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| 1 | CsPrx25,a class III peroxidase in Citrus sinensis,confers resistance to citrus bacterial canker through the maintenance of ROS homeostasis and cell wall lignification显示文摘Citrus bacterial canker(CBC)results from Xanthomonas citri subsp.citri(Xcc)infection and poses a grave threat to citrus production.Class III peroxidases(CIII Prxs)are key proteins to the environmental adaptation of citrus plants to a range of exogenous pathogens,but the role of CIII Prxs during plant resistance to CBC is poorly defined.Herein,we explored the role of CsPrx25 and its contribution to plant defenses in molecular detail.Based on the expression analysis,CsPrx25 was identified as an apoplast-localized protein that is differentially regulated by Xcc infection,salicylic acid,and methyl jasmone acid in the CBC-susceptible variety Wanjincheng(C.sinensis)and the CBC-resistant variety Calamondin(C.madurensis).Transgenic Wanjincheng plants overexpressing CsPrx25 were generated,and these transgenic plants exhibited significantly increased CBC resistance compared with the WT plants.In addition,the CsPrx25-overexpressing plants displayed altered reactive oxygen species(ROS)homeostasis accompanied by enhanced H_(2)O_(2) levels,which led to stronger hypersensitivity responses during Xcc infection.Moreover,the overexpression of CsPrx25 enhanced lignification as an apoplastic barrier for Xcc infection.Taken together,the results highlight how CsPrx25-mediated ROS homeostasis reconstruction and cell wall lignification can enhance the resistance of sweet orange to CBC. | Qiang Li Xiujuan Qin Jingjing Qi Wanfu Dou Christophe Dunand Shanchun Chen Yongrui He | 2020 | Horticulture Research2020,7,1: | 5 |
| 2 | Transcription factor WRKY22 regulates canker susceptibility in sweet orange (Citrus sinensis Osbeck) by enhancing cell enlargement and CsLOB1 expression显示文摘Pathological hypertrophy(cell enlargement)plays an important role in the development of citrus canker,but its regulators are largely unknown.Although WRKY22 is known to be involved in pathogen-triggered immunity and positively regulates resistance to bacterial pathogens in Arabidopsis,rice and pepper,the CRISPR/Cas9-mediated partial knockout of CsWRKY22 improves resistance to Xanthomonas citri subsp.citri(Xcc)in Wanjincheng orange(Citrus sinensis Osbeck).Here,we demonstrate that CsWRKY22 is a nucleus-localized transcriptional activator.CsWRKY22-overexpressing plants exhibited dwarf phenotypes that had wrinkled and thickened leaves and were more sensitive to Xcc,whereas CsWRKY22-silenced plants showed no visible phenotype changes and were more resistant to Xcc.Microscopic observations revealed that the overexpression of CsWRKY22 increased cell size in the spongy mesophyll.Transcriptome analysis showed that cell growth-related pathways,such as the auxin and brassinosteroid hormonal signaling and cell wall organization and biogenesis pathways,were significantly upregulated upon CsWRKY22 overexpression.Interestingly,CsWRKY22 activated the expression of CsLOB1,which is a key gene regulating susceptibility to citrus canker.We further confirmed that CsWRKY22 bound directly to the W-boxes just upstream of the transcription start site of CsLOB1 in vivo and in vitro.We conclude that CsWRKY22 enhances susceptibility to citrus canker by promoting host hypertrophy and CsLOB1 expression.Thus,our study provides new insights into the mechanism regulating pathological hypertrophy and the function of WRKY22 in citrus. | Qin Long Meixia Du Junhong Long Yu Xie Jingyun Zhang Lanzhen Xu Yongrui He Qiang Li Shanchun Chen Xiuping Zou | 2021 | Horticulture Research2021,8,1: | 5 |
