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1.
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   

2.
小麦品种C591的抗条锈性遗传分析   总被引:1,自引:0,他引:1  
李勇  牛永春 《植物保护》2006,32(6):39-41
C591是原产于印度的普通小麦品种,苗期和成株期均对中国小麦生产上流行的条锈菌(Puccinia striiformis f.sp.tritici)主要生理小种表现良好抗性。本文以感病品种Taichung29作母本、C591作父本通过杂交制备了F1代、F2代和BC1代种子,用人工接种方法研究了C591及其杂交后代对小麦条锈菌不同生理小种的苗期抗性并进行了遗传分析。结果显示,C591与Taichung29杂交F1代植株对小麦条锈菌条中19号、条中29号和条中32号小种均表现出与C591相似的高抗,说明C591中的抗条锈基因主要为显性表达。根据杂交F2代、BC1代植株的抗性分离情况和F1代植株及亲本的抗性表现,说明C591中至少具有3对抗条锈基因,针对条锈菌不同的生理小种其有效性是不同的。对条中32号小种的抗性受1对显性基因控制,对条中29号小种的抗性受1对显性基因和2对隐性基因的独立控制,对条中19号小种的抗性受2对显性基因独立控制。结果表明,C591作为抗源在我国小麦抗锈育种中具有较大应用价值。  相似文献   

3.
东北春麦区2006-2007年小麦白粉病菌群体毒性监测   总被引:1,自引:1,他引:0  
对2006-2007年采自黑龙江、吉林、辽宁的80份小麦白粉病菌标样进行分离、纯化得到113个单孢子堆菌系,经生理小种及群体毒性频率测定,共鉴定出29个生理小种,优势小种均为15号小种。15号小种在2006年和2007年的频率分别为15.3%和14.8%,其次为415号和11号小种。小麦白粉菌毒性基因v1、v3 a、v3 b、v3 c、v5、v6、v7、v8、v1+2+9v17毒力频率较高(>66%),而v2、v4、v12、v16v21毒力频率较低(<21%),说明目前在东北春麦区含有Pm2、Pm4、Pm12、Pm16Pm21等抗病基因的品种在育种中有较高的利用价值。  相似文献   

4.
为明确中国不同春麦区小麦地方种质对当前小麦生产上流行的条锈病菌Puccinia striiformis f.sp.tritic的抗性水平及其所含抗性基因,利用条锈病菌生理小种条中32(CYR32)和条中34(CYR34)及混合生理小种(致病类群)对来自5个春麦区的196份小麦地方种质进行苗期、成株期抗性鉴定,并通过6个已知条锈病抗性基因Yr9、Yr18、Yr26、Yr48、Yr65Yr67对其所含重要抗性基因进行分子标记检测。结果显示,在苗期,有11份小麦地方种质对CYR32表现出抗性,有12份对CYR34表现出抗性,分别占供试种质总数的5.61%和6.12%;有6份对CYR32和CYR34均表现出抗性;在成株期,有59份小麦地方种质在5个田间诱导环境下表现出稳定的抗性。有119份小麦地方种质检测到含抗性基因,其中有3份携带Yr9,有50份携带Yr18,有43份携带Yr48,有54份携带Yr65,所有供试种质均未检测到Yr26Yr67,抗性基因的组合分析发现,共有31份小麦地方种质携带4种抗性基因组合类型Yr9+Yr18、Yr18+Yr48、Yr18+Yr65Yr48+Yr65。表明来自中国5个春麦区的小麦地方种质条锈病抗性表型呈多样性,且携带目前在小麦抗病育种和生产上有效的条锈病抗性基因(组合),建议加大对小麦地方种质的保护和应用力度。  相似文献   

5.
为西北农林科技大学小麦新育成品种(系)在黄淮麦区的大面积推广,该研究对83份西农新育成的小麦品种(系)进行苗期抗条锈病和白粉病鉴定,成株期抗条锈病、白粉病、叶锈病和赤霉病鉴定,并在田间自然环境下对其抗性进行鉴定及对相关抗病基因进行分子检测。结果显示,在苗期人工接种鉴定中,有63、29和16份小麦品种(系)分别对条锈菌Puccinia striiformis f.sp.tritici生理小种CYR32、CYR33和CYR34表现出抗性,9份小麦品种(系)对3个条锈菌生理小种均表现出抗性;有10、3和0份小麦品种(系)分别对白粉菌Blumeria graminis f.sp.tritici生理小种E15、E09和A13表现出抗性。在成株期人工接种鉴定中,有23、15、28和62份小麦品种(系)分别对条锈病、白粉病、叶锈病和赤霉病表现出抗性。在83份小麦品种(系)中有6份在苗期和成株期均对小麦条锈病表现出抗性。在田间抗性鉴定中,有57、6、65和40份小麦品种(系)分别对条锈病、白粉病、赤霉病及叶锈病表现出抗性。在83份小麦品种(系)中,3份含有Yr5基因,22份含有Yr9基因,3份含有Yr17基因,2份含有Pm24基因,14份含有Lr1基因,所占比例分别为3.6%、26.5%、3.6%、2.4%和16.8%。  相似文献   

