首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到18条相似文献,搜索用时 187 毫秒
1.
以硬粒小麦-粗山羊草人工合成小麦CI184、感病品种‘铭贤169’及其杂交组合的正反交F1以及CI184/‘铭贤169’F2、F2:3家系为材料,鉴定其条锈病抗性,对CI184条锈病抗性进行遗传分析;采用SSR分子标记技术和集群分离分析法进行多态性筛选,以F3抗病鉴定数据为依据,对CI184中条锈病抗性基因进行分子标记定位。结果显示:(1)CI184在苗期抗性鉴定中,对30种小麦条锈菌生理小种表现抗性,但对中国四川新出现的条锈菌生理小种V26表现苗期感病;在田间成株抗性接种鉴定中,CI184对中国流行的小麦条锈菌生理小种条中32、条中33、水源4、水源5、水源7和V26等表现出成株抗性。(2)CI184中条锈病抗性由隐性基因位点控制。(3)仅检测到一个控制条锈病抗性的QTL位点,位于1B染色体上Xgwm18和Xwmc626之间,暂时命名为Qyr.zz_1B,在四川和北京2个环境中可分别解释CI184中13.36%和18.07%的成株抗性贡献率。(4)Qyr.zz_1B位点的3个SSR标记和Yr15的1个SSR标记可以区分该位点与1B染色体上的其他抗条锈病基因,如Yr15、Yr24和Yr26/YrCH42。表明Qyr.zz_1B位点在小麦条锈病的抗病育种中具有潜在的应用价值。  相似文献   

2.
摘要:小麦叶锈病是小麦生产中的重要病害,培育持久抗叶锈性品种可以有效、经济地控制该病害。本文通过基因推导、分子检测结合系谱分析成株抗性鉴定对小麦重要生产品种中抗病基因进行分析,从而确定小麦品种中所携带的抗病基因。本试验用20个不同毒力的叶锈菌菌系、36个已知抗叶锈基因载体品种以及感病对照品种郑州5389对供试品种莱州137进行苗期抗叶锈病基因推导分析,并分别用12个与抗叶锈病基因连锁的分子标记进行目的基因的分子检测,同时利用系谱分析法来验证莱州137所携带的已知抗叶锈病基因;在2014-2015年度和2015-2016年度将莱州137、慢锈性对照品种SAAR和感病对照品种郑州5389种植于河北农业大学小麦试验田和河南周口黄泛区农场试验田,用田间混合生理小种(FHRT、THTT、THJT)接种进行成株期抗病性鉴定。结果表明,通过苗期基因推导分析,莱州137对小种FGBQ、PGJQ、TGTT、THSM、PHGM、PHST、FHJS、FHGQ、FNTQ、PRSQ和KHGQ表现抗病,而Lr26对FGBQ、PGJQ和TGTT高抗,Lr10和Lr14b分别对小种THSM、PHGM和PHST、PHGM、THTT表现高抗,同时系谱分析和分子检测也验证已知抗叶锈基因Lr26和Lr10,因此在供试品种莱州137中鉴定出Lr26、Lr10、Lr14b以及未知的抗叶锈病基因;根据2年2点的田间抗叶锈病鉴定,莱州137表现出成株抗性特点,且经分子标记检测该品种中未含有Lr34和Lr46,故小麦品种莱州137中含有未知的成株抗叶锈性基因,可作为新的小麦叶锈病抗源加以利用。  相似文献   

3.
山东省12个主栽小麦品种(系)抗叶锈性分析   总被引:1,自引:0,他引:1  
本研究旨在明确山东省12个小麦主栽品种(系)抗叶锈性及抗叶锈基因,为小麦品种推广与合理布局、叶锈病防治及抗病育种提供依据。利用2015年采自山东省的5个小麦叶锈菌流行小种的混合小种对这些材料进行苗期抗性鉴定,然后选用15个小麦叶锈菌生理小种对这些品种(系)进行苗期基因推导,并利用与24个小麦抗叶锈基因紧密连锁(或共分离)的30个分子标记对其进行抗叶锈基因分子检测。结果显示,山东省12个主栽小麦品种(系)苗期对该省2015年的5个小麦叶锈菌混合流行小种均表现高度感病。通过基因推导与分子检测发现,济南17含有Lr16,矮抗58和山农20含有Lr26,其余济麦系列、烟农系列、良星系列等9个品种(系)均未检测到所供试标记片段。此外,本研究还对山东省3个非主栽品种进行了检测,结果发现,中麦175含有抗叶锈基因Lr1和Lr37,含有成株抗性基因;皖麦38只检测到Lr26,济麦20未检测到所供试标记片段。综合以上结果,山东省主栽小麦品种(系)所含抗叶锈基因丰富度较低,尤其不含有对我国小麦叶锈菌流行小种有效的抗锈基因,应该引起高度重视,今后育种工作应注重引入其他抗叶锈基因,提高抗叶锈性。  相似文献   

