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34份粗山羊草抗白粉病性鉴定及遗传分析 总被引:1,自引:0,他引:1
粗山羊草为小麦D基因组的供体,通过对来自不同产地的粗山羊草抗病性进行鉴定,用离体叶段接种方法接种12个小麦白粉病菌株(E02、E03、E05、E06、E07、E09、E11、E15、E18、E21、E23、E25),鉴定了34份不同产地的粗山羊草抗病性。结果表明:9份粗山羊草(Y170、Y186、Y189、Y192、Y201、Y206、Y212、Y214、Y215)对12个小麦白粉病菌株完全免疫,有3份山羊草(Y126、Y208、Y185)对12个菌株全部感病,其余的材料抗白粉病的部分菌株。田间全生育期用混合菌种鉴定粗山羊草抗性,其结果与离体叶鉴定的结论相一致。粗山羊草Y219与Y122杂交的后代的遗传分析发现抗病基因是1对显性基因控制;Y215与Ae43杂交后代的遗传分析表明抗病基因是1对隐性基因控制。 相似文献
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Various film-forming anti-transpirants effectively controlled leaf rust and powdery mildew on wheat in the field. Two applications of anti-transpirant emulsions applied after flag leaf emergence were sufficient to suppress leaf rust and powdery mildew on wheat leaves. When applied before, but not after, inoculation anti-transpirant polymers also reduced leaf rust on seedling plants in a growth room experiment. 相似文献
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Mapping of Aegilops umbellulata‐derived leaf rust and stripe rust resistance loci in wheat 下载免费PDF全文
M. Bansal S. Kaur H. S. Dhaliwal N. S. Bains H. S. Bariana P. Chhuneja U. K. Bansal 《Plant pathology》2017,66(1):38-44
Aegilops umbellulata, a non‐progenitor diploid species, is an excellent source of resistance to various wheat diseases. Leaf rust and stripe rust resistance genes from A. umbellulata were transferred to the susceptible wheat cultivar WL711 through induced homoeologous pairing. A doubly resistant introgression line IL 393‐4 was crossed with wheat cultivar PBW343 to develop a mapping population. Tests on BC2F7 RILs indicated monogenic inheritance of seedling leaf rust and stripe rust resistance in IL 393‐4 and the respective co‐segregating genes were tentatively named LrUmb and YrUmb. Bulked segregant analysis placed LrUmb and YrUmb in chromosome 5DS, 7.6 cM distal to gwm190. Aegilops geniculata‐derived and completely linked leaf rust and stripe rust resistance genes Lr57 and Yr40 were previously located in chromosome 5DS. STS marker Lr57/Yr40MAS‐CAPS16 (Lr57/Yr40‐CAPS16), linked with Lr57/Yr40 (T756) also co‐segregated with LrUmb/YrUmb. Seedling infection types differentiated LrUmb from Lr57. Absence of leaf rust‐susceptible segregants among F3 families of the intercross (IL 393‐4/T756) indicated repulsion linkage between LrUmb and Lr57. YrUmb expressed a consistently low seedling response under greenhouse conditions, whereas Yr40 expressed a higher seedling response. Based on the origin of LrUmb/YrUmb from the U genome and Lr57/Yr40 from the M genome, as well as phenotypic differences, LrUmb and YrUmb were formally named Lr76 and Yr70, respectively. These genes have been transferred to Indian wheat cultivars PBW343 and PBW550, and advanced breeding lines are being tested in state and national trials. 相似文献
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小麦条锈病、白粉病是发生于甘肃陇南乃至全国小麦生产上的最主要病害之一, 种植抗病品种是防治病害最经济有效且绿色环保的措施。兼抗种质资源材料的匮乏是制约甘肃陇南小麦条锈病和白粉病品种选育和病害有效防控的主要因素。农家品种是小麦抗病种质资源重要的基因库, 开展兼抗病害材料鉴定是准确评价供试材料抗病性的基础性工作。2021年和2022年, 在甘肃省农业科学院植物保护研究所兰州温室和甘谷试验站, 对127份小麦农家品种进行了苗期、成株期抗条锈病和白粉病性鉴定, 结果发现:供试材料中苗期对条锈菌和白粉菌混合菌表现抗病的分别有36份和24份, 占28.35%和18.90%;兼抗材料15份, 占11.81%。成株期在接种及自然诱发条锈菌和白粉菌条件下, 表现抗病的分别有39份和72份, 占30.71%和56.69%;兼抗材料有27份, 占21.26%。全生育期兼抗材料有11份, 占8.66%。抗白粉病基因分子检测结果发现, 含有抗病基因Pm2、Pm4a、Pm8、Pm21的分别占30.71%、86.61%、25.20%、3.15%;含有2个及以上基因组合品种有60个, 占47.24%。结合前期抗条锈病研究结果, 将会为筛选出的优异材料利用和持续解决甘肃陇南兼抗品种匮乏难题提供材料支撑。 相似文献
