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1.
50个小麦生产及后备品种(系)的抗白粉病基因推导   总被引:2,自引:0,他引:2  
为明确我国小麦品种(系)中抗白粉病基因的组成,利用25个不同毒性的小麦白粉菌菌株对50个小麦生产及后备品种(系)进行抗白粉病基因推导,结果表明,参试的50个小麦品种(系)中有8个小麦品种(系)对供试的25个菌株全部感病,5个品种含有抗病基因Pm8,2个品种含有Pm4a,9个品种含有Pm2+6,4个品种含有Pm2,22个品种(系)可能含有供试基因之外的其他抗性基因或新基因。此研究结果可为小麦抗病育种以及品种利用提供依据。  相似文献   

2.
小麦农家种红蚰麦抗白粉病遗传分析及SSR分子标记   总被引:1,自引:0,他引:1  
 为明确小麦农家种红蚰麦抗白粉病的遗传基础,对红蚰麦和豫麦13的杂交F2代群体进行了遗传分析,结果表明红蚰麦携带1对显性的抗白粉病基因(暂命名为Pmhym)。利用SSR标记和F2代分离群体分组分析法,将该基因定位在7B染色体的长臂上,与3个微卫星标记Xwmc232、Xgwm577和Xwmc526连锁,遗传距离分别是14.3、25.6和57.2cM。分子标记分析表明该基因不同于已有被定位在7BL上的Pm5系列复等位基因,因而推测Pmhym是1个新的抗白粉病基因。上述结果将为开展Pmhym基因的精细定位奠定基础。  相似文献   

3.
小麦抗白粉病基因Pm21 的抑制基因   总被引:1,自引:0,他引:1  
 小麦-簇毛麦6VS. 6AL 易位染色体含有抗白粉病基因Pm21,在我国的小麦育种中被广泛应用。近年来,一些含有Pm21 基因的小麦品种(系)开始感染白粉病。为探索含Pm21 的品种(系)感染白粉病的原因,本研究在6VS. 6AL 易位系与小麦品系(种)R14 和川农12 的杂交后代中利用分子标记CINAU17-1086 和CINAU18-723 辅助选择的遗传背景相对简单的F7 和F8 近等基因系为材料,研究了小麦抗白粉病基因Pm21 的抗病性表达。结果发现,在3 个含有6VS. 6AL 易位染色体的感病F6 植株繁殖的F7 近等基因系中发生了白粉病抗性的分离,分离比率符合13 感病︰ 3 抗病的理论值。在随机选取的F7 感病小麦单株所繁殖的F8 近等基因系中,有7 / 13 的株系一致地重感白粉病,有6 / 13 的株系发生了抗白粉病的分离,其中2 / 13 的株系分离比符合3 感病︰ 1 抗病、4 / 13 的株系分离比符合13 感病︰ 3 抗病的分离模式。这一结果指出,小麦株系中的抗白粉病基因Pm21 的抗性表达受小麦基因组中的一对显性抑制基因所控制,该基因来源于小麦品种(系)川农12或R14,建议命名为SuPm21。本研究指出,在把外源基因引入小麦的研究中,有利的外源基因与不含抑制基因的受体遗传资源同等重要。  相似文献   

4.
普通小麦“兰考90(6)”品系对白粉病抗性的遗传研究   总被引:7,自引:0,他引:7  
 普通小麦(Triticum aestivum L.)"兰考90(6)"系列品系是以六倍体小黑麦(X Triticosecale Wittmack;AABBRR)为白粉病抗源培育的新的小麦-黑麦1BL/1RS异易位系。这些品系高抗白粉病。小麦白粉病抗性基因推导试验证明,"豫麦66"携带的抗病基因与大多数已经报道的小麦抗白粉病基因不同。用白粉菌[Blumeria graminis (DC.) E. O. Speer f. sp. tritici]单孢堆分离物进行的遗传分析表明,"兰考90(6)"品系携带一个小种专化的隐性抗白粉病基因。对"中国春"和"兰考90(6)21-12"杂交F2分离群体进行1RS染色体检测,结果证明该抗白粉病基因不在1RS染色体臂上。本研究为有效利用"兰考90(6)"系列品系中的抗白粉病基因提供了科学依据。  相似文献   