4.
2003-2013年小麦品种(系)抗条锈性鉴定及评价   总被引:3,自引:0,他引:3  
2003-2013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,分别对来自国内35个相关育种单位的冬春小麦品种(系)5001份,其中冬小麦4291份、春小麦710份,进行苗期混合菌、成株期分小种和混合菌抗条锈性接种鉴定,结果表明:全生育期表现免疫近免疫的有兰天31号等479份,高抗的有兰天23号等76份,中抗的有天选49等291份,分别占9.58%、1.52%和5.82%;成株期表现免疫近免疫的有天选50号等840份,高抗的有兰天27号等47份,中抗的有天选52等311份,分别占16.80%、0.94%和6.22%;苗期表现免疫近免疫的有兰天30号等964份,高抗的有天98102等122份,中抗的有00-30等273份,分别占19.28%、2.44%和5.46%.冬小麦有天选49号等914份材料表现全生育期抗病,占18.28%;有97-473等906份成株期表现抗病,占18.12%;有兰天20号等1225份苗期表现抗病,占24.50%.春小麦有定西41号等113份材料全生育期表现抗病,占2.26%;有陇春28号等125份成株期表现抗病,占2.50%;有0109-1等114份苗期对混合菌表现抗病,占2.28%.先后在甘肃天水汪川良种场对相关材料进行成株期抗条锈性评价,结果发现:1154份从小种圃筛选出的抗病材料中,表现抗病的有兰天31号等745份,占64.56%;105份甘肃陇南生产品种中,到2013年表现抗病的仅有兰天28号、中梁31号等30份材料,占28.57%;后备品系中,00-30-2-1、CP04-20、00127-2-3等抗性表现优异;抗源材料中,仅有贵农775、中四、T.Spelta albun、贵协1、贵协3等少数材料表现抗病,重要抗源材料贵农21、贵农22、南农92R、川麦42、Moro从2011年开始在田间表现感病,逐步失去利用价值.其衍生系品种材料如陇鉴9343、天选43号、中梁29号、兰天17号、兰天24号等也在田间逐步感病,条锈病发生流行压力持续增大.  相似文献   

5.
本文对7个小麦-簇毛麦易住系种质V9128-1、V9128-3、V9129-1、V3、V4、V5、V12的抗条锈性进行遗传研究。用小麦条锈菌对供试材料苗期接种鉴定表明,7个易位系的抗病谱存在着明显的差异,据基因推导原理和系谱分析,可初步推测这7个易位系所包含的抗条锈基因不尽相同。进而对两个抗病谱较宽的易住系的抗条锈性进行了遗传分析。结果表明:小麦.簇毛麦易位系V9128-1对条锈菌CY30的抗条锈性由一对显性基因控制,小麦-簇毛麦易位系V3对条锈菌CY31的抗条锈基因由一显一隐2对基因控制。揭示了小麦.簇毛麦易位系抗条锈性为寡基因控制,为尽快利用这些宝贵抗病基因,培育小麦抗锈品种提供了科学依据。  相似文献   

6.
小麦品种贵农22号抗条锈基因遗传分析   总被引:7,自引:0,他引:7  
贵农22号是利用簇毛麦(Haynaldia villosa)、硬粒小麦(Triticum durum)及普通小麦(Triticum aestuvum)杂交而育成的普通小麦品种,其抗中国目前流行和出现的条锈菌小种,已成为目前重要的抗小麦条锈病抗源。为了明确该品种抗锈遗传规律并进行应用前景评价,用一个流行的强毒性小种条中31号和一个突变弱毒性小种CY29-mut3,分别接种贵农22与国际已知抗锈基因品种Moro及感病品种辉县红双列杂交F2、F2代各株系幼苗,对贵农22号进行了抗锈性遗传分析,以便于在抗病育种中进一步应用。研究结果表明,贵农22号有三对独立遗传的抗条锈基因,暂定名为YrGui 1、YrGui 2和YrGui 3,它们表达稳定,不受亲本正反交影响,而并不具有Yr 10。Yr10基因载体品种Moto中有二或四对基因抗中国不同的条锈菌小种,不同小种及正反交对基因的表达有影响,为父本时其对CY29-mut3小种有两对完全显性基因、一对中度抗病基因及一对隐性抗病基因,而为母本时有一对完全显性基因和一对中度抗病基因起抗病作用;对条中31号,其为父本时有一对显性基因和一对隐性基因,为母本时可能存在两对累加作用基因或两对隐性抗病基因控制抗痫作用。  相似文献   

