Genetic Structure, of Populations of the Wheat Sharp Eyespot Pathogen Rhizoctonia cerealis Anastomosis Group D Subgroup I in China

文献类型: 外文期刊

第一作者: Li, Wei

作者: Li, Wei;Guo, Yingpeng;Zhang, Aixiang;Chen, Huaigu

作者机构:

关键词: population genetics

期刊名称:PHYTOPATHOLOGY ( 影响因子:4.025; 五年影响因子:4.394 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Sharp eyespot on wheat is caused by Rhizoctonia cerealis anastomosis group D subgroup I (AG-DI) and is an economically important stem-base disease of wheat in temperate regions worldwide. However, the understanding about the field population structure of R. cerealis is limited. In this study, the genetic structure of four wheat-infecting populations in China was investigated using six microsatellite markers characterized from the transcriptome data of R. cerealis AG-DI. A total of 173 unique genotypes were identified among 235 fungal isolates. Departure from Hardy-Weinberg equilibrium, a significant degree of inbreeding, and a significant deficit in heterozygotes indicated a nonrandom mating pattern. Combining the low to intermediate degrees of gametic disequilibrium, although with high genotypic diversity and low to moderate clonal. fractions, sexual reproduction probably existed, but the asexual reproduction should be the predominant reproductive mode. Structural analysis showed three gene pools among the four populations, which indicated the existence of three evolutionary origins of R. cerealis AG-DI. The long-distance movement of contaminated material, especially the infected seed, might have caused the moderate gene flow among these populations, which was consistent with the high differentiation among these populations. Overall, the genetic characteristics of the populations suggested a moderate evolutionary potential for R. cerealis AG-DI in China.

分类号: S432.1

  • 相关文献

[1]Analysis of microsatellite DNA polymorphisms in five China native cattle breeds and application to population genetics studies. Jin, HG,Zhao, YM,Zhou, GL. 2005

[2]Common pearl oysters in China, Japan, and Australia are conspecific: evidence from ITS sequences and AFLP. Yu, Da Hui,Jia, Xiaoping,Chu, Ka Hou. 2006

[3]Identification of Varroa mites (Acari : Varroidae) infesting Apis cerana and Apis mellifera in China. Zhou, T,Anderson, DL,Huang, ZY,Huang, SX,Yao, J,Ken, T,Zhang, QW. 2004

[4]Isolation and characterization of microsatellite loci in the purpleback flying squid (Sthenoteuthis oualaniensis). Lin, L.,Li, P.,Chen, Z. Z.,Xiao, Y. Y.,Xu, S. N.,Liu, Y.,Li, C. H.,Lin, L.,Chen, Z. Z.,Xiao, Y. Y.,Xu, S. N.,Liu, Y.,Li, C. H.,Li, P.. 2015

[5]Population Dynamics of Phytophthora infestans in the Netherlands Reveals Expansion and Spread of Dominant Clonal Lineages and Virulence in Sexual Offspring. Li, Y.,van der Lee, T. A. J.,Evenhuis, A.,van den Bosch, G. B. M.,van Bekkum, P. J.,Forch, M. G.,van Gent-Pelzer, M. P. E.,van Raaij, H. M. G.,Kessel, G. J. T.,Li, Y.,Huang, S. W.,Jacobsen, E.,Vleeshouwers, V. G. A. A.,Govers, F.,Govers, F.. 2012

[6]Genetic variation in wild and cultured populations of the pearl oyster Pinctada fucata from southern China. Yu, Da Hui,Chu, Ka Hou. 2006

[7]Presence of a short repeat sequence in internal transcribed spacer (ITS) 1 of the rRNA gene of Sogatella furcifera (Hemiptera: Delphacidae) from geographically different populations in Asia. Matsumoto, Yukiko,Sato, Yuki,Noda, Hiroaki,Fu, Qiang,Matsumura, Masaya.