6.
三个小麦新品系抗白粉病基因分析   总被引:6,自引:0,他引:6  
 用4个具有不同毒力的小麦白粉菌生理小种,分别接种5个小麦品种(系)半双列杂交的F1、F2和BC1F1群体的幼苗离体叶段,初步鉴定出野二燕3号具有1对抗1号和11号小种的显性抗病基因;JYP-2具有2对独立的显性抗病基因,其中1对基因抗1、11和311号小种,另1对基因只抗1和11号小种;贵农21号具有2对显性抗病基因,其中1对抗311和313号小种,另1对只抗1和11号小种,这对基因与JYP-2具有的抗1和11号小种的基因是相同的。3个小麦新品系共鉴定出4对不同的抗病基因。本文还讨论了采用幼苗离体叶段接种,同一批单株接种2个以上小种,定单株编号,记载和统计的方法,在抗白粉病基因分析中的作用。  相似文献   

7.
以Taichung29为背景的小麦抗条锈病近等基因系转育进展   总被引:6,自引:0,他引:6  
自1988年起,系统开展了以Taichung29为背景的小麦抗条锈病近等基因系转育及其基础性研究。采用回交法和系谱法相结合的转育方法,以春性品种Taichung29为轮回亲本作母本,分别与25个抗性供体即中国小麦条锈病菌鉴别寄主和国际上重要的抗条锈基因载体品种杂交、回交和自交。通过基因推导分析、单体分析和SSR标记技术检测目的基因,选育抗条锈近等基因系,现已获得重要进展,成功选育出8个以Taichung29为背景的抗条锈病单基因近等基因系,即Taichung29*6/Yr1、Taichung29*6/Yr2、Taichung29*6/Yr5、Taichung29*6/Yr7、Taichung29*6/Yr9、Taichung29*6/Yr10、Taichung29*6/YrSpP、Taichung29*6/YrKy2。另有9个组合转育获得343个抗性稳定株系,正检测其目的基因,3个组合转至BC6F3,自交纯合筛选抗性稳定株系,5个组合转至BC5,继续回交转育。  相似文献   

8.
为查明西藏小麦条锈菌Puccinia striiformis f. sp. tritici群体结构和遗传多样性,采用中国鉴别寄主和近等基因系鉴别寄主,以及竞争性等位基因特异性PCR-单核苷酸多态性(kompetitive al-lele specific PCR-single nucleotide polymorphism,KASP-SNP)分子标记对2017年采自西藏的150个小麦条锈菌菌系分别进行表型分析和基因型分析。表型分析结果显示,中国鉴别寄主将150个菌系区分为 12 个已知小种、6 个已知致病类型和 13 个未知致病类型,所有菌系均不能侵染中四和Triticum spelta album鉴别寄主。近等基因系鉴别寄主将150个菌系区分为88个毒性类型,这些毒性类型均不侵染携带抗性基因Yr5Yr10Yr15的品种。基因型分析结果显示,26对引物将150个菌系划分为73个基因型,表明西藏小麦条锈菌群体基因型丰富。基因流分析结果表明,波密县与洛扎县小麦条锈菌亚群体之间的基因流Nm最高,达5.86,米林县西部与波密县、洛扎县、巴宜县、米林县东部条锈菌亚群体之间的Nm较低,分别为0.25、0.34、0.42和0.67,表明西藏不同地区条锈菌群体之间基因交流强度差异较大。说明西藏作为我国小麦条锈病的独立流行区,条锈菌群体毒性结构复杂,遗传多样性高。  相似文献   

9.
小麦抗源武汉2号和品冬34的抗条锈性遗传分析   总被引:1,自引:1,他引:0  
为明确小麦品种武汉2号和品冬34对小麦条锈菌流行小种的抗病性及抗病遗传规律,用小麦条锈菌生理小种CYR29、CYR31、CYR32、CYR33以及致病类型Su11-4、Su11-5、Su11-11、PST-Ch42在苗期接种小麦品种武汉2号和品冬34进行抗病性鉴定,并用武汉2号和品冬34分别与感病亲本铭贤169进行杂交,对F2群体和F2:3家系在温室进行苗期遗传分析。结果表明:武汉2号对CYR29和CYR32表现感病,对其它小种和致病型均表现抗病,且对CYR31的抗性由1对隐性基因控制;品冬34对所测试的小种和致病类型均表现高抗,且对CYR32的抗性由1对显性基因控制。  相似文献   