5.
小麦新品系抗白粉病基因分析   总被引:1,自引:1,他引:0  
 本文对6个小麦新品系所含的抗白粉病基因进行了遗传分析。将感病品种Liaochun10分别与SM 20121、SM 203390、SM 20125、SM 200332、SM 20126、SM 20005杂交和自交,并将这6个品系互配成半双列杂交组合。用小麦白粉菌15号小种的单孢堆菌系对各杂交组合的亲本、F1、F2代群体及F3代家系进行了苗期抗病性鉴定。遗传分析表明,供试的6个品系对小麦白粉菌15号小种的抗性均由1对显性基因控制。等位性分析推断:SM 20121、SM 203390、SM 20125和SM 200332含有抗白粉病基因Pm12;SM 20126含有抗白粉病基因Pm21;SM 20005含有抗白粉病基因Pm16。建议将这6个品系作为优良抗病亲本利用。  相似文献   

6.
普通小麦(Triticum aeslivum,2n=6x=42)与二粒小麦Khapli(T.dicoccum,2n=4x=28)杂交,因普通小麦品种不同,传递给杂交种的基因数也不同。抗贵白4号、16号和20号小种的两个显性抗白粉病基因,容易遗传给六倍体小麦遗传背景。抗贵白64号小种的可能有1个隐性基因,较难遗传给普通小麦的杂种后代。  相似文献   

7.
[目的] 采用基因推导法对目前甘肃省小麦主要生产品种及高代品系进行抗白粉基因分析,为甘肃省白粉病的抗病育种和品种使用及布局提供依据。[方法] 利用21个小麦白粉菌株,结合品种系谱对甘肃14个小麦生产品种及28个高代品系进行抗白粉基因推导。[结果] 14个生产品种中,1个含Pm8,1个含Pm4b,4个含未知抗病基因,其余8个对所有供试菌株全部表现感病;28个高代品系中,5个含Pm8〖STBZ〗,2个含Pm〖STBX〗3〖STBZ〗a,1个含Pm〖STBX〗4〖STBZ〗b,1个含Pm〖STBX〗30〖STBZ〗,5个含未知抗病基因,其余14个对所有供试菌株全部表现感病。[结论] 目前甘肃小麦生产品种及高代品系中缺乏抗白粉病基因,一旦条件适宜,小麦白粉病在甘肃地区极易发生和流行,应该引起生产管理部门和育种专家的注意和重视。  相似文献   

8.
小麦品种(系)抗白粉病基因推导及分子标记鉴定   总被引:2,自引:0,他引:2  
利用基因推导法和分子标记对我国主要麦区的小麦品种(系)进行了抗白粉病基因的鉴定。结果表明,南30-10等15个品种(系)含有Pm8,新麦2号等9个品种(系)含有Pm4,中植4号等9个品种(系)含有Pm21,郑麦113含有Pm4b+5b,杨09-111和新紫1号含有Pm2+mld。研究发现,基因推导和分子标记相结合,可大大提高小麦品种(系)抗白粉病基因鉴定结果的准确性,鉴定结果可为抗病育种和品种布局及白粉病的防治提供依据。  相似文献   

9.
小麦抗白粉病品种的基因分析与归类研究   总被引:13,自引:5,他引:13  
 研究出用抗谱及抗谱的近似,分析小麦抗白粉病品种的基因与归类的方法,测试了152个小麦抗白粉病品种,归类出15个类群,共120个品种,分析了类群主效抗病基因,并根据测试结果分析提出,为聚合主效抗病基因,进行复合杂交,在选取抗病亲本对上,要掌握毒性频率低,抗谱上互补,抗病基因非等位三项基本原则,才能取得预期成效。抗谱、近似分析法快速,准确,能同时测量大量品种、获得较多可靠信息,适用于基因对基因专化性病害抗病品种的基因分析与归类。  相似文献   