[8]Deciphering the Routes of invasion of Drosophila suzukii by Means of ABC Random Forest. Fraimout, Antoine,Debat, Vincent,Fellous, Simon,Hufbauer, Ruth A.,Foucaud, Julien,Loiseau, Anne,Estoup, Arnaud,Hufbauer, Ruth A.,Pudlo, Pierre,Marin, Jean-Michel,Price, Donald K.,Cattel, Julien,Chen, Xiao,Depra, Marindia,Duyck, Pierre Francois,Guedot, Christelle,Kenis, Marc,Kimura, Masahito T.,Loeb, Gregory,Martinez-Sanudo, Isabel,Pascual, Marta,Richmond, Maxi Polihronakis,Shearer, Peter,Singh, Nadia,Tamura, Koichiro,Zhang, Jinping.

[9]Genetic structure in species with shallow evolutionary lineages: A case study of the rare flatfish Verasper variegatus. Sekino, Masashi,Saitoh, Kenji,Shimizu, Daisuke,Wada, Toshihiro,Kamiyama, Kyoichi,Gambe, Somei,Chen, Siqing,Aritaki, Masato.

[10]Multilocus sequence typing of Enterocytozoon bieneusi in nonhuman primates in China. Karim, Md Robiul,Wang, Rongjun,Zhang, Longxian,Dong, Haiju,Qi, Meng,Jian, Fuchun,Zhang, Sumei,Ning, Changshen,He, Xiaoyi,Li, Jian,Rume, Farzana Islam,Sun, Mingfei,Yang, Guangyou,Zoug, Fengcai,Xiao, Lihua.

[11]Amplification of rainbow trout microsatellites in Brachymystax lenok. Jia, Z. Y.,Zhang, Y. Y.,Shi, L. Y.,Bai, Q. L.,Mou, Z. B.,Jin, S. B..

[12]Sequence and organization of the complete mitochondrial genome of Schizopygopsis thermalis (Cypriniformes:Cyprinidae). Qiao, Huiying,Cheng, Qiqun,Chen, Ying,Qiao, Huiying,Chen, Ying.

[13]Genetic differentiation in seven geographic populations of the fleshy shrimp Penaeus (Fenneropenaeus) chinensis based on microsatellite DNA. Meng, Xian Hong,Wang, Qing Yin,Liu, Ping,Kong, Jie,Meng, Xian Hong,Jang, In Kwon.

[14]Low genetic differentiation among widely separated populations of the pearl oyster Pinctada fucata as revealed by AFLP. Yu, DH,Chu, KH.

[15]Low genetic diversity but strong population structure reflects multiple introductions of western flower thrips (Thysanoptera: Thripidae) into China followed by human-mediated spread. Cao, Li-Jun,Wang, Ze-Hua,Gong, Ya-Jun,Zhu, Liang,Wei, Shu-Jun,Hoffmann, Ary Anthony. 2017

[16]Isolation and Characterization of 11 New Microsatellite Loci in Erigeron breviscapus (Asteraceae), an Important Chinese Traditional Herb. Song, Kexian,Yang, Junbo,Yi, Tingshuang,Li, Xiang,Li, Xiang,Song, Kexian,Yi, Tingshuang,Song, Kexian. 2011

[17]Genetic diversity analysis of rive cattle breeds native to China using microsatellites. Zhou, GL,Jin, HG,Zhu, Q,Guo, SL,Wu, YH. 2005

[18]New genetic perspectives of the ambiguous pomfret as revealed by CR sequences. Li, Yuan,Lin, Longshan,Zhang, Yan,Gao, Tianxiang,Liu, Liqin. 2017

[19]DEVELOPMENT AND CHARACTERIZATION OF EST-SSR MARKERS IN THE CHINESE MEDICINAL PLANT CALLERYA SPECIOSA (FABACEAE). Li, Li,Li, Zhiying,Li, Kelie,Huang, Bilan,Xu, Li. 2013

[20]Exome sequencing reveals genetic differentiation due to high-altitude adaptation in the Tibetan cashmere goat (Capra hircus). Song, Shen,Yao, Na,Yang, Min,Liu, Xuexue,Dong, Kunzhe,Zhao, Qianjun,Pu, Yabin,He, Xiaohong,Guan, Weijun,Ma, Yuehui,Jiang, Lin,Song, Shen,Yang, Ning. 2016

作者其他论文 更多>>