宁春4号与河东乌麦杂交F_2代抗病性及分子标记鉴定
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Identification on disease resistance and molecular markers of F_2 hybrids from Ningchun No.4 and Hedong black wheat
  • 作者:王掌军 ; 刘妍 ; 张双喜 ; 刘凤楼 ; 李清峰 ; 张晓岗 ; 刘生祥 ; 贾彪
  • 英文作者:WANG Zhangjun;LIU Yan;ZHANG Shuangxi;LIU Fenglou;LI Qingfeng;ZHANG Xiaogang;LIU Shengxiang;JIA Biao;School of Agriculture, Ningxia University;Key Laboratory of Modern Molecular Breeding for Dominant and Special Crops in Ningxia;Heilongjiang Hetian Fengze Agriculture Science and Technology Development Co., Ltd.;Institute of Crop Sciences, Ningxia Academy of Agricultural and Forestry Sciences;
  • 关键词:小麦 ; 杂交后代 ; 抗病性 ; 分子标记 ; 数量性状基因座
  • 英文关键词:wheat(T.riticum aestivum L.);;hybrid progeny;;disease resistance;;molecular marker;;quantitative trait locus
  • 中文刊名:ZJNB
  • 英文刊名:Acta Agriculturae Zhejiangensis
  • 机构:宁夏大学农学院;宁夏优势特色作物现代分子育种重点实验室;黑龙江禾田丰泽兴农科技开发有限公司;宁夏农林科学院农作物研究所;
  • 出版日期:2019-05-20
  • 出版单位:浙江农业学报
  • 年:2019
  • 期:v.31;No.198
  • 基金:宁夏自然科学基金(2019AAC03054);; 宁夏回族自治区农业育种专项(2018NYYZ02)
  • 语种:中文;
  • 页:ZJNB201905001
  • 页数:11
  • CN:05
  • ISSN:33-1151/S
  • 分类号:6-16
摘要
为给宁夏小麦抗病育种提供优异资源,以宁春4号、河东乌麦及其杂交F_2代331个单株为材料,进行了群体抗病性与分子标记鉴定。结果表明:宁春4号中感白粉病、条锈病和叶锈病,河东乌麦中抗至高抗白粉病、中抗条锈病和叶锈病。在F_2代分别鉴定出68、54、52个单株抗白粉病、条锈病、叶锈病,比例依次为20.54%、16.32%、15.71%,其中,50个单株同时抗白粉病和条锈病,44个抗白粉病和叶锈病,32个抗条锈病和叶锈病,29个抗白粉病、条锈病和叶锈病。在F_2代群体中检测到239个单株携带Pm16基因,22.59%携带该基因的单株表现田间抗白粉病;202个携带Yr2基因,16.83%携带该基因的单株抗条锈病;246个携带Lr24,17.07%携带该基因的单株抗条锈病;148个单株同时携带基因Pm16和Yr2,185个单株同时携带基因Pm16和Lr24,155个单株同时携带基因Yr2和Lr24,119个单株同时携带基因Pm16、Yr2和Lr24。新开发的6个SSR标记共检测到10个抗病性数量性状基因座(QTL),涉及2A、5A、3B、5D等4条染色体,加性效应为-0.15~0.08,对表型贡献率为2%~4%,连锁系数(LOD值)最大为10.40,其中,5A、3B和5D染色体存在抗病的QTL富集区。
        To provide good resources for Ningxia wheat breeding in disease resistance, Ningchun No.4, Hedong black wheat and 331 individual plants of F_2 generation of Ningchun No.4 × Hedong black wheat were used as materials, disease resistance and molecular markers of the populations were identificated. The results showed that Ningchun No. 4 was moderate susceptible to powdery mildew, stripe rust, leaf rust, and Hedong black wheat was moderate to highly resistant to powdery mildew, moderate resistant to stripe rust and leaf rust. There were 68, 54, 52 individual plants resistant to powdery mildew, stripe rust, leaf rust in hybrids, respectively, and the rate was 20.54%, 16.32% and 15.71% in turn. In them, 50 individual plants were resistant to powdery mildew and stripe rust, 44 plants were resistant to powdery mildew and leaf rust, 32 plants were resistant to stripe rust and leaf rust, and 29 plants were resistant to powdery mildew, leaf rust and leaf rust simultaneously. There were 239 individual plants carried gene Pm16, 22.59% plants carried this gene were resistant to powdery mildew in field, 16.83% of 202 plants carried gene Yr2 were resistant to stripe rust, 17.07% of 246 plants carried gene Lr24 were resistant to leaf rust, 148 plants carried genes Pm16 and Yr2 simultaneously, 185 plants carried genes Pm16 and Lr24, 155 plants carried genes Yr2 and Lr24, 119 plants carried genes Pm16, Yr2 and Lr24 simultaneously. Ten disease resistance quantitative trait loci(QTL) were detected by six SSR markers, which involved in chromosomes 2 A, 5 A, 3 B and 5 D, their additive effects were from-0.15 to 0.08, the contribution rates to phenotype were from 2% to 4%, maximum logarithm of odds(LOD) score was 10.40, and QTL enrichment regions of disease resistance existed in 5 A, 3 B and 5 D chromosome.
