Root-knot nematodes (RKNs) are infamous plant pathogens in tomato production, causing considerable losses in agriculture worldwide. Mi-1 is the only commercially available RKN-resistance gene; however, the resistance is inactivated when the soil temperature is over 28â°C. Mi-9 in wild tomato (Solanum arcanum LA2157) has stable resistance to RKNs under high temperature but has not been cloned and applied. In this study, a chromosome-scale genome assembly of S. arcanum LA2157 was constructed through Nanopore and Hi-C sequencing. Based on molecular markers of Mi-9 and comparative genomic analysis, the localization region and candidate Mi-9 genes cluster consisting of seven nucleotide-binding sites and leucine-rich repeat (NBS-LRR) genes were located. Transcriptional expression profiles confirmed that five of the seven candidate genes were expressed in root tissue. Moreover, virus-induced gene silencing of the Sarc_034200 gene resulted in increased susceptibility of S. arcanum LA2157 to Meloidogyne incognita, and genetic transformation of the Sarc_034200 gene in susceptible Solanum pimpinellifolium conferred significant resistance to M. incognita at 25â°C and 30â°C and showed hypersensitive responses at nematode infection sites. This suggested that Sarc_034200 is the Mi-9 gene. In summary, we cloned, confirmed and applied the heat-stable RKN-resistance gene Mi-9, which is of great significance to tomato breeding for nematode resistance.
Chromosome-scale genome assembly-assisted identification of Mi-9 gene in Solanum arcanum accession LA2157, conferring heat-stable resistance to Meloidogyne incognita.
利用染色体规模基因组组装辅助鉴定茄属植物 LA2157 中的 Mi-9 基因,该基因赋予其对南方根结线虫的耐热抗性
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作者:Jiang Lijun, Ling Jian, Zhao Jianlong, Yang Yu, Yang Yuhong, Li Yan, Jiao Yang, Mao Zhenchuan, Wang Yunsheng, Xie Bingyan
| 期刊: | Plant Biotechnology Journal | 影响因子: | 10.500 |
| 时间: | 2023 | 起止号: | 2023 Jul;21(7):1496-1509 |
| doi: | 10.1111/pbi.14055 | 研究方向: | 其它 |
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