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1.
小麦条锈病新抗源的抗谱鉴定初析   总被引:20,自引:0,他引:20  
 利用南京农业大学细胞遗传研究所育成的一套涉及不同簇毛麦染色体的异附加系和代换系以及5个6VS/6AL易位系,经1997、1998、1999连续3年在陕西、北京、四川进行小麦条锈病抗性接种鉴定,结果表明普通小麦-簇毛麦6V异附加系,6V(6A)异代换系和6VS/6AL易位系高抗条锈病菌条中29、条中31、水源11-2、水源11-5、水源11-13和杂46等强毒小种。考虑到含整组V染色体的硬粒小麦-簇毛麦双倍体不抗水源11-13小种,上述普通小麦-簇毛麦6V异附加系、异代换系和6VS/6AL易位系的条锈病抗性可能还与其所涉及的小麦亲本基因的作用有关。  相似文献   

2.
为明确已知小麦抗白粉病基因载体品种以及2005—2007年陕西省新育成小麦品种(系)的抗病性,采集陕西关中不同地区小麦白粉病菌作为菌源,分年度在人工诱发病圃中对32份已知抗白粉病基因品种及578份新育成小麦品种(系)进行鉴定。结果表明,目前在陕西省仅Pm21、Pm4a、Pm5 6、Pm2 Talent及小黑麦具有优良的抗病性;Pm4b、Pm5(Mli)、Pm13、Pm19、Pm"Era"、Pm2 Mld的抗病性较弱;其它基因抗病性较差。新育成的小麦品种(系)中绝大部分对白粉病表现感病,苗期和成株期均抗病的材料仅27份,占4.67%,成株期抗病性的46份,占7.96%,其中,簇毛麦后代材料抗病性较高。  相似文献   

3.
明确我国当前小麦审定和区试品种含有的抗白粉病基因, 可为这些品种在小麦抗病育种中的应用及品种合理布局和轮换提供依据。本研究采用24个不同毒性的小麦白粉菌菌株对36个小麦审定和区试品种(系)进行抗白粉病基因推导, 参试品种(系)与46个已知抗病基因小麦品种(系)抗谱比较的结果表明, 11个小麦审定品种中有5个品种对所有供试白粉菌菌株表现抗性, 结合亲本溯源, 推测其中有3个品种可能携有Pm21基因; 另外6个审定品种中有5个品种可能含有抗病基因Pm2, 且其对应的亲本或亲本组合中含有抗病基因Pm2。25个区试品种(系)中有3个可能含有Pm21, 10个含有Pm2, 1个含有Pm2+6,2个含有Pm4b,1个含有Pm8。另外, 参试的36个品种(系)中还有9个品种(系)和已知基因品种抗谱存在一定差异。总体上, 推导出已知基因的品种以含有Pm2基因的品种最多, Pm21基因的品种次之, 建议在生产上加强对Pm21基因品种(系)特别是已审定的携有Pm21基因品种的推广和应用, 应该注意一些省份在育种和生产上应慎用或少用含Pm2基因的品种(系)。  相似文献   

4.
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   

5.
为挖掘新的小麦抗条锈病基因,掌握小麦生产主栽品种的抗条锈病基因携带情况,有效防控小麦条锈病,采用抗性鉴定、基因推导分析和分子标记技术对22份小麦生产上主栽品种进行了研究,通过抗性鉴定比较22份小麦主栽品种与已知基因载体品种的抗谱。结果显示,共推测出14份供试品种携带已知抗条锈基因,8份供试品种携带未知抗条锈基因,是新的抗锈基因资源;聚类分析结果显示,供试22份小麦品种可分为2个大类6个亚类;利用SSR分子标记检测抗条锈病基因Yr1、Yr10和Yr24的携带情况发现,11份品种携带Yr1基因,2份品种携带Yr10基因,22份品种均不携带Yr24基因。部分生产主栽品种携带新的抗条锈病基因,表明小麦品种选育中避免了抗性基因单一化,并加强了未知基因的利用。  相似文献   