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ABSTRACT Alsen is a recently released spring wheat cultivar that has been widely grown in the United States because it has resistance to Fusarium head blight and leaf rust caused by Puccinia triticina. Norm is a high yielding wheat cultivar that has been very resistant to leaf rust since it was released. Alsen and Norm were genetically examined to determine the number and identity of the leaf rust resistance genes present in both wheats. The two cultivars were crossed with leaf rust susceptible cv. Thatcher and F(1) plants were backcrossed to Thatcher. Eighty one and seventy three BCF(1) of Thatcher times; Alsen and Thatcher x Norm respectively, were selfed to obtain BCF(2) families. The BCF(2) families were tested as seedlings with different isolates of P. triticina that differed for virulence to specific leaf rust resistance genes. The BCF(2) families that lacked seedling resistance were also tested as adult plants in greenhouse tests and in a field rust nursery plot. Segregation of BCF(2) families indicated that Alsen had seedling genes Lr2a, Lr10, and Lr23 and adult plant genes Lr13 and Lr34. Norm was determined to have seedling genes Lr1, Lr10, Lr16, and Lr23 and adult plant genes Lr13 and Lr34. The characterization of Lr23 in the segregating populations was complicated by the presence of a suppressor gene in Thatcher and the high temperature sensitivity of resistance expression for this gene. The effective leaf rust resistance in Alsen is due to the interaction of Lr13 and Lr23, with Lr34; and the effective leaf rust resistance in Norm is due to the interaction of Lr13, Lr16, and Lr23, with Lr34. 相似文献
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Key weather factors determining the occurrence and severity of powdery mildew and yellow rust epidemics on winter wheat were identified. Empirical models were formulated to qualitatively predict a damaging epidemic (>5% severity) and quantitatively predict the disease severity given a damaging epidemic occurred. The disease data used was from field experiments at 12 locations in the UK covering the period from 1994 to 2002 with matching data from weather stations within a 5 km range. Wind in December to February was the most influential factor for a damaging epidemic of powdery mildew. Disease severity was best identified by a model with temperature, humidity, and rain in April to June. For yellow rust, the temperature in February to June was the most influential factor for a damaging epidemic as well as for disease severity. The qualitative models identified favorable circumstances for damaging epidemics, but damaging epidemics did not always occur in such circumstances, probably due to other factors such as the availability of initial inoculum and cultivar resistance. 相似文献
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Rankit transformation of mildew scores was used in regression analyses to compare the times and methods of scoring resistance. This showed that time and method of assessment significantly altered the relative rank positions of different cultivars. Examination of 10 cultivars in detail showed that changes in rank were associated with differences in organ resistance.
