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1.
3个小麦条锈菌鉴别寄主的抗性遗传分析   总被引:2,自引:1,他引:1  
根据对鉴别寄主的毒性谱,选用小麦条锈病菌生理小种2E16单孢菌系为接种病菌,鉴定了小麦务锈病菌鉴别寄主Chinese166、HeinesⅦ和Vilmorin23的抗性基因构成及其遗传特征。通过对3个鉴别寄主与感病品种铭贤169杂交,分别在苗期鉴定了亲代、F1、F2、BC1及正反交后代对小种2E16的抗性反应。结果表明:供试品种Chinese166对生理小种2E16的抗性由二对显性基因,即显性基因Yr1和另一对显性基因独立或重叠控制;HeinesⅦ对生理小种2E16的抗性由一对显性基因Yr2和一对隐性基因控制;Vilmorin23对生理小种2E16的抗性则由显性基因Yr3和一对隐性基因控制。  相似文献   

2.
棉铃虫对转Bt基因棉的抗性筛选及遗传方式的研究   总被引:7,自引:0,他引:7  
通过室内筛选获得了棉铃虫Helicoverpa armigera (Hübner)对转Bt基因棉的抗性种群,并在此基础上进行了抗性遗传方式的研究。试验结果表明:经16代筛选,棉铃虫对转Bt基因棉的抗性倍数上升到43.3倍。筛选过程中,棉铃虫7日龄幼虫的体重和成虫羽化率变化明显,被选为确定筛选剂量的标准。敏感与抗性棉铃虫杂交,正交、反交的显性度都小于0、杂交过程中雌雄性比基本接近1∶1、假设抗性基因为单基因时的χ2值较低,因此,初步认为棉铃虫对转Bt基因棉的抗性是常染色体单基因控制的不完全隐性遗传。  相似文献   

3.
国外水稻抗虫性的研究(下)   总被引:1,自引:1,他引:0  
<正> 三、抗性的遗传 对品种抗性遗传的研究,不仅能为当前的抗性育种提供科学依据,也是解决害虫“生物型”问题的钥匙。国际水稻所1971年开始研究品种对褐稻虱抗性的遗传,发现Mudgo、Co22的抗性由一对显性基因所控制,而ASD7的抗性则由一对隐性基因所控制。这些基因分别被定为Bph,和bph_2,二者紧密连锁,从未发现有重组现象。以后又发现一对控制品种RathuHeenati抗性的显性基因与Bph_1独立分离,被定为Bph_3。控制品种Babawee的抗性是另一个与bph_2独立分离的隐性基因,这一基因被定为bph_4,随后还发现Bph_3和bph_4也是连锁的。Ptb21和Ptb33各有一对未知的显性抗虫基因和一对隐性抗虫基因。  相似文献   

4.
小麦籽粒抗性淀粉含量的分析   总被引:4,自引:0,他引:4  
选用3个抗性淀粉含量较高的小麦品种和3个抗性淀粉含量较低的小麦品种按Griffing双列杂交设计配置成15个杂交组合, 以亲本及F1为材料进行了小麦籽粒抗性淀粉含量的遗传规律分析, 旨在为高抗性淀粉含量且综合性状优良的新型保健小麦新品种(系)的选育提供理论依据。结果表明, 在6个小麦品种中, 安农90202和D68-20抗性淀粉含量的一般配合力较好, 能显著地提高杂种后代籽粒抗性淀粉含量。安农90202×04单28和06-5×D68-20组合的特殊配合力最好, 两者特殊配合力效应值显著地高于其他组合。小麦抗性淀粉含量的遗传符合加性-显性模型, 显性程度为超显性。控制抗性淀粉含量的增效等位基因表现为隐性, 且亲本中抗性淀粉含量的增减效等位基因的分布不平衡, 高抗性淀粉含量的亲本中隐性基因数量多于显性基因数量。实验中安农90202和04单28控制抗性淀粉含量的隐性基因较多,而宁春18和新春5号含有的显性基因数量较多。同时研究发现小麦抗性淀粉含量的狭义遗传力中等, 为36.49%。  相似文献   

5.
万文举  罗宽 《遗传》1979,1(3):19-22
二年间,对大量的杂交水稻组合进行了抗病性遗传分析。结果表明,杂交水稻对稻瘟病和白叶枯病 的抗性受细胞核基因控制。抗病性在F:中的表现是:抗性显性、抗性隐性、中间类型(部分显性),以及 出现双亲所没有的新类型。为了获得更多的抗病的杂交水稻F:,我们认为有必要将抗病性导入不育系 中去,以克服当前不育系抗性较差的缺点。  相似文献   