6.
 为明确陕西省小麦白粉菌群体的毒性频率和遗传多样性,利用34个含有已知抗白粉病基因的小麦品种(系)和5对多态性ISSR分子标记,分别对2016年渭南、西安、咸阳、宝鸡、汉中和安康等6市的15个乡镇160个小麦白粉菌单孢子堆菌株进行毒性频率分析。结果显示:供试小麦白粉菌群体对Pm1Pm2Pm3bPm3cPm3ePm3fPm6Pm7Pm8Pm19Pm1+2+19的毒性频率在60%~100%之间,表明这些抗性基因已丧失抗性,在生产上已经丧失利用价值,对Pm4bPm24Pm2+6Pm2+MldPm2+6+?Pm4b+MliPm"Era"Pm"XBD"Pm21的毒性频率低于20%,表明这些抗性基因抗性良好,可在生产中利用。选取其中93个单孢子堆菌株进行遗传多样性分析,结果表明白粉菌地理群体间遗传距离在0.020 4~0.103 7之间,其中宝鸡和渭南群体的遗传距离最近,汉中和咸阳群体的遗传距离最远。群体间遗传变异占总体变异的12.82%,群体内遗传变异占87.12%,表明遗传变异主要来自于群体内。Mantel Test分析表明,小麦白粉菌群体间遗传距离与地理距离相关性不大。  相似文献   

7.
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   

8.
 抗病品种和化学防治是控制植物病害最有效的两种措施,病原菌在长期选择压下可改变其群体结构,以逐步适应品种抗性和杀菌剂压力。本研究采用拌种离体叶段法对 2012年采自我国9个省(市)的129个小麦白粉病菌Blumeria graminis f. sp. tritici单孢堆分离物进行了三唑酮敏感性检测,同时采用31个已知抗病基因品种(系)对其进行苗期毒性测定,并对二者之间的相关性进行分析结果表明:129个供试菌株对三唑酮的EC50为 109.97 mg/L,平均抗药性水平达到52.62倍,变异系数为 107.2。所有供试菌株中,99.22% 的菌株产生了抗药性,其中高抗菌株占58.91%,中抗菌株占37.98%。北京菌株的抗药性水平明显高于其他8个省市。利用Popgen1.32软件对9个省(市)小麦白粉病菌群体的毒性多样性分析结果表明,四川群体毒性基因多样性水平最高,Nei基因多样性H值为0.224 1,浙江群体最低,H值为0.096 8。小麦白粉菌群体对三唑酮的敏感性和毒性的相关性分析表明,EC50或EC50变异系数与毒性多样性之间均不存在显著的相关性,但EC50与毒性基因数目之间的关系符合对数方程。此结果可为杀菌剂和抗性品种的合理利用提供依据。  相似文献   

9.
来自簇毛麦抗条锈病新基因的SSR标记   总被引:7,自引:1,他引:6  
 用小麦条锈菌条中30号生理小种,对小麦抗病种质小麦-簇毛麦易位系V9128-1和铭贤169的杂交后代进行抗条锈性遗传分析,小麦-簇毛麦易位系V9128-1的抗病性符合1对显性抗条锈病基因控制。并根据F2抗、感病单株分离比例组建抗感池,用SSR技术寻找与抗病基因连锁的分子标记。从121个SSR引物组合中筛选到2个与抗病基因YrV1(暂命名)紧密连锁的微卫星标记Xgwm566和Xgwm376,遗传距离分别为3.6和5.5cM;因此,该抗条锈病基因位于小麦3B染色体短臂上。这2个标记不仅能在小麦-簇毛麦易位系V9128-1中检测到,而且在抗病基因供体亲本簇毛麦中也能检测到。综合抗病基因来源和分子生物学试验结果,可以推断,YrV1很可能是1个来自簇毛麦并与已知抗条锈病基因不同的新基因。  相似文献   

10.
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   

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.
ABSTRACT Mycosphaerella graminicola causes Septoria tritici blotch of hexaploid and tetraploid wheat. The inheritance of high-level resistance to Septoria tritici blotch was studied in controlled environment experiments. Intraspecific reciprocal crosses were made between hexaploid wheat lines Salamouni, ST6, Katepwa, and Erik, and the tetraploid wheat lines Coulter and 4B1149. Parental, F(1), F(2), F(3), BC(1)F(1), and BC(1)F(2) populations were evaluated for reaction to isolates MG2 and MG96-36 of M. graminicola. Resistance was controlled by incompletely dominant nuclear genes in all cases. Salamouni had three independent resistance genes to isolate MG2, two of which also controlled resistance to isolate MG96-36. ST6 had a single resistance gene to isolate MG2 and none to isolate MG96-36. The resistance genes in Salamouni and ST6 were not allelic. Two independent genes control resistance to isolate MG2 in Coulter, one of which also controlled resistance to isolate MG96-36. These data are consistent with a gene-for-gene interaction in the wheat-M. graminicola pathosystem.  相似文献   

