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7篇 您的检索式:作者名="Yaling An"
    题名 作者 年代 出处 被引量
1Climate change and its effect on reference crop evapotranspiration in central and western Inner Mongolia during 1961-2009显示文摘水资源是到在中央、西方的内部蒙古的农业生产的主要限制之一,在的地方由干旱、半干旱的气候是特征的。参考庄稼土壤水分蒸发蒸腾损失总量(et 0 ) 是在农业生态系统的水周期的重要部分,它在庄稼生长和产量上有直接效果。et 0 上的气候变化的含意具有为关于安排的水管理和灌溉的农业的高重要性。这研究的目的是在时期上在在中央、西方的内部蒙古的 et 0 上在气候和它的效果分析变化 1961 ~ 2009。为这个目的,在越过学习区域的十个气象学的车站的数据被收集, FAO Penman-Monteith 56 方法被使用。结果证明平均温度,最大的温度和最小的温度由 0.49 莬增加了吗??Di HE Yaling LIU Zhihua PAN Pingli AN Liwei WANG Zhiqiang DONG Jingting ZHANG Xuebiao PAN Peiyi ZHAO 2013Frontiers of Earth Science2013,7,4:8
2A viral protein orchestrates rice ethylene signaling to coordinate viral infection and insect vector-mediated transmission显示文摘Arthropod-borne viruses cause serious threats to human health and global agriculture by rapidly spreading via insect vectors. Southern rice black-streaked dwarf virus (SRBSDV) is the most damaging rice-infecting virus that is frequently transmitted by planthoppers. However, the molecular mechanisms underlying its propagation in the host plants and epidemics in the field are largely unknown. Here, we showed that the SRBSDV-encoded P6 protein is a key effector that regulates rice ethylene signaling to coordinate viral infection and transmission. In early SRBSDV infection, P6 interacts with OsRTH2 in the cytoplasm to activate ethylene signaling and enhance SRBSDV proliferation;this also repels the insect vector to reduce infestation. In late infection, P6 enters the nucleus, where it interacts with OsEIL2, a key transcription factor of ethylene signaling. The P6-OsEIL2 interaction suppresses ethylene signaling by preventing the dimerization of OsEIL2, thereby facilitating viral transmission by attracting the insect vector. Collectively, these findings reveal a novel molecular mechanism by which an arbovirus modulates the host defense system to promote viral infection and transmission.Yaling Zhao Xue Cao Weihua Zhong Shunkang Zhou Zhanbiao Li Hong An Xiahua Liu Ruifeng Wu Surakshya Bohora Yan Wu Zhenyi Liang Jiahao Chen Xin Yang Guohui Zhou Tong Zhang 2022Molecular Plant2022,15,4:4
3Characterization and regulation of the 2,3-butanediol pathway in Serratia marcescens显示文摘Ben Rao Liao Yuan Zhang Jian'an Sun Gang Su Dongzhi Wei Ju Chu Jiawen Zhu Yaling Shen 2012Applied Microbiology and Biotechnology2012,,5:1
4mRNA vaccines expressing homo-prototype/Omicron and hetero-chimeric RBD-dimers against SARS-CoV-2显示文摘Dear Editor,Since emerging in 2019,the severe acute respiratory syndrome coronavirus 2(SARS-CoV-2)has caused an ongoing human pandemic of coronavirus disease 2019(COVID-19).^(1)Vaccines against COVID-19 were developed and rolled out for large-scale vaccination,including two mRNA vaccines(BNT162b2 and mRNA-1273)encoding SARS-CoV-2 pre-fusion spike protein.Yuxuan Han Yaling An Qian Chen Kun Xu Xueyuan Liu Senyu Xu Huixin Duan Annette B.Vogel Uğur Şahin Qihui Wang Lianpan Dai George F.Gao 2022Cell Research2022,32,11:1
5MicroRNA-126 functions as a tumor suppressor in colorectal cancer cellsby targeting CXCR4 via the AKT and ERK1/2 signaling pathways显示文摘Yaling Liu Yu Zhou Xiao Feng Ping An Xiaojing Quan Hao Wang Shicai Ye Caiyuan Yu Yanting He Hesheng Luo 2014International Journal of Oncology2014,,1:1
6Inside-out assembly of viral antigens for the enhanced vaccination显示文摘Current attempts in vaccine delivery systems concentrate on replicating the natural dissemination of live pathogens,but neglect that pathogens evolve to evade the immune system rather than to provoke it.In the case of enveloped RNA viruses,it is the natural dissemination of nucleocapsid protein(NP,core antigen)and surface antigen that delays NP exposure to immune surveillance.Here,we report a multi-layered aluminum hydroxide-stabilized emulsion(MASE)to dictate the delivery sequence of the antigens.In this manner,the receptor-binding domain(RBD,surface antigen)of the spike protein was trapped inside the nanocavity,while NP was absorbed on the outside of the droplets,enabling the burst release of NP before RBD.Compared with the natural packaging strategy,the inside-out strategy induced potent type I interferon-mediated innate immune responses and triggered an immune-potentiated environment in advance,which subsequently boosted CD40+DC activations and the engagement of the lymph nodes.In both H1N1 influenza and SARS-CoV-2 vaccines,rMASE significantly increased antigen-specific antibody secretion,memory T cell engagement,and Th1-biased immune response,which diminished viral loads after lethal challenge.By simply reversing the delivery sequence of the surface antigen and core antigen,the inside-out strategy may offer major implications for enhanced vaccinations against the enveloped RNA virus.Fengqiang Cao Sha Peng Yaling An Kun Xu Tianyi Zheng Lianpan Dai Kenji Ogino To Ngai Yufei Xia Guanghui Ma 2023Signal Transduction and Targeted Therapy2023,8,6:0
7Designing cancer nanodrugs that are highly loaded,pH-responsive,photothermal, and possess a favored morphology:A hierarchical assembly of DOX and layer-by-layer modified rGO显示文摘An effective cancer nanodrug not only needs to load a large fraction of pharmaceutical molecules and release them in responsive ways, to function as imaging and photothermal agents, but also needs to possess the favorable morphologies that are favored by the EPR effect of cancer tissues. In this study, we designed a spherical nanodrug by forming clusters using DOX and a polymer-engineered rGO. These spherical nanodrugs had a diameter of around 750 nm and assumed both functionalities of chemical therapy and the photothermal effect. In addition, this nanodrug featured a high-loading capability of DOX, a pH-responsive release profile, a self-fluorescent capability, and an effective accumulation in cancer cells. The layer-by-layer assembly of three cycles of polyethylene glycol (PEG) and polyacrylic acid (PAA) around the rGO core was indispensable in achieving a chemically-modified rGO precursor that assembled with DOX to produce the spherical nanodrug. The spherical nanodrug effectively decreased cell viability upon NIR irradiations.Xiangming Li Yihe Zhang Zequn Ma Chengjun He Yaling Wu Qi An 2019Chinese Chemical Letters2019,30,2:0
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