引文
[1] TANKSLEY S D,MCCOUCH S R.Seed banks and molecular maps:unlocking genetic potential from the wild[J].Science,1997,277(5329):1063-1066.
    [2] CHAN S W L.Chromosome engineering:power tools for plant genetics[J].Trends in Biotechnology,2010,28(12):605-610.
    [3] 姚占军,徐世昌,吴立人.小麦抗病性遗传的研究进展[J].辽宁农业科学,2002 (6):30-33.YAO Z J,XU S C,WU L R.Heredity research progress on disease resistance in wheat[J].Liaoning Agricultural Science,2002 (6):30-33.(in Chinese)
    [4] 张海泉.小麦抗白粉病分子育种研究进展[J].中国生态农业学报,2008,16(4):1060-1066.ZHANG H Q.Research advances in molecular breeding of powdery mildew resistance of wheat[J].Chinese Journal of Eco-Agriculture,2008,16(4):1060-1066.(in Chinese with English abstract)
    [5] 侍梅,黄继兵,顾佩雯,等.宁夏优质春小麦品种(系)白粉病抗性的初步鉴定[J].宁夏农林科技,2015,56(9):38-40.SHI M,HUANG J B,Gu P W,et al.Preliminary identification of powdery mildew resistance of high-quality spring wheat varieties (lines) in Ningxia[J].Ningxia Journal of Agriculture and Forestry Science and Technology,2015,56(9):38-40.(in Chinese)
    [6] LIPPS P E.Effect of triadimenol seed treatment and triadimefon foliar treatment on powdery mildew epidemics and grain yield of winter wheat cultivars[J].Plant Disease,1988,72(10):887.
    [7] 邱永春,张书绅.小麦抗白粉病基因及其分子标记研究进展[J].麦类作物学报,2004,24(2):127-132.QIU Y C,ZHANG S S.Researches on powdery mildew resistant genes and their molecular markers in wheat[J].Acta Tritical Crops,2004,24(2):127-132.(in Chinese with English abstract)
    [8] 杨美娟,黄坤艳,韩庆典.小麦白粉病及其抗性研究进展[J].分子植物育种,2016,14(5):1244-1254.YANG M J,HUANG K Y,HAN Q D.Research progresses on wheat powdery mildew and its resistance[J].Molecular Plant Breeding,2016,14(5):1244-1254.(in Chinese with English abstract)
    [9] ZHANG R Q,SUN B X,CHEN J,et al.Pm55,a developmental-stage and tissue-specific powdery mildew resistance gene introgressed from Dasypyrum villosum into common wheat[J].Theoretical and Applied Genetics,2016,129(10):1975-1984.
    [10] LIU W X,KOO D H,XIA Q,et al.Homoeologous recombination-based transfer and molecular cytogenetic mapping of powdery mildew-resistant gene Pm57 from Aegilops searsii into wheat[J].Theoretical and Applied Genetics,2017,130(4):841-848.
    [11] WIERSMA A T,PULMAN J A,BROWN L K,et al.Identification of Pm58 from Aegilops tauschii[J].Theoretical and Applied Genetics,2017,130(6):1123-1133.
    [12] GUO J,ZHAO Z,SONG J,et al.Molecular and physical mapping of powdery mildew resistance genes and QTLs in wheat:a review[J].Agricultural Science and Technology,2017,18(6):965-970.
    [13] HAO M,LIU M,LUO J T,et al.Introgression of powdery mildew resistance gene Pm56 on rye chromosome arm 6RS into wheat[J].Frontiers in Plant Science,2018,9:1040.
