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191.
CIMMYT新型人工合成小麦Pina和Pinb基因等位变异   总被引:4,自引:0,他引:4  
六倍体人工合成小麦由硬粒小麦(Triticum turgidum subsp. durum)与粗山羊草(Aegilops tauschii Coss.)杂交产生,是研究小麦进化过程中基因变异的重要材料。以国际玉米小麦改良中心(CIMMYT)提供的57份由野生二粒小麦(T. turgidum subsp. dicoccoides)与粗山羊草杂交产生的新型人工合成六倍体小麦为材料,用单籽粒特性测定仪和Pina、Pinb特异性PCR引物对其籽粒硬度变异以及控制籽粒硬度的主效基因Pina和Pinb的分布情况进行了研究。结果表明,这些材料的SKCS硬度值变异较大,从10.5到42.6,其中15~30的占78%。共有Pina-D1a、Pina-D1c、Pinb-D1h和Pinb-D1j 4种等位变异型,基因型为Pina-D1a/Pinb-D1j的8个,占14%;基因型为Pina-D1c/Pinb-D1h的49个,占86%。方差分析表明,基因型Pina-D1a/Pinb-D1j与Pina-D1c/Pinb-D1h对籽粒硬度的影响差异不显著,但父本粗山羊草和母本野生二粒小麦以及二者间的互作对籽粒硬度有显著影响,说明除Pina和Pinb外,还有其他微效基因影响籽粒硬度的形成。  相似文献   
192.
Aegilops triuncialis (UUCC) is an excellent source of resistance to various wheat diseases, including leaf rust. Leaf rust‐resistant derivatives from a cross of a highly susceptible Triticum aestivum cv.‘WL711’ as the recurrent parent and Ae. triuncialis Ace.3549 as the donor and with and without a pair of acrocentric chromosomes were used for molecular tagging. The use of a set of sequence tagged microsatellite (STMS) markers already mapped to different wheat chromosomes unequivocally indicated that STMS marker gwm368 of chromosome 4BS was tightly linked to the Ae. triuncialis leaf rust resistance gene transferred to wheat. The presence of the Ae. Triuncialis‐specific STMS gwm368 homoeoallele along with the non‐polymorphic 4BS allele in the rust‐resistant derivatives with and without the acrocentric chromosome indicates that the resistance has been transferred from the acrocentric chromosome to either the A or the D genome of wheat. This alien leaf rust resistance gene has been temporarily named as LrTr.  相似文献   
193.
粗山羊草抗小麦白粉病基因遗传多样性的研究   总被引:17,自引:0,他引:17  
孔令让  董玉琛 《作物学报》1997,23(2):176-180
粗山羊草(Ae.tauschii(Coss.)Schmal.)是普通小麦(T.aestivum L.)抗性改良的宝贵遗传资源。本研究对来自伊朗、前苏联等8个国家和地区的78份粗山羊草进行了小麦白粉病(powderymildew)混合菌种苗期接种鉴定,表现免疫或近免疫的有45份,占57.69%;用一套白粉病菌菌株(共16个)对原产地不同的11份粗山羊草分别进行苗期接种鉴定,结果表明除Y168表现感染外,其它10份材料表现出各自不同的抗性反应,只有来自伊朗的Y219、Y221、Y225和来自的苏联的Ae37能抗所有16个菌株,而没有感染的毒性菌株,说明它们可能含有新的不同于15个已知Pm基因的抗性基因。利用完全双列杂交对原产地不同的5份粗山羊草进行了苗期抗白粉病基因的遗传分析,出现3种不同的抗性基因类型,来自伊朗的3份材料表现单显性(PmA)或双显性(PmA、PmB)2种类型,而来自前苏联的2份材料表现出不同于前两种类型的另一种单显性(PmB)类型。从而为增加普通小麦抗白粉病基因的遗传多样性奠定了基础。  相似文献   
194.
All the 79 Aegilops tauschii Coss. accessions of Iranian origin from Prof. Kihara’s collection were analyzed electrophoretically. Of 23 enzyme-encoding loci studied, 11 were polymorphic. In Iran Ae. tauschii is presented by ssp. tauschii and ssp. strangulata which distinctly differ genetically, morphologically and ecologically. Variation patterns of low polymorphic locus Aco2 and highly polymorphic Ep are similar in both subspecies. In contrast, variation of Acph1, Ak, Est2, Est5, Got1, Got2, Got3 and Lap is a set of diverse patterns which markedly differ between subspecies and natural regions also, implying that natural selection is involved.  相似文献   
195.
Inheritance of genes for hairy auricles and hairy leaf sheath of Ae. tauschii in hexaploid wheat backgrounds (synthetic hexaploid wheat and common wheat varieties) was analyzed. The results indicated that hairy auricles and hairy leaf sheath of Ae. tauschii can be transferred and are expressed in hexaploid wheat. In a synthetic hexaploid wheat ('Ae. tauschii' 188) hairy auricles was proved to be controlled by a single dominant gene derived from Ae. tauschii, which was different from the Pa gene located on chromosome 4BS of common wheat. The hairy leaf sheath phenotype of 'Altar 84/Ae. tauschii 188' was also controlled by a single dominant gene derived from Ae. tauschii, which is obviously different from the Hls gene in T. dicoccoides. We suggest to designate the Ae. tauschii genes for hairy auricles and hairy leaf sheath as Pa2 and Hls2, respectively; such genes could be used as useful genetic markers in common wheat.  相似文献   
196.
