDCBP2-AS1 and heterogeneous nuclear ribonucleoprotein(hnRNP)K.RNA-sequencing,immunoprecipitation,immunofluorescence,and luciferase analyses were performed to investigate the functions of SDCBP2-AS1.Results:SDCBP2-AS1 was significantly downregulated in GC tissues and pre-dictive of poor patient prognosis.Silencing of SDCBP2-AS1 promoted the proliferation and migration of GC cells both in vitro and in vivo.Mechanically,SDCBP2-AS1 physically bound to hnRNP K to repress SUMOylation of hnRNP K and facilitated ubiquitination of hnRNP K andβ-catenin,thereby promoting the degradation ofβ-catenin in the cytoplasm.Silencing of SDCBP2-AS1 caused SUMOylation of hnRNP K and stabilizedβ-catenin activity,which altered tran-scription of downstream genes,resulting in tumorigenesis and metastasis of GC.Moreover,the knockdown of hnRNP K partially abrogated the effects of SDCBP2-AS1.Conclusions:SDCBP2-AS1 interacts with hnRNP K to suppress tumorigenesis and metastasis of GC and regulates post-transcriptional modifications of hnRNP K to destabilizeβ-catenin.These findings suggest SDCBP2-AS1 as a potential target for the treatment of GC.Jing Han Menglin Nie Cong Chen Xiaojing Cheng Ting Guo Longtao Huangfu Xiaomei Li Hong Du Xiaofang Xing Jiafu Ji 2022Cancer Communications2022,42,11:1
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