刘翔, 任佐华, 陈娟芳, 毛锐, 戴良英, 刘二明. 2016: 湖南省稻瘟病菌无毒基因鉴定. 南方农业学报, 47(9): 1500-1505. DOI: 10.3969/jissn.2095-1191.2016.09.1500
引用本文: 刘翔, 任佐华, 陈娟芳, 毛锐, 戴良英, 刘二明. 2016: 湖南省稻瘟病菌无毒基因鉴定. 南方农业学报, 47(9): 1500-1505. DOI: 10.3969/jissn.2095-1191.2016.09.1500
LIU Xiang, REN Zuo-hua, CHEN Juan-fang, MAO Rui, DAI Liang-ying, LIU Er-ming. 2016: Identification of avirulent genes in Magnaporthe oryzae in Hunan province. Journal of Southern Agriculture, 47(9): 1500-1505. DOI: 10.3969/jissn.2095-1191.2016.09.1500
Citation: LIU Xiang, REN Zuo-hua, CHEN Juan-fang, MAO Rui, DAI Liang-ying, LIU Er-ming. 2016: Identification of avirulent genes in Magnaporthe oryzae in Hunan province. Journal of Southern Agriculture, 47(9): 1500-1505. DOI: 10.3969/jissn.2095-1191.2016.09.1500

湖南省稻瘟病菌无毒基因鉴定

Identification of avirulent genes in Magnaporthe oryzae in Hunan province

  • 摘要: 【目的】了解湖南省稻瘟病菌无毒基因组成,为培育水稻新品种及合理布局抗稻瘟病品种提供参考依据。【方法】采用2014年分离自湖南桃江病圃丽江新团黑谷(LTH)上的120个稻瘟病菌单孢菌株室内离体针刺接种于24个已知抗瘟基因的水稻近等基因系(NILs)上,对供试菌株进行无毒基因鉴定。【结果】120个稻瘟病菌含有全部24个无毒基因,在24个无毒基因中,出现频率高于40.00%的有Avr-Pita和Avr-Pish;出现频率在30.00%~40.00%的无毒基因有Avr-Piz、Avr-Piz5、Avr-Pi3和Avr-Pi9;其余无毒基因出现频率均较低,特别是Avr-Piks、Avr-Pikp、Avr-Pib、Avr-Pi12和Avr-Pi11出现频率均低于10.00%。【结论】含抗性基因Pi-ta和Pi-sh的水稻品种可在湖南省推广利用;含抗性基因Pi-z、Pi-z5、 Pi-3和Pi-9的水稻品种在湖南推广时应慎重考虑;含抗性基因Pi-ks、Pi-kp、Pi-b、Pi-12和Pi-11的水稻品种不宜在湖南省推广利用。

     

    Abstract: ObjectiveComposition of avirulent genes types of Magnaporthe oryzae in Hunan province were studied, in order to provide reference basis for breeding of new rice cultivars and rational distribution of blast -resistant cultivars.MethodA total of 120 M. oryzae monadic isolates were isolated from rice susceptible cultivars (Lijiangxintuanheigu, LTH) in Hunan Taojiang nurseries in 2014. Then, 24 near-isogenic lines (NILs) with known blast-resistance gene was in vitro inoculated artificially with above isolates by acupuncture, and the avirulent genes of tested isolates were identified.ResultThe above 120 M. oryzae isolates all carried 24 avirulent genes, among 24 avirulent genes, occurrence frequencies of Avr-Pita and Avr-Pish were more than 40.00%, while occurrence frequencies of Avr-Piz, Avr-Piz5, Avr-Pi3 and Avr-Pi9 ranged from 30.00% to 40.00%, occurrence frequencies of the rest were lower relatively, especially Avr-Piks, Avr-Pikp, Avr-Pib, Avr-Pi12 and Avr-Pi11 with frequency of less than 10.00%. ConclusionThe rice cultivars carrying resistant genes Pi-ta and Pi-sh sould be generalized in Hunan province; the rice varieties cultivars carrying resistant genes Pi-z, Pi-z5, Pi-3 and Pi-9 should be considered carefully in their utilization and extension in Hunan province; the rice cultivars carrying blast-resistant genes Pi-ks, Pi-kp, Pi-b, Pi-12 and Pi-11 are not suitable for utilization and extension in Hunan province.

     

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