| 3 | Gas chromatographic determination of lignin in sediment显示文摘After the oxidation of river and marine sediments with CuO under alkaline conditions, the phenolic compounds in the oxidation products are determined gas chromatographically and compared to that of lignin oxidation products. The method of CuO oxidation is compared to that of nitrobenzen. The quantitative determination of produced phenolic compounds by capillary gas chromatography is examined and the blank and repetibility of the method are tested. | Fu Tianbao, Chen Song and Jiang Shanchun Third Institute of Oceanography, State Oceanic Administration, Xiamen 361005, China Institute of Geochemistry, Academia Sinica, Guangzhou 510640, China | 1993 | Acta Oceanologica Sinica1993,12,3: | 4 |
| 4 | CitGVD:a comprehensive database of citrus genomic variations显示文摘Citrus is one of the most important commercial fruit crops worldwide.With the vast genomic data currently available for citrus fruit,genetic relationships,and molecular markers can be assessed for the development of molecular breeding and genomic selection strategies.In this study,to permit the ease of access to these data,a web-based database,the citrus genomic variation database(CitGVD,http://citgvd.cric.cn/home)was developed as the first citrusspecific comprehensive database dedicated to genome-wide variations including single nucleotide polymorphisms(SNPs)and insertions/deletions(INDELs).The current version(V1.0.0)of CitGVD is an open-access resource centered on 1,493,258,964 high-quality genomic variations and 84 phenotypes of 346 organisms curated from in-house projects and public resources.CitGVD integrates closely related information on genomic variation annotations,related gene annotations,and details regarding the organisms,incorporating a variety of built-in tools for data accession and analysis.As an example,CitGWAS can be used for genome-wide association studies(GWASs)with SNPs and phenotypic data,while CitEVOL can be used for genetic structure analysis.These features make CitGVD a comprehensive web portal and bioinformatics platform for citrus-related studies.It also provides a model for analyzing genome-wide variations for a wide range of crop varieties. | Qiang Li Jingjing Qi Xiujuan Qin Wanfu Dou Tiangang Lei Anhua Hu Ruirui Jia Guojin Jiang Xiuping Zou Qin Long Lanzhen Xu Aihong Peng Lixiao Yao Shanchun Chen Yongrui He | 2020 | Horticulture Research2020,7,1: | 4 |
| 5 | Cloning and Expression Analysis of Citrus Genes Cs GH3.1 and Cs GH3.6Responding to Xanthomonas axonopodis pv. citri Infection显示文摘To study the functions of the early auxin-responsive genes Cs GH3.1 and Cs GH3.6 in citrus resistance against canker disease, we cloned Cs GH3.1and Cs GH3.6 in ‘Newhall' Navel Orange(Citrus sinensis Osbeck). They are 1 797 bp and 1 887 bp and encode 598 and 629 amino acids, respectively. In vitro mature leaves from susceptible ‘Newhall' and resistant Calamondin(C. madurensis) were inoculated by a Xanthomonas axonopodis pv. citri(Xac) bacterial suspension, and expression of Cs GH3.1 and Cs GH3.6 in the two varieties were analyzed using quantitative real-time PCR(q RT-PCR). ‘Newhall' leaves were treated with different hormones for 3 days, inoculated by Xac bacterial suspension, and then the symptoms in these leaves were investigated. We used q RT-PCR to analyze the effect of different hormones on Cs GH3.1 and Cs GH3.6 expression in ‘Newhall'leaves. The expression levels of both Cs GH3.1 and Cs GH3.6 were significantly induced by Xac in ‘Newhall' leaves, compared with levels in Calamondin leaves. 1-naphthy acetic acid(NAA) increased the hypertrophy of infection sites in ‘Newhall' leaves, while naphthyl-phthalamic acid(NPA)had no visible effect on lesion development. NAA hormone greatly improved expression of Cs GH3.1 in ‘Newhall', but not Cs GH3.6. These results indicate that the auxin primary-response gene Cs GH3.1 plays an important role in citrus susceptibility to Xac. | CHEN Min HE Yongrui XU Lanzhen PENG Aihong LEI Tiangang YAO Lixiao LI Qiang ZHOU Pengfei BAI Xiaojing DUAN Minjie JIANG Xueyou JIA Ruirui ZOU Xiuping CHEN Shanchun | 2016 | Horticultural Plant Journal2016,2,4: | 4 |