13.
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   

14.
簇毛麦在小麦抗病育种中的利用   总被引:11,自引:0,他引:11  
用簇毛麦(Haynaldiavillosa)与硬粒小麦(Triticumdrurm)品种Sauwne20杂交,F1自由授粉,育在贵农21,22号等品系,并对条锈和白粉病免疫至近免疫,中抗叶锈病和高抗秆锈病,品质优良,丰产性好,对病害具较持久的抗性,经RAPD分子标记和原位杂交,确认为小麦-簇毛麦的代换系,贵农21号等对小麦新的雄性不育系D^2型有很强的恢复力。  相似文献   

15.
Tan spot of wheat, caused by the fungus Pyrenophora tritici-repentis, is a destructive disease worldwide that can lead to serious losses in quality and quantity of wheat grain production. Resistance to multiple races of P. tritici-repentis was identified in a wide range of genetically diverse genotypes, including three different species Triticum aestivum (AABBDD), T. spelta (AABBDD), and T. turgidum (AABB). The major objectives of this study were to determine the genetic control of resistance to P. tritici-repentis races 1 and 5 in 12 newly identified sources of resistance. The parents, F(1), F(2), and F(2:3) or F(2:5) families of each cross were analyzed for the allelism tests and/or inheritance studies. Plants were inoculated at the two-leaf stage under controlled environmental conditions and disease reaction was assessed based on lesion-type rating scale. A single recessive gene controlled resistance to necrosis caused by P. tritici-repentis race 1 in both tetraploid and hexaploid resistant genotypes. The lack of segregation in the inter- and intra-specific crosses between the resistant tetraploid and hexaploid genotypes indicated that they possess the same genes for resistance to tan necrosis and chlorosis induced by P. tritici-repentis race 1. A single dominant gene for chlorosis in hexaploid wheat and a single recessive gene for necrosis in tetraploid wheat, controlled resistance to P. tritici-repentis race 5.  相似文献   

16.
ABSTRACT Septoria tritici leaf blotch (STB), caused by the ascomycete Mycosphaerella graminicola (anamorph Septoria tritici), is an economically important disease of wheat. Breeding for resistance to STB is the most effective means to control this disease and can be facilitated through the use of molecular markers. However, molecular markers linked to most genes for resistance to STB are not yet available. This study was conducted to test for resistance in the parents of a standard wheat mapping population and to map any resistance genes identified. The population consisted of 130 F(10) recombinant-inbred lines (RILs) from a cross between the synthetic hexaploid wheat W7984 and cv. Opata 85. Genetic analysis indicated that a single major gene controls resistance to M. graminicola in this population. This putative resistance gene is now designated Stb8 and was mapped with respect to amplified fragment length polymorphism (AFLP) and microsatellite markers. An AFLP marker, EcoRI-ACG/MseI-CAG5, was linked in repulsion with the resistance gene at a distance of approximately 5.3 centimorgans (cM). Two flanking microsatellite markers, Xgwm146 and Xgwm577, were linked to the Stb8 gene on the long arm of wheat chromosome 7B at distances of 3.5 and 5.3 cM, respectively. The microsatellite markers identified in this study have potential for use in marker-assisted selection in breeding programs and for pyramiding of Stb8 with other genes for resistance to M. graminicola in wheat.  相似文献   

17.
Downy mildew resistance was previously identified from screening a Brassica oleracea collection against two standard UK isolates of Hyaloperonospora parasitica. Sources of resistance were chosen from this material and developed further in this study by generating doubled haploid (DH) and inbred lines. Seedlings from the new lines were tested for resistance to a larger collection of H. parasitica isolates collected in 2001–2002 and 2007–2008 from the main broccoli and cauliflower production regions of the UK. Three lines (derived from borecole or summer cabbage) were broadly resistant to the pathogen isolates. Three of the remaining lines exhibited strong isolate‐specific resistance; several examples of weak or basal level of resistance to some isolates were observed. A new H. parasitica variant collected in 2008 was virulent in the broadly resistant lines, but was avirulent in a line with narrow specificity of resistance. The F2 and BC1 seedlings derived from outcrossing each of the three broadly resistant lines to susceptible broccoli and cauliflower lines segregated in a manner indicating that the resistance was controlled by a single dominant gene. No susceptibility was observed amongst F2 seedlings derived from intercrossing the three resistant lines, indicating that they all share the same or closely linked broad‐spectrum resistance gene(s). DH lines were produced from F1 plants, and resistant plants were further backcrossed to produce broccoli and cauliflower‐like lines that could be useful pre‐breeding material. A combination of resistance from lines with broad and narrow specificity is recommended for controlling downy mildew in UK brassica production.  相似文献   

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