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    题名 作者 年代 出处 被引量
1BIK1 cooperates with BAK1 to regulate constitutive immunity and cell death in Arabidopsiss显示文摘In Arabidopsis,both the membrane-anchored receptor-like kinase(RLK) BAK1 and the receptor-like cytoplasmic kinase(RLCK) BIK1 are important mediators of transmembrane signal transduction that regulate plant development and immunity.However,little attention has been paid to their genetic association.This study found the bak1 bik1 double mutant of Arabidopsis displayed a severe dwarfism phenotype due to constitutive immunity and cell death in developing plants.These data suggest that BIK1 cooperates with BAK1 to regulate constitutive immunity and cell death.Jun Liu Sufen Chen Lijuan Chen Qi Zhou Menglong Wang Dongru Feng Jian-Feng Li Jinfa Wang Hong-Bin Wang Bing Liu 2017Journal of Integrative Plant Biology2017,59,4:2
2Identification of osteopontin as a novel marker for early hepatocellular carcinoma显示文摘Sufen Shang Amelie Plymoth Shaokui Ge Ziding Feng Hugo R. Rosen Suleeporn Sangrajrang Pierre Hainaut Jorge A. Marrero Laura Beretta 2012Hepatology2012,,2:2
3Crowdsourcing or witkey,which leads?显示文摘LIN SUFEN OUYANG ZHONGHUI LIN FENG 2013Journal of Applied Sciences2013,13,12:1
4特异性酪氨酸磷酸化循环调控了植物丝/苏氨酸受体激酶介导的真菌激活应答显示文摘文章简介细胞表面的模式识别受体(PRRs)介导了植物的先天免疫,植物的PRRs主要是丝/苏氨酸类型的受体激酶,能够识别病原微生物特异性小分子。然而,关于它们的激活机制仍然并不清楚。刘俊 刘兵 Sufen Chen Ben-Qiang Gong Lijuan Chen Qi Zhou Feng Xiong Menglong Wang Dongru Feng 李剑峰 王宏斌 王金发 2019科学新闻2019,0,2:1
5Photodegradation of xylene isomers:Kinetics,mechanism,secondary pollutant formation potential and health risk evaluation显示文摘Photodegradation technology has been widely applied in the purification of industrial aromatic hydrocarbons.However,whether this technology efficiently removes the pollutants to prevent secondary pollution and health risk is still unclear.Here,the photodegradation processes of three xylenes were compared under designed reaction atmospheres and light sources.Xe lamp showed poor photodegradation ability toward xylenes,no matter in N_(2) or N_(2)+O_(2)system,while much higher photodegradation performance of xylenes were obtained under ultraviolet(UV)and vacuum ultraviolet(VUV)irradiation,especially in N_(2)+O_(2)+VUV system,where 97.9%of m-xylene,99.0%of o-xylene or 87.5%of p-xylene with the initial concentration of 860 mg/m^(3) was removed within 240 min.The xylenes underwent three processes of photo-isomerization,photodecomposition and photo-oxidation to produce intermediates of aromatics,alkanes and carbonyls.Among them,the photo-isomerization products showed the highest concentration percentage(e.g.,≥50%in o-xylene system),confirming that photo-isomerization reaction was the dominated photodegradation process of xylenes.Moreover,these isomerized products not only contributed about 97%and91%to the formation potential of O3(OFP)and secondary organic aerosols(SOAFP),but also displayed obvious non-carcinogenic risk,although one of photodecomposition product—benzene showed the highest occupational exposure risk.Therefore,the secondary pollution and health risks of photodegradation products of xylenes were non-ignorable,although the OFP,SOAFP and health risks of the generated products reduced at least 4.5 times in comparison with that of the degraded xylenes.The findings are helpful for the appropriate application of this technology in the purification of industrial organic waste gas.Xiaoyan Chen Weikun Zhu Sufen Feng Jiangyao Chen 2024Journal of Environmental Sciences2024,,2:0
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