| 6 | Associations of noniodized salt and thyroid nodule among the Chinese population: a large cross-sectional study1234显示文摘 | Zexin Chen Weimin Xu Yangmei Huang Xingyi Jin Jin Deng Sujuan Zhu Hui Liu Shanchun Zhang Yunxian Yu | 2013 | American Journal of Clinical Nutrition2013,,3: | 3 |
| 7 | CsWAKL08,a pathogen-induced wall-associated receptor-like kinase in sweet orange,confers resistance to citrus bacterial canker via ROS control and JA signaling显示文摘Citrus bacterial canker(CBC)is a disease resulting from Xanthomonas citri subsp.citri(Xcc)infection and poses a grave threat to citrus production worldwide.Wall-associated receptor-like kinases(WAKLs)are proteins with a central role in resisting a range of fungal and bacterial diseases.The roles of WAKLs in the context of CBC resistance,however,remain unclear.Here,we explored the role of CsWAKL08,which confers resistance to CBC,and we additionally analyzed the molecular mechanisms of CsWAKL08-mediated CBC resistance.Based on systematic annotation and induced expression analysis of the CsWAKL family in Citrus sinensis,CsWAKL08 was identified as a candidate that can be upregulated by Xcc infection in the CBC-resistant variety.CsWAKL08 can also be induced by the phytohormones salicylic acid(SA)and methyl jasmonic acid(MeJA)and spans the plasma membrane.Overexpression of CsWAKL08 resulted in strong CBC resistance in transgenic sweet oranges,whereas silencing of CsWAKL08 resulted in susceptibility to CBC.The peroxidase(POD)and superoxide dismutase(SOD)activities were significantly enhanced in the CsWAKL08-overexpressing plants compared to the control plants,thereby mediating reactive oxygen species(ROS)homeostasis in the transgenic plants.Moreover,the JA levels and the expression of JA biosynthesis and JA responsive genes were substantially elevated in the CsWAKL08 overexpression plants relative to the controls upon Xcc infection.Based on these findings,we conclude that the wall-associated receptor-like kinase CsWAKL08 positively regulates CBC resistance through a mechanism involving ROS control and JA signaling.These results further highlight the importance of this kinase family in plant pathogen resistance. | Qiang Li Anhua Hu Jingjing Qi Wanfu Dou Xiujuan Qin Xiuping Zou Lanzhen Xu Shanchun Chen Yongrui He | 2020 | Horticulture Research2020,7,1: | 3 |
| 8 | Proteomic and metabolomic analyses provide insight into the off-flavour of fruits from citrus trees infected with‘Candidatus Liberibacter asiaticus’显示文摘Orange fruit from trees infected by‘Candidatus Liberibacter asiaticus’(CaLas)often do not look fully mature and exhibit off-flavours described as bitter,harsh,and metallic rather than juicy and fruity.Although previous studies have been carried out to understand the effect of CaLas on the flavour of orange juice using metabolomic methods,the mechanisms leading to the off-flavour that occurs in Huanglongbing(HLB)-symptomatic fruit are not well understood.In this study,fruits were collected from symptomatic and healthy Valencia sweet orange(Citrus sinensis)trees grafted on Swingle(C.paradisi X Poncirus trifoliata)rootstock.Isobaric tags for relative and absolute quantification(iTRAQ)and gas chromatography-mass spectrometry(GC-MS)were used to measure the proteins,sugars,organic acids,amino acids,and volatile terpenoids.The results showed that most of the differentially expressed proteins involved in glycolysis,the tricarboxylic acid(TCA)cycle and amino-acid biosynthesis were degraded,and terpenoid metabolism was significantly downregulated in the symptomatic fruit.Valencene,limonene,3-carene,linalool,myrcene,andα-terpineol levels were significantly lower in fruit from CaLas-infected trees than from healthy trees.Similar phenomena were observed for sucrose and glucose.Our study indicated that off-flavour of symptomatic fruit was associated with a reduction in the levels of terpenoid products and the downregulation of proteins in glycolysis,the TCA cycle,and the terpenoid biosynthesis pathway. | Lixiao Yao Qibin Yu Ming Huang Weilun Hung Jude Grosser Shanchun Chen Yu Wang Frederick G.GmitterJr. | 2019 | Horticulture Research2019,6,1: | 1 |
