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Featured researches published by gjun Fan.


Molecular Breeding | 2012

Novel loci for field resistance to black-streaked dwarf and stripe viruses identified in a set of reciprocal introgression lines of rice (Oryza sativa L.)

Tianqing Zheng; Jie Yang; Weigong Zhong; Hu-Qu Zhai; Ling-Hua Zhu; Fangjun Fan; A. Jauhar Ali; Jinhuan Yang; Jun Wang; Jinyan Zhu; Veronica N.E. Uzokwe; Jianlong Xu; Zhikang Li

Rice black-streaked dwarf virus (RBSDV) and stripe virus (RSV) are the two chronic viral diseases causing great damage to rice (Oryza sativa L.) production in China, and both are transmitted by the small brown planthopper (SBPH, Laodelphaxstriatellus Fallén). Quantitative trait loci (QTL) affecting field resistance to these two viral diseases were identified using QTL mapping software in a set of reciprocal introgression lines derived from the cross between Lemont and Teqing. A panel of 119 landraces was used for marker confirmation and allele mining. A total of 17 quantitative resistance loci (QRL) for the infection incidences of RBSDV and RSV were discovered and belong to 16 regions on all chromosomes except chromosome 12. Among them, 12 QRL were confirmed by association mapping, and many novel alleles at these loci were mined from the set of landraces. Only one region was found to be responsible for the genetic overlap between the field resistance against RBSDV and RSV, which was reported to be associated with SBPH resistance. The favorable alleles at the above novel and/or overlapping loci should be effective for marker-assisted selection breeding for resistance against the two diseases and the insect. Different strategies of varietal development and effective deployment against the two viral diseases are also discussed.


International Journal of Molecular Sciences | 2016

Hairpin RNA Targeting Multiple Viral Genes Confers Strong Resistance to Rice Black-Streaked Dwarf Virus.

Fangquan Wang; Jinyan Zhu; Fangjun Fan; Jun Wang; Weigong Zhong; Ming-Bo Wang; Qing Liu; Qian-Hao Zhu; Tong Zhou; Ying Lan; Yijun Zhou; Jie Yang

Rice black-streaked dwarf virus (RBSDV) belongs to the genus Fijivirus in the family of Reoviridae and causes severe yield loss in rice-producing areas in Asia. RNA silencing, as a natural defence mechanism against plant viruses, has been successfully exploited for engineering virus resistance in plants, including rice. In this study, we generated transgenic rice lines harbouring a hairpin RNA (hpRNA) construct targeting four RBSDV genes, S1, S2, S6 and S10, encoding the RNA-dependent RNA polymerase, the putative core protein, the RNA silencing suppressor and the outer capsid protein, respectively. Both field nursery and artificial inoculation assays of three generations of the transgenic lines showed that they had strong resistance to RBSDV infection. The RBSDV resistance in the segregating transgenic populations correlated perfectly with the presence of the hpRNA transgene. Furthermore, the hpRNA transgene was expressed in the highly resistant transgenic lines, giving rise to abundant levels of 21–24 nt small interfering RNA (siRNA). By small RNA deep sequencing, the RBSDV-resistant transgenic lines detected siRNAs from all four viral gene sequences in the hpRNA transgene, indicating that the whole chimeric fusion sequence can be efficiently processed by Dicer into siRNAs. Taken together, our results suggest that long hpRNA targeting multiple viral genes can be used to generate stable and durable virus resistance in rice, as well as other plant species.


PLOS ONE | 2015

Overexpressing CYP71Z2 Enhances Resistance to Bacterial Blight by Suppressing Auxin Biosynthesis in Rice

Fangquan Wang; Jun Wang; Fangjun Fan; Jinyan Zhu; Jie Yang; Fengquan Liu; Weigong Zhong

Background The hormone auxin plays an important role not only in the growth and development of rice, but also in its defense responses. We’ve previously shown that the P450 gene CYP71Z2 enhances disease resistance to pathogens through regulation of phytoalexin biosynthesis in rice, though it remains unclear if auxin is involved in this process or not. Methodology and Principal Findings The expression of CYP71Z2 was induced by Xanthomonas oryzae pv. oryzae (Xoo) inoculation was analyzed by qRT-PCR, with GUS histochemical staining showing that CYP71Z2 expression was limited to roots, blades and nodes. Overexpression of CYP71Z2 in rice durably and stably increased resistance to Xoo, though no significant difference in disease resistance was detected between CYP71Z2-RNA interference (RNAi) rice and wild-type. Moreover, IAA concentration was determined using the HPLC/electrospray ionization/tandem mass spectrometry system. The accumulation of IAA was significantly reduced in CYP71Z2-overexpressing rice regardless of whether plants were inoculated or not, whereas it was unaffected in CYP71Z2-RNAi rice. Furthermore, the expression of genes related to IAA, expansin and SA/JA signaling pathways was suppressed in CYP71Z2-overexpressing rice with or without inoculation. Conclusions and Significance These results suggest that CYP71Z2-mediated resistance to Xoo may be via suppression of IAA signaling in rice. Our studies also provide comprehensive insight into molecular mechanism of resistance to Xoo mediated by IAA in rice. Moreover, an available approach for understanding the P450 gene functions in interaction between rice and pathogens has been provided.