    [14] TAN C C,LI G Q,COWGER C,et al.Characterization of Pm59,a novel powdery mildew resistance gene in Afghanistan wheat landrace PI 181356[J].Theoretical and Applied Genetics,2018,131(5):1145-1152.
    [15] ZOU S H,WANG H,LI Y W,et al.The NB-LRR gene Pm60 confers powdery mildew resistance in wheat[J].New Phytologist,2018,218(1):298-309.
    [16] LUKASZEWSKI A J.Frequency of 1RS.1AL and 1RS.1BL translocations in United States wheats[J].Crop Science,1990,30(5):1151-1153.
    [17] GUPTA R B,SHEPHERD K W.Production of multiple wheat-rye 1RS translocation stocks and genetic analysis of LMW subunits of glutenin and gliadins in wheats using these stocks[J].Theoretical and Applied Genetics,1993,85(6/7):719-728.
    [18] MORENO-SEVILLA B,BAENZIGER P S,PETERSON C J,et al.The 1BL/1RS translocation:agronomic performance of F3-derived lines from a winter wheat cross[J].Crop Science,1995,35(4):1051-1055.
    [19] CAI X,CHEN P D,XU S S,et al.Utilization of alien genes to enhance Fusarium head blight resistance in wheat:a review[J].Euphytica,2005,142(3):309-318.
    [20] 杨厚勇,李金榜,徐青,等.小麦锈病的发生规律与防治措施[J].农业科技通讯,2012 (12):143-144.YANG H Y,LI J B,XU Q,et al.Ocurrence regularity and control measures of wheat rust[J].Bulletin of Agricultural Science and Technology,2012 (12):143-144.(in Chinese)
    [21] KNOTT D R.The wheat rusts:breeding for resistance[M].Heidelberg:Springer,1989.
    [22] 白玉路,章振羽,徐世昌,等.小麦锈病抗性基因推导研究进展[J].植物保护,2010,36(4):36-40,48.BAI Y L,ZHANG Z Y,XU S C,et al.Advances in gene postulation in the wheat rust[J].Plant Protection,2010,36(4):36-40,48.(in Chinese with English abstract)
    [23] FENG J Y,WANG M N,SEE D R,et al.Characterization of novel gene Yr79 and four additional quantitative trait loci for all-stage and high-temperature adult-plant resistance to stripe rust in spring wheat PI 182103[J].Phytopathology,2018,108(6):737-747.
    [24] NSABIYERA V,BARIANA H S,QURESHI N,et al.Characterisation and mapping of adult plant stripe rust resistance in wheat accession Aus27284[J].Theoretical and Applied Genetics,2018,131(7):1459-1467.
    [25] MCLNTOSH R A,DUBCOVSKY J,ROGERS W J,et al.Catalogue of gene symbols for wheat:2010 supplement [M/OL].(2010-12-10)(2018-08-10).http://www.shigen.nig.ac.jp/wheat/komugi/genes/macgene/supplement2010.pdf.
    [26] HERRERA-FOESSEL S A,SINGH R P,HUERTA-ESPINO J,et al.Lr68:a new gene conferring slow rusting resistance to leaf rust in wheat[J].Theoretical and Applied Genetics,2012,124(8):1475-1486.