| 9 | Robot welding seam tracking method based on passive vision for thin plate closed-gap butt welding显示文摘 | Hongbo Ma Shanchun Wei Zhongxi Sheng Tao Lin Shanben Chen | 2010 | The International Journal of Advanced Manufacturing Technology2010,48,912: | 1 |
| 10 | Biological activity of the essential oil from the leaves of Piper sarmentosum Roxb. (Piperaceae) and its chemical constituents on Brontispa longissima (Gestro) (Coleoptera: Hispidae)显示文摘 | Weiquan Qin Shanchun Huang Chaoxu Li Siting Chen Zhengqiang Peng | 2009 | Pesticide Biochemistry and Physiology2009,,3: | 1 |
| 11 | Comparative analysis of Wanjincheng orange leaf and root responses to ‘Candidatus liberibacter asiaticus’ infection using leaf-disc grafting显示文摘Citrus Huanglongbing,associated with Candidatus Liberibacter asiaticus(Las),is the serious disease of citrus worldwide.Here,we compared differences between leaf and root responses in Wanjincheng Orange(Citrus sinensis Osbeck)to Las infection using leaf-disc grafting.Trees had no obvious symptoms in the first two months after grafting(MAG),but yellowing leaves,thickened midribs and decayed roots began to appear at 6 MAG.The Las growth rate in roots was greater than inmidribs from 2 to 6 MAG;however,by 10 MAG,it was significantly lower in roots than in midribs.Amicroscopic analysis revealed that starch accumulation,callose deposition,cellwall thickness and the number of cell layers increased in the phloem of infected trees.After Las infection,the starch content in the leaves was significantly higher than that in the roots,while the callose deposition in the midribs was 3–19 times that in the roots.A gene expression analysis showed that transcripts of callose-and starch metabolism-related genes were obviously affected by Las infection,and the pathogenesis-related genes PR1,PR2 and PR5 were significantly upregulated and downregulated in midrib and root,respectively.Our results indicated that the PR-mediated resistance response was repressed in root but activated in midrib,which may result in the more rapid Las growth in roots than in midribs during the early infection stage. | Zhu Xie Ke Zhao Junhong Long Lin Zhen Xiuping Zou Shanchun Chen | 2021 | Horticultural Plant Journal2021,7,5: | 1 |
| 12 | CsBZIP40 confers resistance against citrus bacterial canker by repressing CsWRKY43-CsPrx53/CsSOD13 cascade mediated ROS scavenging显示文摘As the bacterial etiologic agent causing citrus bacterial canker(CBC),Xanthomonas citri subsp.citri(Xcc)seriously impacts citrus plantation and fruit production globally.In an earlier study,we demonstrated that CsBZIP40 can positively impact CBC resistance in the sweet orange(Citrus sinensis).However,the mechanistic basis for the protective benefits conferred by CsBZIP40 is yet to be delineated.Here,we show that CsBZIP40 positively regulates CBC resistance and reactive oxygen species(ROS)homeostasis in transgenic sweet orange overexpressing CsBZIP40.CsBZIP40 directly binds to the TGA-box of the CsWRKY43 promoter to repress its transcriptional activity.CsWRKY43 overexpression induces CBC susceptibility in transgenic sweet oranges.In contrast,its inhibition produces strong resistance to CBC.CsWRKY43 directly binds to the W-boxes of the CsPrx53 and CsSOD13 promoters to positively regulate the activities of these antioxidant enzymes,resulting in the negative regulation of ROS homeostasis and CBC resistance in sweet orange plants.CsPrx53/CsSOD13 knockdown enhances ROS accumulation and CBC resistance.Overall,our results outline a regulatory pathway through which CsBZIP40 transcriptionally represses CsWRKY43-CsPrx53/CsSOD13 cascade-mediated ROS scavenging in a manner conducive to CBC resistance.These mechanisms underscore the potential importance of CsBZIP40,CsWRKY43,CsPrx53,and CsSOD13,providing promising strategies for the prevention of CBC. | Qiang Li Xiujuan Qin Miao Zhang Qiyuan Yu Ruirui Jia Jie Fan Xin Huang Jia Fu Chenxi Zhang Baohang Xian Wen Yang Qin Long Aihong Peng Lixiao Yao Shanchun Chen Yongrui He | 2023 | Horticulture Research2023,10,8: | 0 |