6.
怎样分析人类中某一性状是由一对完全显性的常染色体基因所控制。要解决这个问题,首先要证明 Snyder 公式。即在一个大的随机婚配的群体中,如果基因 A 对 a 为完全显性;基因 A 的频率为 p,a 的频率为 q,则在显性个体与显性个体的婚配中,子代中隐性个体数与子代个体总数之比为(q/(1+q))~2,在显性个体与隐性个体的婚配中,子代中隐性个体数与子代个体总数之比为 q/(1+q)。证明:因为在一个大的随机婚配的群体中,个体基因型 A A、Aa、aa 的频率则分别为p~2、2pq、q~2,群体中个体间婚配频率及子代基因型频率如下表:  相似文献   

7.
被动迁移在抗性进化中的作用   总被引:1,自引:0,他引:1  
为了明确迁移和基因交流在杀虫剂抗性基因进化中的作用,我们从四个不同的地区采集有机磷抗性的库蚊野生种群,利用淀粉电泳鉴定了各种群中存在的已知过量产生酯酶的分布频率,并通过5个假定的中性位点的电泳多态性分析了种群间的遗传多样性。结果表明种群间的基因交流是存在的,遗传分化与地理位置存在一定关系,而抗性等位基因A2一B2的分布却与种群间的遗传分化不一致。对这种差异的解释是:被动迁移(铁路运输等)加速了抗性基因的交流,而当抗性基因以自然迁飞的方式向周围地区扩散时,却是一个相对缓慢的过程。  相似文献   

8.
小偃6号小麦旗叶直立基因的染色体定位   总被引:2,自引:0,他引:2  
本文首次对小麦旗叶姿态进行了比较系统的细胞遗传学研究。单体、端体的F_1及F_2分析表明:中国春2D染色体上至少有两个旗叶下披基因,即位于2DL上的P_1和2DS上的P_2,前者表达能力很强,后者则较弱,与小偃6号旗叶直立基因共存时分别表现为显性和隐性;小偃6号的旗叶直立基因E也位于2D染色体上,同(P_1+P_2)共存时表现为隐性,仅与P_2共存时则表现为显性。文章还就这些基因的染色体操作等进行了讨论。  相似文献   

9.
大麦黄花叶病严重度的遗传分析   总被引:1,自引:0,他引:1  
本文就大麦黄花叶病(BYMV)的抗性进行了遗传分析。研究表明,在本研究中,大麦黄花叶病抗性表现为多基因控制的数量性状,符合“加性-显性”遗传模型,但主要受加性效应控制。回归分析与平均显性度((H_1/D)~(1/2))测定均表明为部分显性。且控制BYMV的严重度的显性基因数约为3—6组。遗传力估算较高。最后就实验结果对BYMV抗性育种进行了初步分析讨论。  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.
Detection and monitoring of insect resistance to transgenic Bt crops   总被引:5,自引:0,他引:5  
Transgenic crops expressing Bacillus thuringiensis (Bt) endotoxins havebecome one of the most important tools for managing corn and cotton insect pests in the US and other countries. The widespread adoption of transgenic Bt crops could place a high degree of selection pressure on the target insect populations and accelerate development of resistance, raising concerns about the long-term durability of Bt plants as an effective pest management tool. Conservation of Bt susceptibility in insects has become one of the most active research areas in modern agriculture. One of the key factors for a successful Bt resistance management plan is to have a cost-effective monitoring system that can provide information on. (i) the initial Bt resistance allele frequencies at low levels in field insect populations; and (ii) early shifts in Bt resistance allele frequencies so that proactive measures for managing resistance can be deployed well before field control failures. Developing such a monitoring program has been difficult because: (i) resistance traits that occur at very low frequencies are hard to detect; (ii) many factors affect the sensitivity and accuracy of a Bt resistance monitoring program; and (iii) monitoring resistance is costly. Several novel methods for detecting Bt resistance alleles developed during the last decade have made a cost-effective monitoring system possible. Future studies should focus on how to improve and standardize the methodologies for insect sampling and Bt resistance detection.  相似文献   

