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基于基因组和转录组的研究揭示了高能量碳离子束辐照诱导的日本百合延迟开花衰老突变体的特征。

Genome and transcriptome-based characterization of high energy carbon-ion beam irradiation induced delayed flower senescence mutant in Lotus japonicus.

机构信息

Biophysics Group, Biomedical Center, Institute of Modern Physics, Chinese Academy of Sciences, 730000, Lanzhou, People's Republic of China.

University of Chinese Academy of Sciences, Beijing, 100000, People's Republic of China.

出版信息

BMC Plant Biol. 2021 Nov 3;21(1):510. doi: 10.1186/s12870-021-03283-0.

Abstract

BACKGROUND

Flower longevity is closely related to pollen dispersal and reproductive success in all plants, as well as the commercial value of ornamental plants. Mutants that display variation in flower longevity are useful tools for understanding the mechanisms underlying this trait. Heavy-ion beam irradiation has great potential to improve flower shapes and colors; however, few studies are available on the mutation of flower senescence in leguminous plants.

RESULTS

A mutant (C416) exhibiting blossom duration eight times longer than that of the wild type (WT) was isolated in Lotus japonicus derived from carbon ion beam irradiation. Genetic assays supported that the delayed flower senescence of C416 was a dominant trait controlled by a single gene, which was located between 4,616,611 Mb and 5,331,876 Mb on chromosome III. By using a sorting strategy of multi-sample parallel genome sequencing, candidate genes were narrowed to the gene CUFF.40834, which exhibited high identity to ethylene receptor 1 in other model plants. A physiological assay demonstrated that C416 was insensitive to ethylene precursor. Furthermore, the dynamic changes of phytohormone regulatory network in petals at different developmental stages was compared by using RNA-seq. In brief, the ethylene, jasmonic acid (JA), and salicylic acid (SA) signaling pathways were negatively regulated in C416, whereas the brassinosteroid (BR) and cytokinin signaling pathways were positively regulated, and auxin exhibited dual effects on flower senescence in Lotus japonicus. The abscisic acid (ABA) signaling pathway is positively regulated in C416.

CONCLUSION

So far, C416 might be the first reported mutant carrying a mutation in an endogenous ethylene-related gene in Lotus japonicus, rather than through the introduction of exogenous genes by transgenic techniques. A schematic of the flower senescence of Lotus japonicus from the perspective of the phytohormone regulatory network was provided based on transcriptome profiling of petals at different developmental stages. This study is informative for elucidating the molecular mechanism of delayed flower senescence in C416, and lays a foundation for candidate flower senescence gene identification in Lotus japonicus. It also provides another perspective for the improvement of flower longevity in legume plants by heavy-ion beam.

摘要

背景

花的寿命与所有植物的花粉传播和生殖成功密切相关,也与观赏植物的商业价值密切相关。表现出花寿命变异的突变体是理解该性状机制的有用工具。重离子束辐照具有极大的潜力来改善花朵的形状和颜色;然而,关于豆科植物花衰老突变的研究很少。

结果

从碳离子束辐照的 Lotus japonicus 中分离出一个突变体(C416),其开花持续时间比野生型(WT)长 8 倍。遗传分析支持 C416 的延迟衰老特性是由单个基因控制的显性性状,该基因位于第 III 号染色体上的 4,616,611 Mb 到 5,331,876 Mb 之间。通过使用多样本平行基因组测序的分选策略,候选基因被缩小到基因 CUFF.40834,该基因与其他模式植物的乙烯受体 1 具有高度同源性。生理分析表明,C416 对乙烯前体不敏感。此外,通过 RNA-seq 比较了不同发育阶段花瓣中植物激素调控网络的动态变化。简而言之,在 C416 中,乙烯、茉莉酸(JA)和水杨酸(SA)信号通路受到负调控,而油菜素内酯(BR)和细胞分裂素信号通路受到正调控,生长素对 Lotus japonicus 的花衰老具有双重作用。脱落酸(ABA)信号通路在 C416 中受到正调控。

结论

到目前为止,C416 可能是第一个在 Lotus japonicus 中报道的携带内源性乙烯相关基因突变的突变体,而不是通过转基因技术引入外源基因。根据不同发育阶段花瓣的转录组分析,提供了 Lotus japonicus 花衰老的激素调控网络示意图。本研究为阐明 C416 花衰老的分子机制提供了信息,并为 Lotus japonicus 候选花衰老基因的鉴定奠定了基础。它还为通过重离子束改善豆科植物的花寿命提供了另一个视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a1e1/8564971/44e7e578b28f/12870_2021_3283_Fig1_HTML.jpg

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