数字农科院2.0

Diversity of Yeast and Drosophila Species Associated with Grape Sour Rot in China

文献类型: 外文期刊

作者: Han, Jie;Fang, Qiandong;Hao, Yifan;Huang, Xiaoqing;Kong, Fanfang;Chen, Haoyu;Liu, Yongqiang

作者机构:

关键词: Grape;Sour rot;Yeast;Drosophila;Molecular identification

期刊名称: MICROBIAL ECOLOGY

ISSN: 0095-3628

年卷期: 2025 年 88 卷 1 期

页码:

收录情况: SCIE(2025版)

摘要: Sour rot is a complex disease of grapes, primarily caused by the synergistic effects of yeast and Drosophila species, leading to fruit decay, poor quality, and significant economic losses. The lack of information on species distribution and diversity of these organisms in China limits the efficacy of control strategies. In this study, we sequenced the 26S rRNA D1/D2 region in yeasts and the COI region in Drosophila. Nine yeast genera were identified. Hanseniaspora spp. (45.76% of total) were the most abundant, followed by Starmerella spp. (23.62%) and Saccharomyces spp. (17.34%). At the species level, 14 yeast species were identified. Starmerella bacillaris (23.62%), Saccharomyces cerevisiae (17.34%), H. opuntiae (17.34%), and H. uvarum (15.13%) predominated. Of the five species of Drosophila present, Drosophila melanogaster (63.16%) was the dominant species. This study is the first to characterize the diversity of yeasts and Drosophila across major grape-producing regions in China. The findings provide a scientific foundation for elucidating the key drivers of sour rot and designing targeted control strategies.

分类号:

  • 相关文献

[1]Establishment and application of a Multiple nucleotide polymorphism molecular identification system for grape cultivars. Liu, Jinghui,Wang, Hao,Fan, Xiucai,Zhang, Ying,Sun, Lei,Liu, Chonghuai,Fang, Zhiwei,Zhou, Junfei,Peng, Hai,Jiang, Jianfu. 2024

[2]Beta-glucosidase activity of wine yeasts and its impacts on wine volatiles and phenolics: A mini-review. Pangzhen Zhang,Ruige Zhang,Sameera Sirisena,Renyou Gan,Zhongxiang Fang. 2021

[3]Diaporthe citri: The Causal Agent of Lemon Melanose in China. Zhou Yang,,Chingchai Chaisiri,,Liu Xiangyu,,Zhang Qi,,Yue Xiaofeng,,Yin Liangfen,,Luo Chaoxi,,Li Peiwu. 2025

[4]Fine mapping and candidate gene analysis of hwh1 and hwh2, a set of complementary genes controlling hybrid breakdown in rice. Jiang, Wenzhu,Chu, Sang-Ho,Piao, Rihua,Lee, Joohyun,Qiao, Yongli,Koh, Hee-Jong,Jiang, Wenzhu,Chu, Sang-Ho,Piao, Rihua,Lee, Joohyun,Qiao, Yongli,Koh, Hee-Jong,Chin, Joong-Hyoun,Jin, Yong-Mei,Jin, Yong-Mei,Han, Longzhi,Piao, Zongze.

[5]Ecdysone signaling induces two phases of cell cycle exit in Drosophila cells. Guo, Yongfeng,Flegel, Kerry,Buttitta, Laura A.,Kumar, Jayashree,McKay, Daniel J.,Kumar, Jayashree,McKay, Daniel J.,Guo, Yongfeng. 2016

[6]Adult reproductive diapause in Drosophila suzukii females. Lin, Qingcai,Zheng, Li,Yu, Yi,Zhang, Jinping,Zhang, Feng.