10.
普通小麦(Triticum aeslivum,2n=6x=42)与二粒小麦Khapli (T. dicoccum,2n=4x=28)杂交,因普通小麦品种不同,传递给杂交种的基因数也不同。抗贵白4号、16号和20号小种的两个显性抗白粉病基因,容易遗传给六倍体小麦遗传背景。抗贵白64号小种的可能有1个隐性基因,较难遗传给普通小麦的杂种后代。  相似文献   

11.
Shi AN  Leath S  Murphy JP 《Phytopathology》1998,88(2):144-147
ABSTRACT A major gene for resistance to wheat powdery mildew (Blumeria graminis f. sp. tritici = Erysiphe graminis f. sp. tritici) has been successfully transferred into hexaploid common wheat (Triticum aestivum, 2n = 6x = 42, AABBDD) from wild einkorn wheat (Triticum monococcum subsp. aegilopoides, 2n = 2x = 14, AA). NC96BGTA5 is a germ plasm line with the pedigree Saluda x 3/PI427662. The response patterns for powdery mildew resistance in NC96BGTA5 were tested with 30 differential isolates of B. graminis f. sp. tritici, and the line was resistant to all tested isolates. The analyses of P(1), P(2), F(1), F(2), and BC(1)F(1) populations derived from NC96BGTA5 revealed two genes for wheat powdery mildew resistance in the NC96BGTA5 line. One gene, Pm3a, was from its recurrent parent Saluda, and the second was a new gene introgressed from wild einkorn wheat. The gene was determined to be different from Pm1 to Pm21 by gene-for-gene and pedigree analyses. The new gene was identified as linked to the Pm3a gene based on the F(2) and BC(1)F(1) populations derived from a cross between NC96BGTA5 and a susceptible cultivar NK-Coker 68-15, and the data indicated that the gene was located on chromosome 1A. It is proposed that this new gene be designated Pm25 for wheat powdery mildew resistance in NC96BGTA5. Three random amplified polymorphic DNA markers, OPX06(1050), OPAG04(950), and OPAI14(600), were found to be linked to this new gene.  相似文献   

12.
本研究对红秃头和霸王鞭两个小麦农家种抗白粉病基因推导显示,红秃头和霸王鞭均具有较宽的抗性谱,是良好的抗源品种,并可能携带新的抗病基因。抗白粉病遗传分析表明,红秃头对E09的抗性由1对显性基因控制,对E26和E30-2的抗性分别由1对隐性基因控制,其至少携带一显一隐2对抗白粉病基因;霸王鞭对E09的抗性由2对显性基因重叠或者独立控制,对E26的抗性由2对显性基因互补作用控制,对E30-2的抗性由1对显性基因控制,其至少携带2对显性基因。利用基因芯片结合集群分离分析法(Bulk Segregant Analysis,BSA)进行染色体定位推测出,红秃头的抗白粉病基因可能位于染色体7B和6B上,霸王鞭的抗白粉病基因可能位于染色体4A和7B上。  相似文献   

13.
[目的]对3份小麦农家品种‘矮秆芒麦’、‘红头麦’和‘大红头’进行苗期抗性的遗传分析,研究它们的抗白粉病遗传特点,为其在抗病育种中的有效利用提供依据.[方法]将这3份小麦农家品种分别与感病品种‘铭贤169’正、反杂交,获得了F1和F2代.利用白粉菌E09菌株,分别对这3份农家品种、感病亲本‘铭贤169’以及各自的F1和F2代植株进行抗性鉴定.调查统计的数据经卡方测验分析其符合度.[结果]这3份农家品种对白粉菌E09菌株的抗性均由1对隐性核基因控制.[结论]3份农家品种对石家庄本地区的混合白粉病菌表现出良好的抗性,并且对E09的抗性均由1对隐性基因控制.可以进一步对它们进行分子标记及定位研究,为其作为抗源在小麦抗白粉病育种中的应用奠定基础.  相似文献   

