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3篇 您的检索式:作者名="Jishan Lin"
    题名 作者 年代 出处 被引量
1Papaya CpbHLH1/2 regulate carotenoid biosynthesis-related genes during papaya fruit ripening显示文摘The ripening of papaya is a physiological and metabolic process associated with accumulation of carotenoids,alternation of flesh color and flavor,which depending on genotype and external factors such as light and hormone.Transcription factors regulating carotenoid biosynthesis have not been analyzed during papaya fruit ripening.RNA-Seq experiments were implemented using different ripening stages of papaya fruit from two papaya varieties.Cis-elements in lycopeneβ-cyclase genes(CpCYC-B and CpLCY-B)were identified,and followed by genome-wide analysis to identify transcription factors binding to these cis-elements,resulting in the identification of CpbHLH1 and CpbHLH2,two bHLH genes.The expressions of CpbHLH1/2 were changed during fruit development,coupled with transcript increase of carotenoid biosynthesis-related genes including CpCYC-B,CpLCY-B,CpPDS2,CpZDS,CpLCY-E,and CpCHY-B.Yeast onehybrid(Y1H)and transient expression assay revealed that CpbHLH1/2 could bind to the promoters of CpCYC-B and CpLCY-B,and regulate their transcriptions.In response to strong light,the results of elevated expression of carotenoid biosynthesis-related genes and the changed expression of CpbHLH1/2 indicated that CpbHLH1/2 were involved in light-mediated mechanisms of regulating critical genes in the carotenoid biosynthesis pathway.Collectively,our findings demonstrated several TF family members participating in the regulation of carotenoid genes and proved that CpbHLH1 and CpbHLH2 individually regulated the transcription of lycopeneβ-cyclase genes(CpCYC-B and CpLCY-B).This study yielded novel findings on regulatory mechanism of carotenoid biosynthesis during papaya fruit ripening.Dong Zhou Yanhong Shen Ping Zhou Mahpara Fatima Jishan Lin Jingjing Yue Xingtan Zhang Li-Yu Chen Ray Ming 2019Horticulture Research2019,6,1:3
2Hyaluronic acid-based hydrogels with tobacco mosaic virus containing cell adhesive peptide induce bone repair in normal and osteoporotic rats显示文摘Tobacco mosaic virus(TMV)has been studied as a multi-functional agent for bone tissue engineering.An osteo-inductive effect of wild-type TMV has been reported,as it can significantly enhance the bone differentiation potential of bone marrow stromal cells both on a two-dimensional substrate and in a three-dimensional(3D)hydrogel system.A TMV mutant(TMV-RGD1)was created which featured the adhesion peptide arginyl-glycyl-aspartic acid(RGD),the most common peptide motif responsible for cell adhesion to the extracellular matrix,on the surface of the virus particle to enhance the bio-functionality of the scaffold material.We hypothesised that the incorporation of either wild-type TMV or TMV-RGD1 in the 3D hydrogel scaffold would induce bone healing in critical size defects of the cranial segmental bone.We have previously tested the virus-functionalised scaffolds,in vitro,with a hyaluronic acid-based system as an in-situ hydrogel platform for 3D cell encapsulation,culture,and differentiation.The results of these experiments suggested the potential of the virus-functionalised hydrogel to promote in vitro stem cell differentiation.The hydrogel-forming system we employed was shown to be safe and biocompatible in vivo.Here,we further explored the physiological responses regarding bone regeneration of a calvarial defect in both normal and osteoporotic ovariectomized rat models.Our results,based on histological analysis in both animal models,suggested that both wild-type TMV and TMV-RGD1 functionalised hydrogels could accelerate bone regeneration,without systemic toxicity,evaluated by blood counts.New bone formation was intensified by the incorporation of the RGD-mutant viral particles.This finding increased the potential for use of the rodshaped plant virus as a platform for the addition of powerful biofunctionality for tissue engineering applications.This study was approved by the Ethics Committee on Animal Use of the Zhenjiang Affiliated First People’s Hospital affiliated to Jiangsu University.Jishan Yuan Panita Maturavongsadit Zhihui Zhou Bin Lv Yuan Lin Jia Yang Jittima Amie Luckanagul 2020Biomaterials Translational2020,1,1:2
3全基因组关联研究发现中国人群前列腺癌两个新易感位点9q31.2和19q13.4显示文摘0前言在全球范围内,前列腺癌的发病率和病死率存在着巨大差异。该病在西方发达国家发病率最高,在非裔美国人群病死率最高,而在亚洲人群中发病率及病死率均为全球最低,提示不同人种在前列腺癌的遗传方面存在异质性。在欧美和日本人群中,全基因组关联研究(GWAS)技术已经被用于检测前列腺癌的遗传易感性位点,但至今尚无关于GWAS检测中国人群前列腺癌易感位点的报道。Jianfeng Xu Zengnan Mo Dingwei Ye Meilin Wang Fang Liu Guangfu Jin Chuanliang Xu Xiang Wang Qiang Shao Zhiwen Chen Zhihua Tao Jun Qi Fangjian Zhou Zhong Wang Yaowen Fu Dalin He Qiang Wei Jianming Guo Denglong Wu Xin Gao Jianlin Yuan Gongxian Wang Yong Xu Guozeng Wang Haijun Yao Pei Dong Yang Jiao Mo Shen Jin Yang Jun Ou-Yang Haowen Jiang Yao Zhu Shancheng Ren Zhengdong Zhang Changjun Yin Xu Gao Bo Dai Zhibin Hu Yajun Yang Qijun Wu Hongyan Chen Peng Peng Ying Zheng Xiaodong Zheng Yongbing Xiang Jirong Long Jian Gong Rong Na Xiaoling Lin Hongjie Yu Sha Tao Junjie Feng Jishan Sun Wennuan Liu Ann Hsing Jianyu Rao Qiang Ding Fredirik Wiklund Henrik Gronberg Xiao-Ou Shu Wei Zheng Hongbing Shen Li Jin Rong Shi Daru Lu Xuejun Zhang Jielin Sun S Lilly Zheng Yinghao Sun 2013第二军医大学学报2013,34,4:0
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