Livestock and Forage Research Division, Tohoku Agricultural Research Center, National Agriculture and Food Research Organization, Akahira 4, Shimokuriyagawa, Morioka, Iwate 020-0198, Japan.
Genome. 2012 Aug;55(8):599-603. doi: 10.1139/g2012-048. Epub 2012 Aug 2.
The grass festulolium, a hybrid between the genera Festuca and Lolium , has a variety of beneficial agronomic attributes derived from both parents. Compared with high-ploidy festulolium, diploid festulolium is well suited to stabilizing ploidy and for studying agronomic traits and genetic relationships. We sought to produce a diploid festulolium hybrid that was resistant to summer depression, by hybridizing diploid Lolium multiflorum Lam. and hexaploid Festuca arundinacea Schreb., which has a high tolerance to summer depression. We obtained seven diploid F(4) plants that were capable of surviving the extremely hot summer in Morioka, Japan, in 2010, which was 2.7 °C higher than the average summer temperature. The observed resistance to summer depression in these plants was likely due to heat stress tolerance. The genomic constitutions of these seven hybrids were analyzed by GISH, and the chromosomal characteristics of a single diploid F(4) was analyzed by FISH using rDNA probes. The results showed that although no Festuca-specific genome remained in any of the seven diploid F(4) plants, extensive chromosomal rearrangement was observed in one of them. Our findings suggested that hybridizing diploid L. multiflorum and hexaploid F. arundinacea may be useful for modifying chromosome architecture in the Lolium genome with potential applications in chromosome engineering.
羊茅属黑麦草是羊茅属和黑麦草属的杂种,具有多种有益的农艺特性,这些特性源自双亲。与高倍体羊茅黑麦草相比,二倍体羊茅黑麦草非常适合稳定倍性,并可用于研究农艺性状和遗传关系。我们试图通过杂交二倍体多花黑麦草和六倍体雀稗,来培育抗夏季休眠的二倍体羊茅黑麦草,雀稗对夏季休眠有很强的耐受性。我们获得了 7 株能够在日本盛冈度过 2010 年极其炎热的夏季的二倍体 F4 植株,那里的夏季平均气温比常年高 2.7°C。这些植株对夏季休眠的抗性可能归因于耐热性。我们通过 GISH 分析了这 7 个杂种的基因组构成,并通过 FISH 使用 rDNA 探针分析了单个二倍体 F4 的染色体特征。结果表明,尽管这 7 株二倍体 F4 植物中没有任何雀稗特有的基因组,但其中一株植物发生了广泛的染色体重排。我们的研究结果表明,杂交二倍体多花黑麦草和六倍体雀稗可能有助于修改黑麦草基因组中的染色体结构,这在染色体工程中有潜在的应用价值。