7.
小麦新抗源贵农775抗条锈性特征与遗传分析   总被引:1,自引:0,他引:1  
韩德俊  王宁  江峥  王琪琳  王晓杰  康振生 《遗传》2012,(12):1607-1613
发掘并利用不同类型抗条锈病基因,构建区域间抗病基因多样性差异布局,是阻遏条锈菌大区域传播、实现小麦条锈病持续控制的重要策略。为了明确小麦新抗源贵农775抗条锈性特征和抗性遗传规律,为其合理布局应用提供依据,文章利用10个条锈菌菌系进行苗期分小种鉴定;构建贵农775与感病品种Avocet(S)杂交后代F2:3及回交BC1遗传群体,利用小麦条锈菌流行小种CYR32和最近发现的对Yr26基因有毒性的新致病类型CH42,对贵农775进行抗条锈性遗传分析。结果表明,贵农775对包括CH42致病类型在内的所有10个供试菌系均表现为免疫或近免疫的抗病性反应,而中国当前主要条锈病抗源品种92R137、川麦42(YrCH42)、贵农22(YrGN22)及Yr24等均不抗CH42;抗病遗传分析结果表明,贵农775对小麦条锈菌小种CYR32和CH42的抗性分别由一对显性核基因控制,并且为不同的小种专化抗性基因。  相似文献   

8.
1994 - 2002年小麦品种(系)抗条锈性鉴定与监测   总被引:10,自引:0,他引:10  
1994—2002年经对3822份小麦品种(系)材料抗条锈性鉴定结果表明,冬小麦抗条锈性优于春小麦,甘肃品种抗条锈性优于国内其它省区品种。田间抗条锈性监测结果表明,我国主要生产品种均表现感病,甘肃主要生产品种仅陇鉴127等少数几个品种抗病,抗源材料中也仅有中四等少数品种表现抗病,结合抗病性鉴定、监测结果及田间综合农艺性状观察,筛选出20余份可供育种利用的抗源材料。同时在针对今后抗条中31、32号等主要小种类型的抗病育种、抗病性监测等方面进行了讨论。  相似文献   

9.
为了明确河南省小麦品种的抗叶锈性及抗叶锈基因的分布,为小麦品种推广与合理布局、叶锈病防治及抗病育种提供依据,本研究利用2015年采自河南省的5个小麦叶锈菌流行小种混合菌株,对近几年河南省16个主栽小麦品种进行了苗期抗性鉴定,然后选用12个小麦叶锈菌生理小种对这些品种进行苗期基因推导,同时利用与24个小麦抗叶锈基因紧密连锁(或共分离)的30个分子标记对该16个品种进行了抗叶锈基因分子检测。结果显示,供试品种苗期对小麦叶锈菌混合流行小种均表现高度感病;基因推导与分子检测结果表明,供试品种可能含有Lr1、Lr16、Lr26和Lr30这4个抗叶锈基因,其中先麦8号含有Lr1和Lr26;郑麦366和郑麦9023含有Lr1;西农979和怀川916含有Lr16;中麦895、偃展4110、郑麦7698、平安8号、众麦1号、周麦16、衡观35和矮抗58含有Lr26;周麦22中含有Lr26,还可能含有Lr1和Lr30;豫麦49-198和洛麦23可能含有本研究中检测以外的其他抗叶锈基因。因此,河南省主栽小麦品种的抗叶锈基因丰富度较低,今后育种工作应注重引入其他抗叶锈性基因,提高抗叶锈性,有效控制小麦叶锈病。  相似文献   

10.
西科麦2028是地理远缘小麦材料的杂交后代,具有突出的抗条锈病性能。为了解西科麦2028对小麦条锈病的抗性遗传规律,以西科麦2028和铭贤169的杂交群体为研究对象,采用我国目前小麦条锈菌流行小种CYR31、CYR32、CYR33、Su11-4对供试群体进行成株期接种,分析杂交后代的抗病性及分布情况。结果表明:西科麦2028对CYR31的抗病性由3对显性基因控制;对CYR32由2对显性和1对隐性基因控制;对CYR33由1对显性基因控制;对Su11-4由1对显性和1对隐性基因控制。  相似文献   