12.
华北地区棉铃虫对转Bt基因抗虫棉抗性适应的模拟模型   总被引:2,自引:3,他引:2  
通过对华北地区耕作制度和生态系统的了解,在充分考虑种群遗传学、生物学和人为操纵因子等三大因素的基础上,建立了一个预测棉铃虫对转Bt基因抗虫棉抗性适应的模拟模型。在华北地区典型的耕作制度下,如果所有棉田均为Bt棉,则Bt棉的预期寿命为7年;如果只有春播棉为Bt棉(约占棉田总面积的70%),则其寿命为10年。模型的灵敏度分析表明, Bt棉的使用寿命随抗性基因的显性度、初始抗性频率、Bt棉所占比例等因素的增长而迅速缩短。当Bt棉表达的杀虫蛋白量恰好全部杀死敏感基因型(GSGS)个体时,Bt棉的预期寿命最短。由于国外采用的“高剂量/庇护所”抗性治理策略不适用于棉铃虫及华北棉区的耕作制度,我国需要加强对其它抗性治理措施(如转双基因抗虫棉)的研究与应用。  相似文献   

13.
Cotton bollworm (Helicoverpa armigera) is one of the most serious insect pests of cotton. Transgenic cotton expressing Cry toxins derived from a soil bacterium, Bacillus thuringiensis (Bt), has been produced to target this pest. Bt cotton has been widely planted around the world, and this has resulted in efficient control of bollworm populations with reduced use of synthetic insecticides. However, evolution of resistance by this pest threatens the continued success of Bt cotton. To date, no field populations of bollworm have evolved significant levels of resistance; however, several laboratory-selected Cry-resistant strains of H. armigera have been obtained, which suggests that bollworm has the capacity to evolve resistance to Bt. The development of resistance to Bt is of great concern, and there is a vast body of research in this area aimed at ensuring the continued success of Bt cotton. Here, we review studies on the evolution of Bt resistance in H. armigera, focusing on the biochemical and molecular basis of Bt resistance. We also discuss resistance management strategies, and monitoring programs implemented in China, Australia, and India.  相似文献   

14.
Transgenic maize [Zea mays L. (Poaceae)] expressing Bacillus thuringiensis proteins (Bt maize) has become the most important tool for managing stalk borers in maize in the USA. The current strategy for delaying the evolution of resistance in target insects for Bt maize is referred to as high dose/refuge strategy. A key requirement of the strategy is that initial resistance allele frequencies in field insect populations are low (e.g., <0.001). More than 200 iso‐line families of the southwestern corn borer, Diatraea grandiosella Dyar (Lepidoptera: Crambidae), a major target stalk borer pest of Bt maize, were developed from Louisiana populations and evaluated for Bt resistance using a modified F2 screening method during 2005. No major resistance alleles were detected in these populations. The results showed that the expected Bt resistance allele frequency in the Louisiana populations was <0.0035 with 95% probability and a detection power of 83.9 ± 0.6%. The F2 screen indicates that Bt resistance allele frequencies in D. grandiosella are low among the Louisiana populations and should meet the rare resistance allele requirement of the ‘high dose/refuge’ strategy.  相似文献   

15.
Bt crop pyramids produce two or more Bt proteins active to broaden the spectrum of action and to delay the development of resistance in exposed insect populations. The cross‐resistance between Bt toxins is a vital restriction factor for Bt crop pyramids, which may reduce the effect of pyramid strategy. In this review, the status of the cross‐resistance among more than 20 Bt toxins that are most commonly used against 13 insect pests was analyzed. The potential mechanisms of cross‐resistance are discussed. The corresponding measures, including pyramid RNA interference and Bt toxin, “high dose/refuge,” and so on are advised to be taken for adopting the pyramided strategy to delay the Bt evolution of resistance and control the target pest insect.  相似文献   

16.
Three-domain Cry toxins from the bacterium Bacillus thuringiensis (Bt) are increasingly used in agriculture to replace chemical insecticides in pest control. Most chemical insecticides kill pest insects swiftly, but are also toxic to beneficial insects and other species in the agroecosystem. Cry toxins enjoy the advantages of high selectivity and the possibility of the application by sprays or transgenic plants. However, these benefits are offset by the limited host range and the evolution of resistance to Bt toxins by insect pests. Understanding how Bt toxins kill insects will help to understand the nature of both problems. The recent realization that ABC transporters play a central role in the killing mechanism will play an important role in devising solutions.  相似文献   

