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    题名 作者 年代 出处 被引量
1Expression of an(E)-β-farnesene synthase gene from Asian peppermint in tobacco affected aphid infestation显示文摘Aphids are major agricultural pests that cause significant yield losses in crop plants each year.(E)-β-farnesene(EβF) is the main or only component of an alarm pheromone involved in chemical communication within aphid species and particularly in the avoidance of predation. EβF also occurs in the essential oil of some plant species, and is catalyzed by EβF synthase. By using oligonucleotide primers designed from the known sequence of an EβF synthase gene from black peppermint(Mentha × piperita), two cDNA sequences, MaβFS1 and MaβFS2, were isolated from Asian peppermint(Mentha asiatica). Expression pattern analysis showed that the MaβFS1 gene exhibited higher expression in flowers than in roots, stems and leaves at the transcriptional level. Overexpression of MaβFS1 in tobacco plants resulted in emission of pure EβF ranging from 2.62 to 4.85 ng d-1g-1of fresh tissue. Tritrophic interactions involving peach aphids(Myzus persicae), and predatory lacewing(Chrysopa septempunctata) larvae demonstrated that transgenic tobacco expressing MaβFS1 had lower aphid infestation. This result suggested that the EβF synthase gene from Asian peppermint could be a good candidate for genetic engineering of agriculturally important crop plants.Xiudao Yu Yongjun Zhang Youzhi Ma Zhaoshi Xu Genping Wang Lanqin Xia 2013The Crop Journal2013,1,1:6
2Synthesis of New 7-O-Modified Chrysin Derivatives and Their Anti-proliferative and Apoptotic Effects on Human Gastric Carcinoma MGC-803 Cells显示文摘LIU Yunmei SONG Xiudao MA Jin HE Jun ZHENG Xing LEI Xiaoyong JIANG Guorong ZHAO Zihao PAN Xia 2014Chemical Research in Chinese Universities2014,30,6:1
3(E)-β-Farnesene synthase genes affect aphid (Myzus persicae) infestation in tobacco (Nicotiana tabacum)显示文摘Xiudao Yu Huw Jones Youzhi Ma Genping Wang Zhaoshi Xu Baoming Zhang Yongjun Zhang Guangwei Ren John Pickett Lanqin Xia 2012Functional & Integrative Genomics2012,,1:1
4Network Pharmacology, Molecular Docking and Experimental Exploring Molecular Mechanisms of Yinqiao Anti-Epidemic Formula in Regulating Mucosal Immune System of Respiratory Tract显示文摘[Objectives]To explore the molecular mechanisms of Yinqiao anti-epidemic formula(YQAEF)in regulating mucosal immune system of respiratory tract.[Methods]The active components of YQAEF were obtained from the TCMSP database,and RMIS targets were obtained from the GeneCards database.A'YQAEF components-RMIS targets-pathways'network was constructed by analyzing the above data to screen core targets for molecular docking verification.A mouse model of acute upper respiratory tract infection(AURI)was developed.Based on the experimental models,the key pathway target genes screened by network pharmacology were verified in vivo.[Results]The main active components of YQAEF involved in the regulation of the RMIS included quercetin,acetic acid,and raffinose.Key targets,such as angiotensin-converting enzyme(ACE),galactosidase alpha(GLA),matrix metalloproteinase 2(MMP2),Serpin Family E Member 1(SERPINE1),and myeloperoxidase(MPO)and important viral infection and endocrine resistance signaling pathways were included in the regulation of the RMIS with YQAEF.Molecular docking assays showed that the key targets had good binding activities with the components of YQAEF.Based on the results of network pharmacology,key target proteins in ACE,GLA,MMP2,SERPINE1,and MPO were selected for experimental verification.The results showed that ACE/ACE2 and MPO expressions were increased in the oral and throat mucosa of the AURI mice.Under YQAEF treatment,the expression levels of ACE/ACE2 and MPO were decreased.[Conclusions]This study revealed the mechanism of YQAEF in the regulation of RMIS,which is associated with multiple components,targets,and pathways.Further experiments confirmed that YQAEF interfered with MPO and ACE/ACE2 signaling pathways to regulate the RMIS in the oral and throat mucosa tissue of mice with AURI,and provide a new direction for exploring the potential antiviral mechanism of YQAEF.Heng XU Fangyuan LI Guoqiang LIANG Jie YUAN Xiudao SONG Yunhai ZHOU Hui ZHU Yichao YAN Tingting WU 2023Agricultural Biotechnology2023,12,4:0
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