11.
Leaf rust is an important disease, threatening wheat production annually. Identification of resistance genes or QTLs for effective field resistance could greatly enhance our ability to breed durably resistant varieties. We applied a genome wide association study (GWAS) approach to identify resistance genes or QTLs in 338 spring wheat breeding lines from public and private sectors that were predominately developed in the Americas. A total of 46 QTLs were identified for field and seedling traits and approximately 20–30 confer field resistance in varying degrees. The 10 QTLs accounting for the most variation in field resistance explained 26–30% of the total variation (depending on traits: percent severity, coefficient of infection or response type). Similarly, the 10 QTLs accounting for most of the variation in seedling resistance to different races explained 24–34% of the variation, after correcting for population structure. Two potentially novel QTLs (QLr.umn-1AL, QLr.umn-4AS) were identified. Identification of novel genes or QTLs and validation of previously identified genes or QTLs for seedling and especially adult plant resistance will enhance understanding of leaf rust resistance and assist breeding for resistant wheat varieties. We also developed computer programs to automate field and seedling rust phenotype data conversions. This is the first GWAS study of leaf rust resistance in elite wheat breeding lines genotyped with high density 90K SNP arrays.  相似文献   

12.
Stripe rust (yellow rust), caused by Puccinia striiformis f.sp. tritici (Pst), is a serious disease of wheat worldwide, including China. Growing resistant cultivars is the most cost‐effective and environmentally friendly approach to control the disease. To assess the stripe rust resistance in commercial wheat cultivars and advanced lines in the Yellow and Huai River Valley Wheat Region, 115 wheat cultivars (lines) collected from 13 provinces in this region were evaluated with the most prevalent Chinese Pst races CYR32, CYR33 and the new race V26 at seedling stage. In addition, these wheat entries were inoculated with the mixed races of CYR32 and CYR33 at the adult‐plant stage in the field. The results indicated that 53 (46.1%) cultivars (lines) had all‐stage resistance to all the three races, and 16 (13.9%) cultivars (lines) showed adult‐plant resistance. The possible stripe rust resistance genes in these entries were postulated by the closely linked markers of all‐stage resistance genes Yr5, Yr9, Yr10, Yr15 and Yr26 and adult‐plant resistance gene Yr18. Molecular analysis indicated that resistance genes Yr5, Yr9, Yr10, Yr18 and Yr26 were found in 5 (4.3%), 38 (33.0%), 1 (0.9%), 2 (1.7%) and 8 (7.0%) entries, respectively. No entry was found to carry the Yr15 gene. In future breeding programs, Yr5, Yr15 and Yr18 should be used to pyramid with other effective genes to develop wheat cultivars with high‐level and durable resistance to stripe rust, whereas Yr9, Yr10 and Yr26 should not be used or used in a limited way due to the virulent races present in China.  相似文献   

13.
小麦种质对麦长管蚜的抗性鉴定与评价   总被引:11,自引:0,他引:11  
2002-2005年连续4年,选用蚜情指数法对小麦种质进行麦长管蚜田间自然感蚜抗性鉴定,从2000份小麦种质中筛选出不同抗性材料34份,占总鉴定材料的1.7%,其中高抗种质5份、抗性种质9份、中抗种质20份。利用苗期室内接虫法,对部分抗感小麦种质进行鉴定,结果表明,苗期的抗性表现与成株期基本一致。对杂交组合临远207(抗)×Witchita(感)的F1、F2的抗性遗传分析表明,临远207对麦长管蚜的抗性由1对显性单基因控制。  相似文献   

14.
To study genetically and evaluate resistance to yellow rust, 29 wheat advanced lines were evaluated in randomised complete blocks design with three replicates in seedling stage under greenhouse conditions using nine races 6E150A+, 198E150A+, 134E150A+, 6E158A+, 166E150A+, 198E130A+, 166E158A+, 230E158A+ and 70E0A+, separately. In the adult plant stage, the genotypes were evaluated in two regions of Iran, Zarghan and Gorgan. The components of resistance including latent period and infection type were recorded under greenhouse conditions. Cluster analysis in all races showed that the genotypes 11, 28 and 29 were completely resistant to all races. Under Zarghan and Gorgan races, 27 and 73% of genotypes were resistant in the adult plant stage, respectively. Seven percent of genotypes were resistant in both stages, seedling and adult plant. All resistant lines can be used in plant breeding programme.  相似文献   

