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7篇 您的检索式:作者名="Xu Meilan"
    题名 作者 年代 出处 被引量
1Decolorization of azo dyes by a salt-tolerant Staphylococcus cohnii strain isolated from textile wastewater显示文摘Bin YAN Cuihong DU Meilan XU Wenchao LIAO 2012Frontiers of Environmental Science & Engineering2012,6,6:2
2OsCYCP4s coordinate phosphate starvation signaling with cell cycle progression in rice显示文摘Phosphate starvation leads to a strong reduction in shoot growth and yield in crops.The reduced shoot growth is caused by extensive gene expression reprogram-ming triggered by phosphate deficiency,which is not itself a direct consequence of low levels of shoot phosphorus.However,how phosphate starvation inhibits shoot growth in rice is still unclear.In this study,we determined the role of OsCYCP4s in the regulation of shoot growth in response to phosphate starvation in rice.We demonstrate that the ex-pression levels of OsCYCP4s,except OsCYCP4;3,were induced by phosphate starvation.Overexpression of the phosphate starvation induced OsCYCP4s could compete with the other cyclins for the binding with cyclin-dependent kinases,therefore suppressing growth by reducing cell proliferation.The phosphate starvation induced growth inhibition in the loss-of-function mutants cycp4;1,cycp4;2,and cycp4;4 is par-tially compromised.Furthermore,the expression of some phosphate starvation inducible genes is negatively modu-lated by these cyclins,which indicates that these OsCYCP4s may also be involved in phosphate starvation signaling.We conclude that phosphate starvation induced OsCYCP4s might coordinate phosphate starvation signaling and cell cycle progression under phosphate starvation stress.Lei Xu Fang Wang Ruili Li Minjuan Deng Meilan Fu Huiying Teng Keke Yi 2020Journal of Integrative Plant Biology2020,62,7:2
3Comprehensive Analysis of Peripheral Blood Lymphocytes in 76 Women with Recurrent Miscarriage before and after Lymphocyte Immunotherapy显示文摘Peiyan Liang Meilan Mo Guan‐Gui Li Biao Yin Jing Cai Tonghua Wu Xuebing He Xu Zhang Yong Zeng 2012Am J Reprod Immunol2012,,2:1
4A hybrid anaerobic membrane bioreactor coupled with online ultrasonic equipment for digestion of waste activated sludge显示文摘XU Meilan WEN Xianghua YU Zhiyong 2011Bioresource Technology2011,102,:1
5Organocatalytic domino reaction of electron-deficient 2,4-dienes with 2-halo-1,3-dicarbonyl com- pounds:A highly regio- and stereoselective approach to functionalized five-membered carbocycles显示文摘Xie Jianwu Xu Meilan Zhang Renzun 2014Chem Inform2014,45,33:1
6Characteristics of extracellular polymeric substances and bacterial communities in an anaerobic membrane bioreactor coupled with online ultrasound equipment显示文摘YU Zhiyong WEN Xianghua XU Meilan 2012Bioresource Technology2012,117,:1
7The organization and function of the Golgi apparatus in dendrite development and neurological disorders显示文摘Dendrites are specialized neuronal compartments that sense, integrate and transfer information in the neural network. Their development is tightly controlled and abnormal dendrite morphogenesis is strongly linked to neurological disorders. While dendritic morphology ranges from relatively simple to extremely complex for a specified neuron, either requires a functional secretory pathway to continually replenish proteins and lipids to meet dendritic growth demands. The Golgi apparatus occupies the center of the secretory pathway and is regulating posttranslational modifications, sorting, transport, and signal transduction, as well as acting as a non-centrosomal microtubule organization center. The neuronal Golgi apparatus shares common features with Golgi in other eukaryotic cell types but also forms distinct structures known as Golgi outposts that specifically localize in dendrites. However, the organization and function of Golgi in dendrite development and its impact on neurological disorders is just emerging and so far lacks a systematic summary. We describe the organization of the Golgi apparatus in neurons, review the current understanding of Golgi function in dendritic morphogenesis, and discuss the current challenges and future directions.Meilan Chen Lu Xu Yi Wu Peter Soba Chun Hu 2023Genes & Diseases2023,10,6:0
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