Whole plot assessments based on a 0–9 scale provided a rapid and reliable means of ranking cultivars. Where possible, and particularly for breeders, at least two assessments are recommended, the first at or soon after flowering to estimate foliar infection, and the second 2 or 3 weeks later to estimate ear infection. For general comparisons of cultivars, sufficient information may be acquired from a single assessment when all plant organs are present and when the disease has had time to become well established. 相似文献
Whole plot assessments based on a 0–9 scale provided a rapid and reliable means of ranking cultivars. Where possible, and particularly for breeders, at least two assessments are recommended, the first at or soon after flowering to estimate foliar infection, and the second 2 or 3 weeks later to estimate ear infection. For general comparisons of cultivars, sufficient information may be acquired from a single assessment when all plant organs are present and when the disease has had time to become well established. 相似文献
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小麦白粉病近年在我省各地普遍发生,造成一定损失,研究明确主要品种抗白粉性的遗传行为,提高抗白粉小麦育种的效能,是一项急待开展的工作。本文简述了1983-1985年间我们对4个抗原品种在田间接种下进行抗白粉遗传研究的部分结果。 相似文献
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[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
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Abstract Cercospora leaf spot, caused by Cercospora canescens and powdery mildew, caused by Erysiphe polygoni are two of the most important fungal diseases of mungbeans. Nearly 4000 accessions of the global mungbean collection at the Asian Vegetable Research and Development Center were screened for resistance to these two pathogens. Less than 4% and 12% of the accessions showed resistance to Cercospora leaf spot and powdery mildew, respectively. The level of resistance to Cercospora leaf spot varied and highly resistant lines were not found. A few lines were rated highly resistant to powdery mildew over several years but others were rated moderately resistant or susceptible in other years. 相似文献
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以小麦优异抗源Sw92为父本,感病小麦品种铭贤169为母本,杂交获得F1、F2和BC1代群体。采用我国叶锈菌优势小种PHT对双亲及其杂交世代进行接种鉴定。结果表明,小麦抗源Sw92对叶锈菌小种PHT的抗性系由一对隐性基因所控制。采用简单重复序列(SSR)技术对Sw92携带的抗性基因进行分子标记,共筛选了371对SSR引物,获得2个引物(WMC494、WMC737)可在抗/感池和双亲中扩增出多态性DNA片段。遗传连锁分析结果表明,该抗病基因位于小麦6BS上,与WMC494、WMC737标记的遗传距离分别为3.4cM和15.0cM,不同于6BS上的已知抗叶锈基因Lr36和Lr53,暂命名为LrSw92。 相似文献
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小麦慢白粉品种的抗性组分研究 总被引:1,自引:1,他引:1
2003~2004年度和2004~2005年度在田间测定了16个小麦品种(系)对小麦白粉菌E20菌株的抗性组分,包括潜育期、侵染几率、产孢量、病斑扩展和传染期。结果表明,小麦慢白粉品种(系)与高感对照品种相比,表现为潜育期长、侵染几率低、产孢量低、病斑扩展慢的特点,且这4个抗性组分与对照的差异都达到了显著和极显著水平,但慢白粉品种的传染期变化无一定规律。参试慢白粉品种的抗性组分参数与病情曲线下面积(AUDPC)的相关分析表明,潜育期与AUDPC呈负相关,但相关性不显著;产孢量和病斑扩展与AUDPC呈正相关,两年数据相关性均达到显著水平;侵染几率与AUDPC呈正相关,但2003-2004年度相关性不显著,而2004~2005年度相关性显著;传染期与AUDPC相关关系不明显。由此可见,在慢白粉品种的病害流行中起主要作用的是产孢量、病斑扩展,而侵染几率、潜育期和传染期作用相对较小。 相似文献
