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Genetic Relationships Among Five Basic Genomes St, E, A, B and D in Triticeae Revealed by Genomic Southern and in situ Hybridization 被引量:11
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作者 Zhao Liu Dayong Li Xueyong Zhang 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2007年第7期1080-1086,共7页
The St and E are two important basic genomes in the perennial tribe Triticeae (Poaceae). They exist in many perennial species and are very closely related to the A, B and D genomes of bread wheat (Triticum aestivum... The St and E are two important basic genomes in the perennial tribe Triticeae (Poaceae). They exist in many perennial species and are very closely related to the A, B and D genomes of bread wheat (Triticum aestivum L.). Genomic Southern hybridization and genomic in situ hybridization (GISH) were used to analyze the genomic relationships between the two genomes (St and E) and the three basic genomes (A, B and D) of T. aestivum. The semi-quantitative analysis of the Southern hybridization suggested that both St and E genomes are most closely related to the D genome, then the A genome, and relatively distant to the B genome. GISH analysis using St and E genomic DNA as probes further confirmed the conclusion. St and E are the two basic genomes of Thinopyrum ponticum (StStE^eE^bE^x) and Th. intermedium (StE^eE^b), two perennial species successfully used in wheat improvement. Therefore, this paper provides a possible answer as to why most of the spontaneous wheat-Thinopyrum translocations and substitutions usually happen in the D genome, some in the A genome and rarely in the B genome. This would develop further use of alien species for wheat improvement, especially those containing St or E in their genome components. 展开更多
关键词 E genome fluorescent in situ hybridization genomic in situ hybridization perennial triticeae St genome wheat
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几种小麦族禾草及其杂交后代农艺特性的研究 被引量:37
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作者 于卓 李造哲 云锦凤 《草业学报》 CSCD 2003年第3期83-89,共7页
对几种小麦族多年生禾草及其杂交后代的生育、产草量等农艺特性进行了比较研究,结果表明,加拿大披碱草×野大麦属间杂种F1的生长速度偏向母本,株高呈双亲的中间型,具有父本野大麦的强短根茎特性和果后营养期长的优良特性,表现出很... 对几种小麦族多年生禾草及其杂交后代的生育、产草量等农艺特性进行了比较研究,结果表明,加拿大披碱草×野大麦属间杂种F1的生长速度偏向母本,株高呈双亲的中间型,具有父本野大麦的强短根茎特性和果后营养期长的优良特性,表现出很强的分蘖能力和再生能力,其花粉可育率为1.19%,结实率0,杂种平均优势16.98%。蒙古冰草×航道冰草种间杂种F1的生长速度和株高均介于双亲中间,具有父本航道冰草分蘖和再生能力强的特性,花粉可育率为26.75%,结实率5.30%,杂种平均优势19.35%;BC1的生长速度呈双亲的混合型,株高、分蘖性和再生性偏向其回交父本蒙古冰草,花粉可育率为46.67%,结实率14.77%,BC1育性恢复明显。 展开更多
关键词 小麦族多年生禾草 远缘杂种 生长发育 产草量特性
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