    [27] 殷贵鸿,王建武,闻伟锷,等.小麦抗条锈病基因YrZH84的RGAP标记及其应用[J].作物学报,2009,35(7):1274-1281.YIN G H,WANG J W,WEN W E,et al.Mapping of wheat stripe rust resistance gene YrZH84 with RGAP markers and its application[J].Acta Agronomica Sinica,2009,35(7):1274-1281.(in Chinese with English abstract)
    [28] 王玉海,何方,鲍印广,等.高抗白粉病小麦-山羊草新种质TA002的创制和遗传研究[J].中国农业科学,2016,49(3):418-428.WANG Y H,HE F,BAO Y G,et al.Development and genetic analysis of a novel wheat-Aegilops germplasm TA002 resistant to powdery mildew[J].Scientia Agricultura Sinica,2016,49(3):418-428.(in Chinese with English abstract)
    [29] 刘朝辉,林志珊,陈孝,等.小麦新种质YW243抗条锈病基因的染色体定位[J].麦类作物学报,2005,25(1):13-16.LIU Z H,LIN Z S,CHEN X,et al.Chromosome location of stripe rust resistance gene derive from new wheat germplasm YW243[J].Acta Tritical Crops,2005,25(1):13-16.(in Chinese with English abstract)
    [30] 赵仁慧,刘炳亮,寿路路,等.分子标记辅助聚合抗小麦黄花叶病和白粉病育种[J].麦类作物学报,2017,37(12):1541-1549.ZHAO R H,LIU B L,SHOU L L,et al.Pyramiding disease resistance to wheat yellow mosaic virus and powdery mildew by molecular marker-assisted selection[J].Journal of Triticeae Crops,2017,37(12):1541-1549.(in Chinese with English abstract)
    [31] 姚宏鹏,安哲,张毓妹,等.小麦抗叶锈病聚合品种中间材料的分子标记辅助选择[J].分子植物育种,2015,13(11):2421-2428.YAO H P,AN Z,ZHANG Y M,et al.Marker-assisted selection of wheat leaf rust resistance genes in the pyramiding middle materials of wheat[J].Molecular Plant Breeding,2015,13(11):2421-2428.(in Chinese with English abstract)
    [32] 董娜,张亚娟,张军刚,等.分子标记辅助小麦抗白粉病基因Pm21和PM13聚合育种[J].麦类作物学报,2014,34(12):1639-1644.DONG N,ZHANG Y J,ZHANG J G,et al.Molecular marker assisted pyramid breeding of powdery mildew resistance gene Pm21 and Pm13[J].Journal of Triticeae Crops,2014,34(12):1639-1644.(in Chinese with English abstract)
    [33] 曾祥艳,张增艳,杜丽璞,等.分子标记辅助选育兼抗白粉病、条锈病、黄矮病小麦新种质[J].中国农业科学,2005,38(12):2380-2386.ZENG X Y,ZHANG Z Y,DU L P,et al.Development of wheat germplasms with multi-resistance to powdery mildew,stripe rust and yellow dwarf virus by molecular marker-assisted selection[J].Scientia Agricultura Sinica,2005,38(12):2380-2386.(in Chinese with English abstract)
    [34] 王掌军,刘妍,王姣,等.小麦种质资源农艺性状遗传分析及白粉病抗性鉴定[J].西南农业学报,2018,31(7):1338-1348.WANG Z J,LIU Y,WANG J,et al.Genetic analysis on agronomic traits and identification of powdery mildew resistance of wheat germplasm resources[J].Southwest China Journal of Agricultural Sciences,2018,31(7):1338-1348.(in Chinese with English abstract)
    [35] 刘妍,田蓉蓉,王天佑,等.2个小麦品种的遗传性状分析及分子标记筛选[J].河南农业科学,2017,46(10):13-20.LIU Y,TIAN R R,WANG T Y,et al.Analysis of genetic traits and screening of molecular marker in two wheat varieties[J].Journal of Henan Agricultural Sciences,2017,46(10):13-20.(in Chinese with English abstract)
    [36] 盛宝钦,段霞瑜.对记载小麦成株白粉病“0—9级法”的改进[J].北京农业科学,1991(1):38-39.SHENG B Q,DUAN X Y.Improvement of recording wheat powdery mildew ‘0-9’process at adult stage[J].Beijing Agricultural Sciences,1991(1):38-39.(in Chinese )
    [37] 李复宁.小麦条锈病严重度分级标准的研究简报[J].植物保护,1991,17(2):30.LI F N.Brief report on the classification criteria of wheat stripe rust severity[J].Plant Protection,1991,17(2):30.(in Chinese)
    [38] CHEN X M,LUO Y H,XIA X C,et al.Chromosomal location of powdery mildew resistance gene Pm16 in wheat using SSR marker analysis[J].Plant Breeding,2005,124(3):225-228.
    [39] 林凤,徐世昌,张立军,等.小麦抗条锈病基因Yr2的SSR标记[J].麦类作物学报,2005,25(1):17-19.LIN F,XU S C,ZHANG L J,et al.SSR marker of wheat stripe rust resistance gene Yr2[J].Acta Tritical Crops,2005,25(1):17-19.(in Chinese with English abstract)
    [40] YANG Z J,LI G R,CHANG Z J,et al.Characterization of a partial amphiploid between Triticum aestivum cv Chinese Spring and Thinopyrum intermedium ssp.Trichophorum[J].Euphytica,2006,149(1/2):11-17.