Scientific Reports | 2018

Comparative transcriptome analysis reveals molecular response to salinity stress of salt-tolerant and sensitive genotypes of indica rice at seedling stage

Jun Wang; Jinyan Zhu; Yadong Zhang; Fangjun Fan; Fangquan Wang; Weigong Zhong; Cai-lin Wang; Jie Yang

Abiotic stresses, such as salinity, greatly threaten the growth and productivity of plants. Rice (Oryza sativa L.) is one of the most important food crops, as well as a monocot model for genomic research. To obtain a global view of the molecular response to salinity stress, we conducted a leaf transcriptome analysis on rice seedlings. Two cultivars of rice subspecies indica, including the salt-tolerant genotype Xian156 and the salt-sensitive genotype IR28, were used in the present study. Eighteen RNA libraries were obtained from these two genotypes at three timepoints (0 h, 48 h and 72 h) after applying salinity stress. We obtained the reference-guided assembly of the rice transcriptome, which resulted in 1,375 novel genes, including 1,371 annotated genes. A comparative analysis between genotypes and time points showed 5,273 differentially expressed genes (DEGs), of which 286 DEGs were only found in the tolerant genotype. The Disease resistance response protein 206 and TIFY 10 A were differentially expressed, which were validated by quantitative real-time PCR. The differentially expressed genes identified through the mRNA transcriptome, along with the structure, provide a revealing insight into rice molecular response to salinity stress and underlie the salinity tolerance mechanism between genotypes.


Acta Agronomica Sinica | 2011

Pyramiding Resistance Gene Pi-ta, Pi-b , and Stv-b I by Marker-assisted Selection in Rice ( Oryza sativa L.): Pyramiding Resistance Gene Pi-ta, Pi-b , and Stv-b I by Marker-assisted Selection in Rice ( Oryza sativa L.)

Jun Wang; Jie Yang; Zhide Chen; Fangjun Fan; Jinyan Zhu; Jinhuan Yang; Weigong Zhong

水稻稻瘟病和条纹叶枯病是长江中下游粳稻稻区两大主要病害,选育抗病品种是防治这两大病害最有效的方法。以同时含有稻瘟病抗病基因Pi-ta和Pi-b的武运粳8号,含有条纹叶枯病抗病基因Stv-bi的镇稻42为基因供体配置杂交组合。利用Pi-ta和Pi-b的基因标记和Stv-bi紧密连锁的分子标记对分离世代进行基因位点的检测,结合田间多代选育、抗性鉴定将3个抗病基因同时转育到高产品种中,选育出高产、优质、多抗水稻新品系74121。利用分子标记辅助选择,为选育多抗水稻新品种提供了一种简单、快捷的选择方法,同时也为水稻抗病育种提供了新的遗传资源。


Theoretical and Applied Genetics | 2017

Examining two sets of introgression lines reveals background-independent and stably expressed QTL that improve grain appearance quality in rice (Oryza sativa L.)

Xianjin Qiu; Kai Chen; Wenkai Lv; Xiaoxue Ou; Yajun Zhu; Danying Xing; Longwei Yang; Fangjun Fan; Jie Yang; Jianlong Xu; Tianqing Zheng; Zhikang Li


Plant Breeding | 2013

Development of AS‐PCR marker based on a key mutation confirmed by resequencing of Wx‐mp in Milky Princess and its application in japonica soft rice (Oryza sativa L.) breeding

Jie Yang; Jun Wang; Fangjun Fan; Jinyan Zhu; Tao Chen; Cai‐Lin Wang; Tianqing Zheng; Jian Zhang; Weigong Zhong; Jianlong Xu


Archive | 2012

Breeding method for breeding rice variety resistant to rice panicle blast in Jiangsu province

Wang Jun; Weigong Zhong; Jie Yang; Fangjun Fan; Jinyan Zhu


Archive | 2012

Molecular markers of paddy endosperm low amylose content gene Wx-mq

Qing Cao; Tao Chen; Fangjun Fan; Cailin Wang; Wang Jun; Jie Yang; Weigong Zhong


Archive | 2012

Construction method of RNA interference carriers for interfering in a plurality of genes of silencing rice black-streaked dwaf disease

Jie Yang; Weigong Zhong; Wang Jun; Fangjun Fan; Jinyan Zhu

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Tianqing Zheng

Nanjing Agricultural University

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Jianlong Xu

International Rice Research Institute

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