10.
为探究小麦条锈菌Puccinia striiformis f. sp. tritici对三唑类杀菌剂产生抗药性的相关机理,以小麦条锈菌抗药性菌株YQ324与敏感性菌株贵1-2在转主寄主堆花小檗Berberis aggregata上构建的有性遗传群体为材料,通过离体叶段法对F1代杂交及F2代自交后代的夏孢子群体进行三唑酮敏感性生物学测定,并在F2代夏孢子群体中筛选20株抗药性菌株和20株敏感性菌株分别构建DNA抗、感池。在对抗、感混池进行高通量测序之后,通过质量检测和数据分析得到2个极端混池中的变异信息。根据ΔIndex为1的筛选标准在小麦条锈菌中鉴定出67个与三唑酮抗性显著相关的单核苷酸多态性(single nucleotide polymorphism,SNP)位点;利用SNPEff软件对这些SNP位点引起氨基酸非同义突变所在的基因序列进行功能注释,最终在pcontig_030上筛选到Pst104E_09436Pst104E_09437这2个基因作为小麦条锈菌对三唑酮抗性相关的候选基因。  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.
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   

13.
Large-scale cDNA-AFLP profiling identified numerous genes with increased expression during the resistance response of wheat to the Septoria tritici blotch fungus, Mycosphaerella graminicola. To test whether these genes were associated with resistance responses, primers were designed for the 14 that were most strongly up-regulated, and their levels of expression were measured at 12 time points from 0 to 27 days after inoculation (DAI) in two resistant and two susceptible cultivars of wheat by real-time quantitative polymerase chain reaction. None of these genes was expressed constitutively in the resistant wheat cultivars. Instead, infection of wheat by M. graminicola induced changes in expression of each gene in both resistant and susceptible cultivars over time. The four genes chitinase, phenylalanine ammonia lyase, pathogenesis-related protein PR-1, and peroxidase were induced from about 10- to 60-fold at early stages (3 h–1 DAI) during the incompatible interactions but were not expressed at later time points. Nine other genes (ATPase, brassinosteroid-6-oxidase, peptidylprolyl isomerase, peroxidase 2, 40S ribosomal protein, ADP-glucose pyrophosphorylase, putative protease inhibitor, methionine sulfoxide reductase, and an RNase S-like protein precursor) had bimodal patterns with both early (1–3 DAI) and late (12–24 DAI) peaks of expression in at least one of the resistant cultivars, but low if any induction in the two susceptible cultivars. The remaining gene (a serine carboxypeptidase) had a trimodal pattern of expression in the resistant cultivar Tadinia. These results indicate that the resistance response of wheat to M. graminicola is not completed during the first 24 h after contact with the pathogen, as thought previously, but instead can extend into the period from 18 to 24 DAI when fungal growth increases dramatically in compatible interactions. Many of these genes have a possible function in signal transduction or possibly as regulatory elements. Expression of the PR-1 gene at 12 h after inoculation was much higher in resistant compared to susceptible recombinant-inbred lines (RILs) segregating for the Stb4 and Stb8 genes for resistance. Therefore, analysis of gene expression could provide a faster method for separating resistant from susceptible lines in research programs. Significant differential expression patterns of the defense-related genes between the resistant and susceptible wheat cultivars and RILs after inoculation with M. graminicola suggest that these genes may play a major role in the resistance mechanisms of wheat.  相似文献   

14.
经鉴定球茎大麦Hordeum bulbosum L.(苏联球茎大麦和匈牙利球茎大麦,4×)对NCMV、BYMV和WYMV免疫,不感染禾谷多粘霉Polymyxa glaminis Led.。用中国春小麦Triticum aestivum Var.Chinese spring(6X)与苏联球茎大麦杂交,已获得抗病品系。鉴定出簇毛麦、偏凸山羊草和粗厚山羊对BYMV和WYMV免疫,不感或抗禾谷多粘霉。这些野生种质资源的抗病基因已转移到小麦上.  相似文献   

