数字农科院2.0

Effect of In Vitro Culture of Long Shoot Tip on Variant Structure and Titer of Grapevine Viruses

文献类型: 外文期刊

作者: Hu, Guojun;Dong, Yafeng;Zhang, Zunping;Fan, Xudong;Ren, Fang

作者机构:

关键词: grapevine;long shoot tip culture;grapevine viruses;virus variant structure;viral titer

期刊名称: PLANTS-BASEL

ISSN:

年卷期: 2022 年 11 卷 15 期

页码:

摘要: Shoot tip culture is a very effective approach for studying plant viruses. In this study, we evaluated the numbers, diversity, and titer of grapevine viruses in in vitro grapevine plants after long shoot tip culture. Six virus-infected grapevine cultivars (Cabernet Franc, Cabernet Gernischt, Cabernet Sauvignon, Wink, Victoria, and Merlot) collected from six regions of China were used as the research materials. Approximately 1.5 cm long shoot tips were used for meristem culture. The average survival rate of the six grapevine cultivars was 45.7%. Merlot collected from Beijing showed the highest survival rate (80.0%). Regeneration was not achieved in Cabernet Gernischt collected from Liaoning province and Cabernet Sauvignon from Tianjin due to bacterial and fungal contamination. Virus detection conducted in the surviving regenerated plants showed that the virus infection status, including the viral numbers and the species present in plants grown in vitro, was the same as that in corresponding in vivo plants. Moreover, the analysis of sequence diversity and the mutation frequency in grapevine viruses in vitro indicated that the structure of grapevine viruses was stable in long shoot tip culture after four sub-culture passages. Further, the relative viral titer of in vitro grapevine plants was much higher than that of in vivo plants. These results aid in the investigation of viruses in woody plants.

分类号:

  • 相关文献

[1]Occurrence Regularities, Tissue Distribution, and Sequence Diversity of Apple Necrotic Mosaic Virus in Apples from Liaoning Province, China. Hu, Guojun,Liu, Chenglong,Li, Kaijie,Fan, Xudong,Ren, Fang,Dong, Yafeng. 2025

[2]SUCKER DETECTION OF GRAPEVINES FOR TARGETED SPRAY USING OPTICAL SENSORS. Kang, F.,Wang, H.,Pierce, F. J.,Zhang, Q.,Wang, S.. 2012

[3]Comprehensive diversity analysis of viroids infecting grapevine in China and Japan. Jiang, Dongmei,Zhang, Zhixiang,Guo, Rui,Li, Shifang,Jiang, Dongmei,Xie, Lianhui,Wu, Zujian,Sano, Teruo,Tsuji, Masaharu,Araki, Hiroyuki,Sagawa, Kyota,Purushothama, Charith Raj Adkar,Wang, Hongqing.

[4]Attractiveness of host volatiles combined with background visual cues to the tea leafhopper, Empoasca vitis. Cai, Xiao-Ming,Xu, Xiu-Xiu,Bian, Lei,Luo, Zong-Xiu,Xin, Zhao-Jun,Chen, Zong-Mao,Cai, Xiao-Ming.

[5]Breeding of disease-resistant seedless grapes using Chinese wild Vitis spp. I. In vitro embryo rescue and plant development. Tian, Lili,Wang, Yuejin,Tang, Dongmei,Tian, Lili,Wang, Yuejin,Tang, Dongmei,Tian, Lili,Wang, Yuejin,Tang, Dongmei,Niu, Liang. 2008

[6]Molecular characterization of Chinese Hop stunt viroid isolates reveals a new phylogenetic group and possible cross transmission between grapevine and stone fruits. Guo, Rui,Mu, Lingxiao,Yang, Yuanai,Li, Shifang,Zhou, Ying,Wang, Hongqing. 2012

[7]Melatonin-Producing Endophytic Bacteria from Grapevine Roots Promote the Abiotic Stress-Induced Production of Endogenous Melatonin in Their Hosts. Jiao, Jian,Song, Yuyang,Qin, Yi,Yuan, Chunlong,Liu, Yanlin,Ma, Yaner,Liu, Chonghuai,Chen, Sha. 2016