15.
为了发现具有兼抗多种病害的小麦种质,本研究采用田间病圃法和人工接种法,对28份人工合成小麦的禾谷孢囊线虫、纹枯病、条锈病和叶锈病进行了抗性鉴定。人工合成小麦对这些病害表现不同程度的抗性反应。C2和C20对鉴定的4种病害都具有抗性,C5、C10和C25对这些病害都表现感病。8份材料对Heterodera avenae和H. filipjevi两种病原线虫都表现抗性反应型,也有的材料只抗一种线虫。供试材料对纹枯病的抗性表现较好,其中19份材料表现抗性反应型。9份材料对接种的条锈菌小种CY30、CY31、CY32和CY33均表现抗性反应型,5份材料对叶锈菌小种THT和PHT都具抗性。  相似文献   

16.
The paper presents the results of a multi-year assessment of wheat resistance to yellow rust on an artificial infectious background in the field. The dynamics of the disease in the differentiatial varieties with identified resistance genes is studied. The formation of new races of the pathogen after its epiphytotics is revealed. The loss of resistance of certain genotypes that had “effective genes” and were resistant to the disease at the beginning of the experiment is registered. The adult plant resistance, which is of great importance in breeding of resistant varieties of wheat, is analyzed.  相似文献   

17.
Barley stripe rust caused by Puccinia striiformis f.sp. hordei (PSH) is one of the major diseases in barley production regions worldwide. A total of 336 barley genotypes with diverse genetic backgrounds targeted for low‐input barley production were tested for seedling and adult‐plant stage resistance against six PSH races (0S0, 0S0‐1, 1S0, 4S0, 5S0 and 7S0) originated from India. The seedling resistance was evaluated by inoculating the barley genotypes with six races separately under controlled conditions in Shimla, India. The same barley genotypes were evaluated for adult‐plant stage resistance in the Agricultural Research Station (ARS) of Rajasthan Agriculture University, Durgapura, Rajasthan, India. Out of the 336 barley genotypes tested for seedling resistance, 119 (35.4%), 101 (30.1%), 87 (25.9%), 100 (29.8%), 91 (27.1%) and 70 (20.8%) genotypes were resistant to races 0S0, 0S0‐1, 1S0, 4S0, 5S0 and 7S0, respectively. In the field, 102 (30.3%) genotypes showed the resistance response of which 18 (5.3%) genotypes were highly resistant to PSH. Barley genotypes AM‐14, AM‐177, AM‐37, AM‐120, AM‐300, AM‐36, AM‐103, AM‐189, AM‐291, AM‐275 and AM‐274 showed resistance response to all six races at seedling and adult‐plant stages. Seedling resistance reported in the current study is effective against the newly emerged race 7S0 and previously reported five races in India. Therefore, resistant barley genotypes identified in the current study provided effective protection against all six races at seedling and adult‐plant stages. The stripe rust resistance identified in the current studies may be potential donors of stripe rust resistance to barley breeding programmes in India and elsewhere.  相似文献   

18.
我国部分冬小麦品种籽粒硬度及其单籽粒频率的分布   总被引:2,自引:0,他引:2  
籽粒硬度是小麦重要的品质性状之一,主要影响磨粉品质和食品加工品质.用单籽粒谷物硬度测定仪对252份冬小麦品种(品系)的籽粒硬度及其单籽粒频率分布进行了分析,结果表明,品种按籽粒硬度分为三类5级,63份软质品种(系)中,5级和4级占95.2%,3级为4.8%;31份混合品种(系)中,3级占93.6%,4级和2级各3.2%;148份硬质品种(系)以1级为主,占92.4%,2级为7.6%.籽粒硬度变幅为12~104,标准差12~29.各种硬度类型皆有,且不同麦区的品种差异较大,北部和黄淮麦区品种的硬度显著高于长江中下游和西南麦区,前者以硬质为主,后者分别以混合和软质类型为主.籽粒硬度的分类与不同硬度范围单籽粒频率分布及其硬度均值有关,软质麦硬度指数小于46的籽粒占75%~98%,大于47的籽粒为6%~36%,均值为14~40,标准差12~27;硬质麦硬度指数小于46的籽粒为1%~19%,大于47的籽粒为82%~100%,硬度均值为56~104,标准差12~20;混合麦硬度指数小于46和大于47的籽粒分别为26%~75%和23%~74%,硬度均值为32~63,标准差17~29.软质或硬质品种籽粒分布集中,一致性较好;混合型品种籽粒分布分散,一致性较差.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号