龙葵
生物
倍性
索引
杂合子丢失
遗传学
突变
疫病疫霉菌
基因组
植物
枯萎病
基因型
突变体
园艺
等位基因
基因
单核苷酸多态性
作者
Miru Du,Ting Wang,Qun Lian,Xiaojie Zhang,Guohui Xin,Yuanyuan Pu,Glenn J. Bryan,Jianjian Qi
摘要
Abstract High heterozygosity and tetrasomic inheritance complicate studies of asexually propagated polyploids, such as potato. Reverse genetics approaches, especially mutant library construction, can be an ideal choice if a proper mutagenesis genotype is available. Here, we aimed to generate a model system for potato research using anther cultures of Solanum verrucosum , a self‐compatible diploid potato with strong late blight resistance. Six of the 23 regenerants obtained (SVA4, SVA7, SVA22, SVA23, SVA32, and SVA33) were diploids, and their homozygosity was estimated to be >99.99% with 22 polymorphic InDel makers. Two lines—SVA4 and SVA32—had reduced stature (plant height ≤80 cm), high seed yield (>1,000 seeds/plant), and good tuber set (>30 tubers/plant). We further confirmed the full homozygosity of SVA4 and SVA32 using whole‐genome resequencing. These two regenerants possess all the characteristics of a model plant: diploidy, 100% homozygosity, self‐compatibility, and amenability to transgenesis. Thus, we have successfully generated two lines, SVA4 and SVA32, which can potentially be used for mutagenesis and as model plants to rejuvenate current methods of conducting potato research.
科研通智能强力驱动
Strongly Powered by AbleSci AI