14.
Aegilops sharonensis (Sharon goatgrass) is a wild relative of wheat and a rich source of genetic diversity for disease resistance. The objectives of this study were to determine the genetic basis of leaf rust, stem rust, and powdery mildew resistance in A. sharonensis and also the allelic relationships between genes controlling resistance to each disease. Progeny from crosses between resistant and susceptible accessions were evaluated for their disease reaction at the seedling and/or adult plant stage to determine the number and action of genes conferring resistance. Two different genes conferring resistance to leaf rust races THBJ and BBBB were identified in accessions 1644 and 603. For stem rust, the same single gene was found to confer resistance to race TTTT in accessions 1644 and 2229. Resistance to stem rust race TPMK was conferred by two genes in accessions 1644 and 603. A contingency test revealed no association between genes conferring resistance to leaf rust race THBJ and stem rust race TTTT or between genes conferring resistance to stem rust race TTTT and powdery mildew isolate UM06-01, indicating that the respective resistance genes are not linked. Three accessions (1644, 2229, and 1193) were found to carry a single gene for resistance to powdery mildew. Allelism tests revealed that the resistance gene in accession 1644 is different from the respective single genes present in either 2229 or 1193. The simple inheritance of leaf rust, stem rust, and powdery mildew resistance in A. sharonensis should simplify the transfer of resistance to wheat in wide crosses.  相似文献   

15.
 为了探索小麦抗白粉病分子机理,明确茉莉酸对小麦白粉病抗性的诱导作用、对植物抗病性标志基因PR-1、PR-2、PR-5和本实验室克隆的1个新基因Ta-JA2的激活作用,以及抗病性变化与基因表达变化之间的相关性,本研究以感白粉病的小麦品种“中国春”、“濮麦9号” 和“周麦18”为材料,用茉莉酸甲酯(methyl jasmonate,MeJA)喷洒小麦幼苗叶片进行诱导,通过离体叶段培养法接种白粉菌(Blumeria graminis f. sp. tritici,Bgt)进行抗性鉴定;用实时定量PCR技术检测小麦叶片中PR-1、PR-2、PR-5和Ta-JA2基因的表达变化。结果表明MeJA处理可以显著提高“中国春”、“濮麦9号”和“周麦18”对白粉菌的抗病水平。茉莉酸处理显著激活了PR-1、PR-2、PR-5和Ta-JA2的转录。茉莉酸诱导的抗病性提高与抗病标志基因PR-1、PR-2、PR-5及Ta-JA2的表达增强呈正相关。植物激素茉莉酸是小麦抗白粉病反应的信号分子。  相似文献   

16.
Powdery mildew (Blumeria graminis f. sp. tritici) results in serious economic loss in wheat production. Exploration of plant resistance to wheat powdery mildew over several decades has led to the discovery of a wealth of resistance genes and quantitative trait loci (QTLs). We have provided a comprehensive summary of over 200 powdery mildew genes (permanently and temporarily designated genes) and QTLs reported in common bread wheat. This highlights the diverse and rich resistance sources that exist across all 21 chromosomes. To manage different data for breeders, here we also present a bridged mapping result from previously reported powdery mildew resistance genes and QTLs with the application of a published integrated wheat map. This will provide important insights to empower further breeding of powdery mildew resistant wheat via marker-assisted selection (MAS).  相似文献   

17.
小麦抗白粉病基因Pm6的微卫星标记鉴定   总被引:3,自引:0,他引:3  
 Wheat powdery mildew, caused by Blumeria graminis f. sp. tritici, is a prevalent disease worldwide. Breeding and planting resistance cultivars have been proved effective and environmental friendly for control of the disease. To develop easily used PCR-based markers in marker assisted selection (MAS) for Pm6, a dominant powdery mildew resistance gene in wheat, 25 microsatellite markers on chromosome 2BL in wheat were screened between susceptible parent Yumai13 and resistance parent Timgalen carrying Pm6. F2 population derived from Yumai13 and Timgalen was further analyzed by the marker Xgwm501. The results indicated that Xgwm501 was a co-dominant marker linked to Pm6 gene at a distance of 14.8 cM. 29 Pm-carrying varieties were tested by the marker Xgwm501 and only those carrying Pm6 showed 117 bp resistance specific band. This marker is proved to have high practicability and can be used in MAS of Pm6 gene in wheat breeding programs.  相似文献   

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