    [41] 张娜,陈玉婷,李亚宁,等.小麦抗叶锈病基因Lr24的一个新STS标记[J].作物学报,2008,34(2):212-216.ZHANG N,CHEN Y T,LI Y N,et al.A novel STS marker for leaf rust resistance gene Lr24 in wheat[J].Acta Agronomica Sinica,2008,34(2):212-216.(in Chinese with English abstract)
    [42] 高安礼,何华纲,陈全战,等.分子标记辅助选择小麦抗白粉病基因Pm2、Pm4a和Pm21的聚合体[J].作物学报,2005,31(11):1400-1405.GAO A L,HE H G,CHEN Q Z,et al.Pyramiding wheat powdery mildew resistance genes Pm2,Pm4a and Pm21 by molecular marker-assisted selection[J].Acta Agronomica Sinica,2005,31(11):1400-1405.(in Chinese with English abstract)
    [43] FRIEBE B,GILL B S,TULEEN N A,et al.Registration of KS93WGRC28 powdery mildew resistant T6BS-6RL wheat germplasm[J].Crop Science,1995,35(4):1237.
    [44] JIA J,DEVOS K M,CHAO S,et al.RFLP-based maps of the homoeologous group-6 chromosomes of wheat and their application in the tagging of PM12,a powdery mildew resistance gene transferred from Aegilops speltoides to wheat[J].Theoretical and Applied Genetics,1996,92(5):559-565.
    [45] CHEN P D,QI L L,ZHOU B,et al.Development and molecular cytogenetic analysis of wheat-Haynaldia villosa 6VS/6AL translocation lines specifying resistance to powdery mildew[J].Theoretical and Applied Genetics,1995,91(6/7):1125-1128.
    [46] CAO A,XING L,WANG X,et al.Serine/threonine kinase gene Stpk-V,a key member of powdery mildew resistance gene Pm21,confers powdery mildew resistance in wheat[J].Proceedings of the National Academy of Sciences,2011,108(19):7727-7732.
    [47] XIE W L,BEN-DAVID R,ZENG B,et al.Suppressed recombination rate in 6VS/6AL translocation region carrying the Pm21 locus introgressed from Haynaldia villosa into hexaploid wheat[J].Molecular Breeding,2012,29(2):399-412.
    [48] MAGO R,BROWN-GUEDIRA G,DREISIGACKER S,et al.An accurate DNA marker assay for stem rust resistance gene Sr2 in wheat[J].Theoretical and Applied Genetics,2011,122(4):735-744.
    [49] KRATTINGER S G,LAGUDAH E S,SPIELMEYER W,et al.A putative ABC transporter confers durable resistance to multiple fungal pathogens in wheat[J].Science,2009,323(5919):1360-1363.
    [50] JI X L,XIE C J,NI Z F,et al.Identification and genetic mapping of a powdery mildew resistance gene in wild emmer (Triticum dicoccoides) accession IW72 from Israel[J].Euphytica,2008,159(3):385-390.
    [51] 刘成,闫红飞,宫文萍,等.小麦叶锈病新抗源筛选[J].植物遗传资源学报,2013,14(5):936-944.LIU C,YAN H F,GONG W P,et al.Screening of new resistance sources of wheat leaf rust[J].Journal of Plant Genetic Resources,2013,14(5):936-944.(in Chinese with English abstract)
    [52] SINGH R P,HUERTA-ESPINO J,BHAVANI S,et al.Race non-specific resistance to rust diseases in CIMMYT spring wheats[J].Euphytica,2011,179(1):175-186.
    [53] SINGH R P,HUERTA-ESPINO J,RAJARAM S.Achieving near-immunity to leaf and stripe rusts in wheat by combining slow rusting resistance genes[J].Acta Phytopathologica et Entomologica Hungarica,2000,35(1):133-139.
    [54] CASTRO A J,CHEN X M,HAYES P M,et al.Pyramiding quantitative trait locus (QTL) alleles determining resistance to barley stripe rust[J].Crop Science,2003,43(2):651.
    [55] DEKKERS J C M,HOSPITAL F.The use of molecular genetics in the improvement of agricultural populations[J].Nature Reviews Genetics,2002,3(1):22-32.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700