Suppr超能文献

C-带模式和白粉病抗性的粗山羊草及其四个普通小麦-粗山羊草附加系。

C-banding pattern and powdery mildew resistance of Triticum ovatum and four T. aestivum-T. ovatum chromosome addition lines.

机构信息

Institute of Agronomy and Plant Breeding, D-8050, Freising-Weihenstephan, FRG.

出版信息

Theor Appl Genet. 1989 Sep;78(3):417-24. doi: 10.1007/BF00265306.

Abstract

C-banding patterns of T. ovatum (Ae. ovata) and four T. aestivum cv 'Poros'-T. ovatum chromosome addition lines are presented, and the added chromosomes of T. ovatum have been identified. Furthermore, nucleolar activity and powdery mildew resistance were analyzed in the 'Poros'-ovatum addition lines and compared to that of T. ovatum and T. aestivum cv 'Poros'. The addition lines II, III and IV and 'Poros' were highly susceptible to powdery mildew isolates nos. 8 and 9, whereas the addition lines VI1 and VI2 showed high resistance. Even for an Ml-k virulent isolate, these two lines were highly resistant. By combining the cytological results and those of the powdery mildew analysis, the added chromosomes of T. ovatum can be excluded from responsibility for the high powdery mildew resistance of the addition lines VI1 and VI2. The same is true for a modified chromosome 6B, which is present in the 'Poros'-ovataum addition lines II, III and VI. The high variation in C-banding pattern observed in the A-, B- and D-genome complement of the addition lines is believed to be the result of crossing different lines of T. aestivum instead of 'Poros' alone. Thus, we cannot trace the powdery mildew resistance back to a specific chromosome.

摘要

呈现了 T. ovatum(Ae. ovata)和四个 T. aestivum cv 'Poros'-T. ovatum 染色体添加系的 C-带模式,并鉴定了 T. ovatum 的添加染色体。此外,分析了 'Poros'-ovatum 添加系的核仁活性和对粉状霉病的抗性,并与 T. ovatum 和 T. aestivum cv 'Poros'进行了比较。添加系 II、III 和 IV 和 'Poros'对粉状霉病分离物 8 和 9 高度敏感,而添加系 VI1 和 VI2 表现出高度抗性。即使对于 Ml-k 毒力的分离物,这两个系也具有高度抗性。通过将细胞学结果与粉状霉病分析结果相结合,可以排除 T. ovatum 的添加染色体对添加系 VI1 和 VI2 高抗粉状霉病的责任。对于存在于 'Poros'-ovataum 添加系 II、III 和 VI 中的修饰染色体 6B 也是如此。添加系 A、B 和 D 基因组中观察到的 C-带模式的高度变异被认为是杂交不同的 T. aestivum 系而不是单独的 'Poros'的结果。因此,我们无法将粉状霉病抗性追溯到特定的染色体。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验