[7]Proteomic Analysis of Red Ginseng on Prolonging the Life Span of Male Drosophila melanogaster. Wei Hou,Jin Pei. 2021

[8]Dopamine modulates drosophila gut physiology, providing new insights for future gastrointestinal pharmacotherapy. Samar El Kholy,Kai Wang,Hesham R. El-Seedi,Yahya Al Naggar. 2021

[9]A Drosophila Model Reveals the Potential Role for mtt in Retinal Disease. Chen W.,Zhong W.,Yu L.,Lin X.,Xie J.,Liu Z.. 2024

[10]A one-step, single tube, duplex PCR to detect predation by native predators on invasive Bemisia tabaci MEAM1 and Frankliniella occidentalis. Wu, Xia,Zhou, Zhi-Xiang,Meng, Xiang-Qin,Wan, Fang-Hao,Zhang, Gui-Fen,Wan, Fang-Hao. 2014

[11]Detection of Contarinia nasturtii (Diptera : Cecidomyiidae) in New York, a new pest of cruciferous plants in the United States. Kikkert, Julie R.,Hoepting, Christine A.,Wu, Qingjun,Wang, Ping,Baur, Robert,Shelton, Anthony M..

[12]Advances in molecular identification, taxonomy, genetic variation and diagnosis of Toxocara spp.. Chen, Jia,Zhou, Dong-Hui,Xu, Min-Jun,Huang, Si-Yang,Li, Ming-Wei,Zhu, Xing-Quan,Chen, Jia,Nisbet, Alasdair J.,Li, Ming-Wei,Wang, Chun-Ren,Zhu, Xing-Quan,Zhu, Xing-Quan.

[13]Identification of WA-type three-line hybrid rice with real-time Polymerase Chain Reaction (PCR) method. Cheng, Y.,Chen, H. Y.,Mao, J. J.,Cao, A. X.,Zhu, S. F.,Cheng, Y.,Gao, B. D.,Mao, J. J.,Zhu, J. G..

[14]First report of Stemphylium solani causing leaf spot on wild eggplant in China. Xie, Xue-Wen,Xie, Xue-Wen,Zhang, Zi-Xin,Wang, Ying-Ying,Shi, Yan-Xia,Chai, A-Li,Li, Bao-Ju,Du, Gong-Fu.

[15]Molecular identification and differential expression of sensory neuron membrane proteins in the antennae of the black cutworm moth Agrotis ipsilon. Yang, Ruo-Nan,Guo, Meng-Bo,Wang, Gui-Rong,Wu, Kong-Ming,Guo, Yu-Yuan,Zhang, Yong-Jun,Zhou, Jing-Jiang.

[16]Studies on reproductive characteristics of an interspecific chimera between Brassica juncea and Brassica oleracea. Wang, Yan,Zhu, Xue-Yun,Chen, Li-Ping,Cheng, Qi,Wang, Yan,Chen, Li-Ping.

[17]First report of brown root rot caused by Pythium vexans on ramie in Hunan, China. Yu, Yong-Ting,Chen, Jia,Gao, Chun-Sheng,Zeng, Liang-Bin,Li, Zhi-Min,Zhu, Tao-Tao,Sun, Kai,Cheng, Yi,Sun, Xiang-Ping,Yan, Li,Yan, Zhun,Zhu, Aiguo.

[18]The use of RAPD markers for detecting genetic diversity, relationship and molecular identification of Chinese elite tea genetic resources [Camellia sinensis (L.) O. Kuntze] preserved in a tea germplasm repository. Chen, L,Gao, QK,Chen, DM,Xu, CJ.

[19]Diagnosis and phylogenetic analysis of ovine pulmonary adenocarcinoma in China. Zhang, Keshan,Liu, Yongjie,Shang, Youjun,Liu, Xiangtao,Kong, Hanjin,Wu, Bin. 2014

[20]Host Plants Identification for Adult Agrotis ipsilon, a Long-Distance Migratory Insect. Liu, Yongqiang,Fu, Xiaowei,Xing, Zhenlong,Wu, Kongming,Mao, Limi. 2016

作者其他论文 更多>>