Evaluation of Aegilops tauschii Cosson for preharvest sprouting tolerance   总被引:4,自引:0,他引:4  
On day 21, total germination percentages of threshed seeds of Ae. tauschii ranged from 0.0 to 92.6, indicating a large variation in preharvest sprouting tolerance. Out of 46 Ae. tauschii accessions, seven had a germination index lower than ten, which indicates good tolerance to preharvest sprouting and usefulness for common wheat (Triticum aestivum L.) improvement. The variety tauschii showed a germination percentage and a germination index much higher than that of var. strangulata. Furthermore, the tough and tenacious glumes of Ae. tauschii also had an effect on tolerance to preharvest sprouting.  相似文献   
197.
冬小麦田恶性杂草节节麦的国内研究进展   总被引:4,自引:1,他引:3  
为给节节麦的研究提供帮助,通过现有资料的分析整理,对我国冬小麦田节节麦的起源、分布、生物学特性、与作物的竞争关系及防除研究进展进行述评。结果表明,我国冬小麦田的节节麦与中东节节麦同源;主要分布于我国黄河流域冬小麦主产区的大、小麦田;可与作物竞争水分、光、养料和空间,还是小麦条锈病菌和吸浆虫的禾草寄主;植株分蘖能力强、靠种子传播;节节麦种子的发芽主要受温度、水分影响,光照、土壤pH值、盐分对其影响不大。目前,生产上对节节麦的防除主要通过阻止传播、人工拔除与甲基二磺隆喷雾防除,效果差、防除成本高,应加强新的防除手段和途径的研究。  相似文献   
198.
Hexaploid bread wheat (Triticum aestivum L. ssp. aestivum) is assumed to have originated by natural hybridization between cultivated tetraploid Triticum turgidum L. and wild diploid Aegilops tauschii Coss. This scenario is broadly accepted, but very little is known about the ecological aspects of bread wheat evolution. In this study, we examined whether T. turgidum cultivation still is associated with weedy Ae. tauschii in today’s Middle Eastern agroecosystems. We surveyed current distributions of T. turgidum and Ae. tauschii in northern Iran and searched for sites where these two species coexist. Ae. tauschii occurred widely in the study area, whereas cultivated T. turgidum had a narrow distribution range. Traditional durum wheat (T. turgidum ssp. durum (Desf.) Husn.) cultivation associated with weedy Ae. tauschii was observed in the Alamut and Deylaman-Barrehsar districts of the central Alborz Mountain region. The results of our field survey showed that the T. turgidumAe. tauschii association hypothesized in the theory of bread wheat evolution still exists in the area where bread wheat probably evolved.  相似文献   
199.
Aegilops umbellulata acc. 3732, an excellent source of resistance to major wheat diseases, was used for transferring leaf rust and stripe rust resistance to cultivated wheat. An amphiploid between Ae. umbellulata acc. 3732 and Triticum durum cv. WH890 was crossed with cv. Chinese Spring Ph I to induce homoeologous pairing between Ae. umbellulata and wheat chromosomes. The F1 was crossed to the susceptible Triticum aestivum cv. ‘WL711’ and leaf rust and stripe rust resistant plants were selected among the backcross progenies. Homozygous lines were selected and screened against six Puccinia triticina and four Puccinia striiformis f. sp. tritici pathotypes at the seedling stage and a mixture of prevalent pathotypes of both rust pathogens at the adult plant stage. Genomic in situ hybridization in some of the selected introgression lines detected two lines with complete Ae. umbellulata chromosomes. Depending on the rust reactions and allelism tests, the introgression lines could be classified into two groups, comprising of lines with seedling leaf rust resistance gene Lr9 and with new seedling leaf rust and stripe rust resistance genes. Inheritance studies detected an additional adult plant leaf rust resistance gene in one of the introgression lines. A minimum of three putatively new genes—two for leaf rust resistance (LrU1 and LrU2) and one for stripe rust resistance (YrU1) have been introgressed into wheat from Ae. umbellulata. Two lines with no apparent linkage drag have been identified. These lines could serve as sources of resistance to leaf rust and stripe rust in breeding programs.  相似文献   
200.
Aegilops tauschii Coss. is the D-genome donor to hexaploid bread wheat (Triticum aestivum) and is the most promising wild species as a genetic resource for wheat breeding. To study the population structure and diversity of 81 Ae. tauschii accessions collected from various regions of its geographical distribution, the genomic representation of these lines were used to develop a diversity array technology (DArT) marker array. This Ae. tauschii array and a previously developed DArT wheat array were used to scan the genomes of the 81 accessions. Out of 7500 markers (5500 wheat and 2000 Ae. tauschii), 4449 were polymorphic (3776 wheat and 673 Ae. tauschii). Phylogenetic and population structure studies revealed that the accessions could be divided into three groups. The two Ae. tauschii subspecies could also be separately clustered, suggesting that the current taxonomy might be valid. DArT markers are effective to detect very small polymorphisms. The information obtained about Ae. tauschii in the current study could be useful for wheat breeding. In addition, the new DArT array from this Ae. tauschii population is expected to be an effective tool for hexaploid wheat studies.  相似文献   
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