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小麦品种维尔是中国小麦条锈菌重要鉴别寄主.将该品种分别与完全感病品种铭贤169和其它抗病品种杂交,获得各组合的F1、BC1和F2代群体及部分F3家系.在温室对各组合亲本及F1、BC1和F2代群体进行了苗期抗性鉴定.结果表明,维尔对CY17和CY23菌系的抗性由1对主效隐性基因控制.等位性分析表明,维尔中抗CY17和CY23菌系的基因与Triticum spelta album中的1对抗性基因等位或紧密连锁,将其命名为YrVirl.而维尔对Su-1的抗性则由1对显性基因控制,将其命名YrVir2.同时采用CY17和CY23菌系对铭贤169/维尔组合的48个F3家系进行了苗期抗性鉴定,根据平均抗性指数和样本方差将这些家系分为3组,卡方测验证明了维尔对上述两菌系的抗性由1对主效基因控制,同时还可能受微效基因的影响. 相似文献
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为了解湖北省小麦品种(系)的抗病性水平,对2001年以来湖北省审定的46个小麦品种和在湖北省进行区域试验的447份小麦品系进行赤霉病、条锈病、白粉病和纹枯病等4种主要病害的抗病性评价。结果表明:1)参试品系中有1份材料对赤霉病表现高抗,未发现对纹枯病表现高抗或免疫的材料;对赤霉病和纹枯病的平均抗性评价分值分别为14.30和3.49,介于中感和高感之间;对条锈病和白粉病的平均抗性评价分值分别为13.43和8.34,介于中抗和中感之间。2)审定品种的综合抗性水平不高,对条锈病的抗性评价分值为12.47,介于中抗和中感之间,对其他3种病害的抗性介于中感和高感之间;审定品种的单产呈增加趋势,株高在不断降低,生育期相应延长,综合抗病性也在增强。3)审定品种的综合抗病性与对条锈病抗性的相关系数最高,为0.738;对纹枯病的抗性与株高呈显著正相关,与单产呈显著负相关;对赤霉病的抗性与株高无显著相关。鉴于此,湖北省需加强抗病育种力度,同时应充分做好小麦病害的防控。 相似文献
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Liang SS Suenaga K He ZH Wang ZL Liu HY Wang DS Singh RP Sourdille P Xia XC 《Phytopathology》2006,96(7):784-789
ABSTRACT Powdery mildew, caused by Blumeria graminis f. sp. tritici, is a major disease to wheat (Triticum aestivum) worldwide. Use of adult-plant resistance (APR) is an effective method to develop wheat cultivars with durable resistance to powdery mildew. In the present study, 432 molecular markers were used to map quantitative trait loci (QTL) for APR to powdery mildew in a doubled haploid (DH) population with 107 lines derived from the cross Fukuho-komugi x Oligoculm. Field trials were conducted in Beijing and Anyang, China during 2003-2004 and 2004-2005 cropping seasons, respectively. The DH lines were planted in a randomized complete block design with three replicates. Artificial inoculation was carried out in Beijing with highly virulent isolate E20 of B. graminis f. sp. tritici and the powdery mildew severity on penultimate leaf was evaluated four times, and the maximum disease severity (MDS) on penultimate leaf was investigated in Anyang under natural inoculation in May 2004 and 2005. The heritability of resistance to powdery mildew for MDS in 2 years and two locations ranged from 0.82 to 0.93, while the heritability for area under the disease progress curve was between 0.84 and 0.91. With the method of composite interval mapping, four QTL for APR to powdery mildew were detected on chromosomes 1AS, 2BL, 4BL, and 7DS, explaining 5.7 to 26.6% of the phenotypic variance. Three QTL on chromosomes 1AS, 2BL, and 7DS were derived from the female, Fukuho-komugi, while the one on chromosome 4BL was from the male, Oligoculm. The QTL on chromosome 1AS showed high genetic effect on powdery mildew resistance, accounting for 19.5 to 26.6% of phenotypic variance across two environments. The QTL on 7DS associated with the locus Lr34/Yr18, flanked by microsatellite Xgwm295.1 and Ltn (leaf tip necrosis). These results will benefit for improving powdery mildew resistance in wheat breeding programs. 相似文献
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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
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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
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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