[8]Species of Botryosphaeriaceae involved in grapevine dieback in China. Zhang, Wei,Yao, Sheng-Wei,Dissanayake, Asha J.,Li, Xing-Hong,Yan, Ji-Ye,Xie, Yue,Zhang, Guo-Zhen,Peng, You-Liang,Wang, Yong,Liu, Jian-Kui,Hyde, Kevin D.,Seem, Robert C.,Wang, Zhong-Yue,Bai, Xian-Jin. 2013

[9]Genome-wide assessment of population structure, linkage disequilibrium and resistant QTLs in Chinese wild grapevine. Zhang, Ying,Fan, Xiucai,Jiang, Jianfu,Sun, Haisheng,Liu, Chonghuai,Feng, Li,Zheng, Xian-bo.

[10]Genome-Wide Assessment Of Population Structure, L.inkage Disequilibrium And Resistant Q tls In Chinese Wild Grapevine. Zhang, Y, Feng, L, Fan, XC, Jiang, JF, Zheng, XB, Sun, HS, Liu, CH. 2017

[11]Genetic diversity analysis of grapevine rupestris stem pitting-associated virus from grapevine by colony PCR-SSCP and -RFLP. Hu, Guo-Jun,Zhu, Hong-Juan,Zhang, Zun-Ping,Fan, Xu-Dong,Ren, Fang,Dong, Ya-Feng. 2022

[12]First report of grapevine Cabernet Sauvignon reovirus from grapevines in China. Xu Dong Fan,Ya Feng Dong,Zun Ping Zhang,Fang Ren,Guo Jun Hu. 2021

[13]Integrated Transcriptome and Metabolome Dissecting Interaction between Vitis vinifera L. and Grapevine Fabavirus. Baodong Zhang,Mengyan Zhang,Xiaojun Jia,Guojun Hu,Fang Ren,Xudong Fan,Yafeng Dong. 2023

[14]Transcriptome analysis reveals pathogenesis-related gene 1 pathway against salicylic acid treatment in grapevine (Vitis vinifera L). Rahman F.U.,Khan I.A.,Aslam A.,Liu R.,Sun L.,Wu Y.,Aslam M.M.,Khan A.U.,Li P.,Jiang J.,Fan X.,Liu C.,Zhang Y.. 2022

[15]A Sensitive Sybr Green Rt-Qpcr Method For Grapevine Virus E And Its Application For Virus Detection In Different Grapevine Sample Types. Ren, F, Zhang, ZP, Fan, XD, Hu, GJ, Zhang, MY, Dong, YF. 2020

[16]First Report of Grapevine Kizil Sapak Virus in Grapevine in China. Fang Ren,Zun P. Zhang,Xu D. Fan,Guo J. Hu,Ya F. Dong. 2022

[17]High-throughput sequencing indicates a novel marafivirus in grapevine showing vein-clearing symptoms. Xudong Fan,Zunping Zhang,Chen Li,Fang Ren,Guojun Hu,Baodong Zhang,Yafeng Dong. 2021

[18]Identification and Characterization of a Novel Emaravirus From Grapevine Showing Chlorotic Mottling Symptoms. Xudong Fan,Chen Li,Zunping Zhang,Fang Ren,Guojun Hu,Hailin Shen,Baodong Zhang,Yafeng Dong. 2021

[19]The cysteine-rich receptor-like kinase CRK10 targeted by Coniella diplodiella effector CdE1 contributes to white rot resistance in grapevine. Liu, Ruitao,Tan, Xibei,Wang, Yiming,Lin, Feng,Li, Peng,Rahman, Faiz Ur,Sun, Lei,Jiang, Jianfu,Fan, Xiucai,Liu, Chonghuai,Zhang, Ying. 2024

[20]Rapid detection of grapevine berry inner necrosis virus using a simple reverse transcription loop-mediated amplification method. Ying Zhang,Qingyun Yuan,Fang Ren,Guojun Hu,Xudong Fan,Yafeng Dong. 2024

作者其他论文 更多>>