15.
Compared with natural seed dispersal, human‐mediated seed dispersal could spread herbicide resistance genes on a much larger scale. Herbicide‐resistant weed seeds have been reported as contaminants in commercial grain. We investigated the contamination of seeds of Lolium species with target‐site mutations conferring resistance to acetolactate synthase (ALS)‐inhibiting herbicides in wheat imported from the USA, Canada and Australia into Japan. We also investigated the establishment of ALS‐inhibiting herbicide‐resistant Lolium species in 12 seaports in Japan that are major entry points for international commodities. We found herbicide‐resistant Lolium spp. seeds from all classes of wheat samples. Resistant individuals became established at six of eight ports where more than 50 kt of imported wheat is unloaded every year. The establishment of resistant Lolium spp. individuals was common at major grain landing ports. Monitoring over 3 years at one port revealed that the frequency of resistant individuals did not fluctuate between years. Many resistant individuals were distributed in front of the entrance of a fodder company, but a few resistant individuals were found in areas 2 km away from the port. The results indicate that gene flow is rare through pollen or seed movement from resistant plants to peripheral populations. Further extensive and long‐term monitoring is necessary to perform a comprehensive risk assessment of herbicide‐resistant plants entering Japan through major commercial ports.  相似文献   

16.
小麦条锈病抗病遗传及菌源基地基因布局研究进展   总被引:2,自引:0,他引:2  
小麦条锈病是世界范围内严重影响小麦生产安全的重要病害。我国是世界上最大的小麦条锈病流行区,自成独立的流行体系。培育和种植抗病品种是防治病害最有效的措施。然而,小麦品种对条锈病的抗性常常由于病菌新小种的产生而丧失,这既是一个重大科学问题,也是一个亟待研究解决的生产实际问题。如何有效、合理地利用小麦的抗病性,植病学家和育种学家进行了一个多世纪的研究与探索,提出了各种理论与策略,开展了各种实践与探索。该文就小麦抗条锈病遗传及其基因布局研究进展进行综述,主要包括抗性鉴定评价、抗病基因发掘与利用、数量抗性位点定位、抗病基因克隆与功能解析、近等基因系创建与应用,以及抗源创制、抗病生态育种和大区基因布局等,并对深入开展抗条锈病基因发掘与利用和大区基因布局进行展望,以期为抗病育种和病害持续治理提供参考。  相似文献   

17.
兼抗麦长管蚜和大麦黄矮病毒的小麦种质田间鉴定筛选   总被引:1,自引:1,他引:0  
为鉴定筛选兼抗麦长管蚜和大麦黄矮病毒(Barley yellow dwarf virus, BYDV)的小麦种质,采用自然感蚜/感病系数法,对36个外引和远缘杂交选育的小麦种质材料进行了2年的田间鉴定,并分析了感虫性与感病性的相关关系。结果表明,2年中均兼抗麦长管蚜和BYDV的种质仅有KOKIPPCAS、KOK、Amigo-3和PI137739共4个材料,占总鉴定材料的11.11%;对二者均敏感的有98-10-35q-9、186Tm39、Tam200e12-14a、Tam200(27)7、小偃22、西农1376和小偃6号共7个材料,占19.44%。其它材料仅抗虫或仅抗病,或仅在一年中表现抗病或抗虫,如材料98-10-30和98-10-35a8抗麦长管蚜,但对BYDV敏感;材料Tam200(13)G和PIG23(2)C感蚜,但对BYDV有抑制作用。BYDV发生普遍率(发病株率)和严重度(病情指数)与有蚜株率显著相关,严重度还与感蚜指数显著相关,但感病植株的病级均值与有蚜株率无显著相关性。表明自然界长期的进化和选择使许多抗病虫基因得以保存下来,但较多抗性基因只在抗病或抗虫的某一方面表现有效,需给予更多关注。  相似文献   

18.
为调查西南地区小麦条锈病抗性、抗病基因位点及其组合多样性,于2013—2014年对以西南地区为主的140份小麦品种(系)进行了成株期、苗期抗病性鉴定和抗病基因标记扫描。成株期鉴定结果显示,2013年贵阳、赫章试验点和2014年贵阳、绵阳试验点都表现为抗病的品种(系)共有50份,其中表现为全生育期抗性的有37份,表现为成株期抗性的有13份;5个抗病基因Yr9、Yr10、Yr15、Yr18、Yr26的分子标记检测结果显示,西南地区小麦Yr26的使用频率最高,为41.4%,Yr9次之为37.9%,Yr10、Yr15、Yr18使用频率较低;抗条锈病基因的组合分析显示,共出现16份基因聚合品种、7种组合类型,其中组合Yr9+Yr26出现频率较高,为5%。表明西南地区的小麦品种(系)以利用全生育期抗性为主,且抗条锈病基因利用较为单一,应发掘和利用新抗条锈病基因及重视多基因的聚合。  相似文献   

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