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藜科莴苣基因组组装和分析:对生菜育种的启示。

Genome assembly and analysis of Lactuca virosa: implications for lettuce breeding.

机构信息

Biosystematics Group, Wageningen University & Research, P.O. Box 16, Wageningen, 6700 AA, The Netherlands.

Bioinformatics Group, Wageningen University & Research, P.O. Box 633, Wageningen, 6700 AP, The Netherlands.

出版信息

G3 (Bethesda). 2023 Nov 1;13(11). doi: 10.1093/g3journal/jkad204.

Abstract

Lettuce (Lactuca sativa L.) is a leafy vegetable crop with ongoing breeding efforts related to quality, resilience, and innovative production systems. To breed resilient and resistant lettuce in the future, valuable genetic variation found in close relatives could be further exploited. Lactuca virosa (2x = 2n = 18), a wild relative assigned to the tertiary lettuce gene pool, has a much larger genome (3.7 Gbp) than Lactuca sativa (2.5 Gbp). It has been used in interspecific crosses and is a donor to modern crisphead lettuce cultivars. Here, we present a de novo reference assembly of L. virosa with high continuity and complete gene space. This assembly facilitated comparisons to the genome of L. sativa and to that of the wild species L. saligna, a representative of the secondary lettuce gene pool. To assess the diversity in gene content, we classified the genes of the 3 Lactuca species as core, accessory, and unique. In addition, we identified 3 interspecific chromosomal inversions compared to L. sativa, which each may cause recombination suppression and thus hamper future introgression breeding. Using 3-way comparisons in both reference-based and reference-free manners, we show that the proliferation of long-terminal repeat elements has driven the genome expansion of L. virosa. Further, we performed a genome-wide comparison of immune genes, nucleotide-binding leucine-rich repeat, and receptor-like kinases among Lactuca spp. and indicated the evolutionary patterns and mechanisms behind their expansions. These genome analyses greatly facilitate the understanding of genetic variation in L. virosa, which is beneficial for the breeding of improved lettuce varieties.

摘要

生菜(Lactuca sativa L.)是一种叶菜类作物,目前正在进行与质量、抗逆性和创新生产系统相关的育种工作。为了在未来培育出具有抗逆性和抗性的生菜,可能需要进一步利用近缘种中发现的有价值的遗传变异。乳苣(Lactuca virosa)(2x=2n=18)是一种野生近缘种,属于三级生菜基因库,其基因组(3.7Gbp)比生菜(Lactuca sativa)(2.5Gbp)大得多。它已被用于种间杂交,是现代结球生菜品种的供体。在这里,我们提供了乳苣的从头参考组装,具有高度的连续性和完整的基因空间。该组装有助于与生菜基因组和二级生菜基因库的野生种乳苣(Lactuca saligna)的基因组进行比较。为了评估基因内容的多样性,我们将 3 种乳苣物种的基因分为核心、辅助和特有基因。此外,我们还鉴定了 3 个与生菜相比的种间染色体倒位,每个倒位都可能导致重组抑制,从而阻碍未来的渐渗育种。使用基于参考和无参考的 3 种比较方法,我们表明长末端重复元件的增殖导致了乳苣基因组的扩张。此外,我们还对乳苣属植物中的免疫基因、核苷酸结合富含亮氨酸重复和受体样激酶进行了全基因组比较,并指出了它们扩张的进化模式和机制。这些基因组分析极大地促进了对乳苣遗传变异的理解,这有利于改良生菜品种的培育。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbd2/10627274/13fed7d86b47/jkad204f1.jpg

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