17.
转基因抗虫棉花和玉米自1996年商业化种植以来,已取得显著的经济、生态和社会效益。与其相关的生态安全性,特别是其对非靶标生物的影响及靶标害虫的抗性监测和治理已成为人们普遍关注的话题。本文在大量室内和田间评价工作的基础上,系统综述了国内外研究在该领域内取得的进展。结果表明: 由于Bt棉田和玉米田杀虫剂用量的减少,某些对Bt杀虫蛋白不敏感的非靶标植食害虫种群有上升的趋势; 现阶段生产上推广种植的Bt棉花和玉米花粉对家蚕、柞蚕和蜜蜂等经济昆虫以及帝王斑蝶是安全的。杀虫剂用量的减少,降低了对天敌的杀伤力,Bt田中捕食性天敌的种类和数量均显著高于常规施药田; 但Bt田内靶标害虫数量的减少和质量的降低,在一定程度上影响了寄生性天敌的种类和数量。Bt棉花和玉米的大面积种植对农田生态系统节肢动物群落结构无明显不利影响。靶标害虫田间抗性监测结果表明,无论在以大农场单一种植经营为主的发达国家如美国或澳大利亚,还是在以小农经营为主的多种寄主作物小规模交叉混合种植模式的发展中国家如中国或印度,田间并未出现10年前人们所关注和预测的靶标害虫种群抗性上升问题。究其原因,可能与发达国家严格执行了预防性的抗性治理对策及发展中国家独特的作物种植模式有关。尽管目前在田间尚未发现害虫对Bt作物产生抗性,但应用更多年份之后,害虫对Bt作物的抗性就很可能不是“是否”发生问题,而是“何时”发生的问题。因此,今后的研究重点应放在Bt棉花和玉米长期、大面积种植后,其对非靶标生物及靶标害虫抗性发展影响的长期生态效应上。  相似文献   

18.
Helicoverpa zea (Boddie), the bollworm or corn earworm, is the most important lepidopteran pest of Bt cotton in the United States. Corn is the preferred host, but the insect feeds on most flowering crops and wild host plants. As a cotton pest, bollworm has been closely linked to the insecticide-resistance prone Heliothis virescens (F.), tobacco budworm. Immature stages of the two species are difficult to separate in field environments. Tobacco budworm is very susceptible to most Bt toxins, and Bt cotton is considered to be "high dose." Bollworm is less susceptible to Bt toxins, and Bt cotton is not "high dose" for this pest. Bt cotton is routinely sprayed with traditional insecticides for bollworm control. Assays of bollworm field populations for susceptibility to Bt toxins expressed in Bt cotton have produced variable results since pre-deployment of Bt cottons in 1988 and 1992. Analyses of assay response trends have been used by others to suggest that field resistance has evolved to Bt toxins in bollworm, but disagreement exists on definitions of field resistance and confidence of variable assay results to project changes in susceptibility of field populations. Given historical variability in bollworm response to Bt toxins, erratic field control requiring supplemental insecticides since early field testing of Bt cottons, and dramatic increases in corn acreage in cotton growing areas of the Southern US, continued vigilance and concern for resistance evolution are warranted.  相似文献   

19.
The sensitivities of a model simulating the evolution of resistance in Helicoverpa zea to Bt toxins in transgenic crops were investigated by examining effects of each of the model parameters on the frequency of resistance alleles after 8 yr. The functional dominance of resistance alleles and the initial frequency of those alleles had a major impact on resistance evolution. The survival of susceptible insects on the transgenic crops and the population dynamics of the insect, driven by winter survival and reproductive rates, were also important. In addition, agricultural practices including the proportion of the acreage planted to corn, and the larval threshold for spraying cotton fields affected the R-allele frequency. Many of these important parameters are inherently variable or cannot be measured with accuracy, so model output cannot be interpreted as being a forecast. However, this analysis is useful in focusing empirical research on those aspects of the insects' life system that have the largest effects on resistance development, and indicates ways in which to improve products and agricultural practices to increase the expected time to resistance. The model can thus be used as a scientific basis for devising a robust resistance management strategy for Bt crops.  相似文献   

20.
F1代法监测田间棉铃虫对转Bt基因棉的抗性   总被引:3,自引:0,他引:3  
采用表达单价Cry1Ac毒素的转Bt基因棉棉叶喂饲法比较了棉铃虫Helicoverpa armigera(Hübner)抗、感亲本及正反交后代在Bt棉上5 d的发育速率,确定棉铃虫在Bt棉上5 d发育到2龄中期以上、体重≥0.6 mg的个体作为判别抗性纯合子的标准。2006年采用F1代法在室内用Bt棉叶喂饲法检测河北省邱县Bt棉田棉铃虫对Bt棉的抗性等位基因频率。结果表明,127头田间雄虫中24头携带抗性基因,估测抗性等位基因频率为0.94(95%CI:0.044~0.145),该值为在国内首次检测到的高抗性等位基因频率。该地区长期大面积种植转单价Bt棉和缺少非Bt棉作为有效庇护区导致田间抗性快速进化,需要尽快采取有效的抗性治理策略。本文还讨论了影响大田产生抗性的因素以及田间存在的抗性风险等。  相似文献   

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