| 13 | High-throughput screening system of citrus bacterial cankerassociated transcription factors and its application to the regulation of citrus canker resistance显示文摘One of the main diseases that adversely impacts the global citrus industry is citrus bacterial canker(CBC),caused by the bacteria Xanthomonas citri subsp.citri(Xcc).Response to CBC is a complex process,with both proteinDNA as well as protein–protein interactions for the regulatory network.To detect such interactions in CBC resistant regulation,a citrus high-throughput screening system with 203 CBC-inducible transcription factors(TFs),were developed.Screening the upstream regulators of target by yeast-one hybrid(Y1H)methods was also performed.A regulatory module of CBC resistance was identified based on this system.One TF(CsDOF5.8)was explored due to its interactions with the 1-kb promoter fragment of CsPrx25,a resistant gene of CBC involved in reactive oxygen species(ROS)homeostasis regulation.Electrophoretic mobility shift assay(EMSA),dual-LUC assays,as well as transient overexpression of CsDOF5.8,further validated the interactions and transcriptional regulation.The CsDOF5.8–CsPrx25 promoter interaction revealed a complex pathway that governs the regulation of CBC resistance via H2O2homeostasis.The high-throughput Y1H/Y2H screening system could be an efficient tool for studying regulatory pathways or network of CBC resistance regulation.In addition,it could highlight the potential of these candidate genes as targets for efforts to breed CBC-resistant citrus varieties. | Jia Fu Jie Fan Chenxi Zhang Yongyao Fu Baohang Xian Qiyuan Yu Xin Huang Wen Yang Shanchun Chen Yongrui He Qiang Li | 2024 | Journal of Integrative Agriculture2024,23,1: | 0 |
| 14 | Production of marker-free transgenic plants from mature tissues of navel orange using a Cre/loxP site-recombination system显示文摘Genetic transformation with mature material as the explants could shorten the transgenic period and avoid seed dependence compared with genetic transformation using the epicotyl seedling stem segments as the receptor. Here, we constructed an Agrobacterium tumefaciensmediated transformation for generation of marker-free transgenic plants from navel orange(Citrus sinensis Osbeck) mature stems using a CreloxP recombination system. To efficiently recover the regenerated buds from mature tissues, five recovery methods were compared: in vitro micrografting of 0.1-0.5(1-2 weeks), > 0.5 cm(3-4 weeks) and > 1 cm long lignified bud and in vitro micrografting of explants with a bud and rooting regenerated bud. The data showed that in vitro micrografting of > 1 cm long regenerated bud with expanded leaves after one month of continuous culture for lignification was the optimal solution for plant recovery from mature tissues. Transgenic plants without selectable marker genes were created from navel orange(Citrus sinensis Osbeck) tissue using a transformation vector PLI-35SPR1aCB containing a Cre/loxP system recombination together with genes encoding the selectable marker isopentenyl transferase(IPT) and an anti-bacterial peptide(PR1aCB).Using IPT positive selection, the transformation efficiency determined by PCR was 0.9%, and in total, 20 transgenic plants were obtained.Southern blotting confirmed further their transgenicity. PCR and sequencing analysis demonstrated that both the Cre and IPT genes had been successfully removed from the transgenic plants(deletion efficiency 100%). Over all, using Cre/loxP system recombination together with the IPT positive selection, marker-free transgenic plants can be recovered efficiently from mature tissues of navel orange(Citrus sinensis Osbeck), which provides a potential method for production of transgenic plants from citrus mature tissue. | Yongrui He Lanzhen Xu Aihong Peng Tiangang Lei Qiang Li Lixiao Yao Guojin Jiang Shanchun Chen Zhengguo Li Xiuping Zou | 2023 | Horticultural Plant Journal2023,9,3: | 0 |