期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Chromosome-scale genome assembly of marigold (Tagetes erecta L.):An ornamental plant and feedstock for industrial lutein production 被引量:2
1
作者 Haibo Xin Fangfang Ji +7 位作者 Jie Wu Shiya Zhang Caijie Yi Shiwei Zhao Richen Cong Liangjun Zhao Hua Zhang Zhao Zhang 《Horticultural Plant Journal》 SCIE CAS CSCD 2023年第6期1119-1130,共12页
Marigold(Tagetes erecta L., African marigold) is a widely grown ornamental plant and a main source of the carotenoid lutein for the industrial production of pharmaceuticals, food coloring, and feed additives. To gain ... Marigold(Tagetes erecta L., African marigold) is a widely grown ornamental plant and a main source of the carotenoid lutein for the industrial production of pharmaceuticals, food coloring, and feed additives. To gain a deeper understanding of the genetic mechanism of lutein in marigold, a chromosome-scale assembly of the marigold(T. erecta V-01) genome was completed based on Illumina, PacBio, and Hi-C reads. The707.21-Mb assembled genome consisted of 35 834 annotated protein-coding genes, with 97.7% genomic integrity. We anchored 87.8% of the contigs(covering 621.20 Mb) to 12 pseudochromosomes, bringing the scaffold N50 length to 54.15 Mb. Phylogenetic analysis showed that marigold was closely related to the Asteraceae species bitter vine(Mikania micrantha) and sunflower(Helianthus annuus), all three of which originated in the Americas. Marigold diverged from the sunflower clade 23.57 million years ago(MYA) and from M. micrantha 19.59 MYA.Marigold has undergone three whole-genome duplication events, as well as a recent whole-genome duplication event(WGD-2) common to H.annuus and M. micrantha. Marigold gene families were significantly less expanded than those of M. micrantha or H. annuus, and the marigold genome contained significantly fewer interspersed repeats, which might account for its smaller genome. In addition, a range of candidate genes involved in the lutein biosynthetic pathway were identified. The high-quality reference genome obtained in this study provided a valuable genomic resource for studying the evolution of the Asteraceae family and for improving marigold breeding strategies. 展开更多
关键词 t.erecta L. Genome Gene family CAROTENOID LUTEIN
在线阅读 下载PDF
万寿菊素和槲皮万寿菊素的分离和结构鉴定 被引量:3
2
作者 丁宙 李乃明 +2 位作者 毛文书 李绍珍 梁舜薇 《广州医学院学报》 1990年第1期8-11,共4页
利用有机溶剂提取及重结晶法,从菊科万寿菊属植物孔雀草(Tagetes patula.L.)分离出黄酮类化合物结晶Ⅰ;从万寿菊(Tagetes erectaL.)分离出黄酮类化合物晶Ⅱ。经化学和光谱分析,证实晶Ⅰ是万寿菊素 patuletin、晶Ⅱ是槲皮万寿菊素 querce... 利用有机溶剂提取及重结晶法,从菊科万寿菊属植物孔雀草(Tagetes patula.L.)分离出黄酮类化合物结晶Ⅰ;从万寿菊(Tagetes erectaL.)分离出黄酮类化合物晶Ⅱ。经化学和光谱分析,证实晶Ⅰ是万寿菊素 patuletin、晶Ⅱ是槲皮万寿菊素 quercetagetin。药理试验表明,这两种黄酮类化合物均对大白鼠晶体醛糖还原酶(AR)具有一定抑制作用。 展开更多
关键词 孔雀草 万寿菊 万寿菊素 槲皮万寿菊素
暂未订购
上一页 1 下一页 到第
使用帮助 返回顶部