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基因组序列分析揭示了普通番茄 2n 卵形成的模式。

Genome sequence analysis provides insights into the mode of 2n egg formation in Solanum malmeanum.

机构信息

National Key Laboratory for Germplasm Innovation and Utilization of Horticultural Crops, Key Laboratory of Horticultural Plant Biology, Ministry of Education, Key Laboratory of Potato Biology and Biotechnology, Ministry of Agriculture and Rural Affairs, Huazhong Agricultural University, Wuhan, 430070, China.

College of Biology and Agricultural Resources, Huanggang Normal University, Huanggang, 438000, China.

出版信息

Theor Appl Genet. 2023 Jun 20;136(7):157. doi: 10.1007/s00122-023-04406-x.

Abstract

Our genomic investigation confirms the mechanism of 2n eggs formation in S. malmeanum and aid in optimizing the use of wild germplasm. Wild potatoes are a valuable source of agronomic traits. However, substantial reproductive barriers limit gene flow into cultivated species. 2n gametes are instrumental in preventing endosperm abortion caused by genetic imbalances in the endosperm. However, little is known about the molecular mechanisms underlying the formation of 2n gametes. Here, the wild species Solanum malmeanum Bitter (2x, 1EBN, endosperm balance number) was used in inter- and intrapoloid crosses with other Solanum species, with viable seeds being produced only when S. malmeanum was used as the female parent to cross the 2EBN Solanum genus and with the likely involvement of 2n gametes. Subsequently, we substantiated the formation of 2n eggs in S. malmeanum using fluorescence in situ hybridization (FISH) and genomic sequencing technology. Additionally, the transmission rate of maternal heterozygous polymorphism sites was assessed from a genomic perspective to analyze the mode of 2n egg formation in S. malmeanum × S. tuberosum and S. malmeanum × S. chacoense crosses; each cross acquired an average of 31.12% and 22.79% maternal sites, respectively. This confirmed that 2n egg formation in S. malmeanum attributed to second-division restitution (SDR) coupled with the occurrence of exchange events. The high-throughput sequencing technology used in this study has strong advantages over traditional cytological analyses. Furthermore, S. malmeanum, which has a variety of excellent traits not available from present cultivated potato genepool, has received little research attention and has successfully achieved gene flow in cultivated species in the current study. These findings will facilitate the understanding and optimization of wild germplasm utilization in potatoes.

摘要

我们的基因组研究证实了 S. malmeanum 中 2n 卵子形成的机制,并有助于优化野生种质资源的利用。野生马铃薯是农艺性状的宝贵来源。然而,大量的生殖障碍限制了基因流入栽培种。2n 配子在防止因胚乳遗传不平衡导致的胚乳败育方面发挥了重要作用。然而,对于 2n 配子形成的分子机制知之甚少。在这里,我们使用野生种 Solanum malmeanum Bitter(2x,1EBN,胚乳平衡数)与其他茄属物种进行了种间和种内杂交,只有当 S. malmeanum 作为母本与 2EBN Solanum 属杂交时才会产生可育种子,并且可能涉及到 2n 配子。随后,我们使用荧光原位杂交(FISH)和基因组测序技术证实了 S. malmeanum 中 2n 卵子的形成。此外,我们从基因组的角度评估了母性杂合多态性位点的传递率,以分析 S. malmeanum×S. tuberosum 和 S. malmeanum×S. chacoense 杂交中 2n 卵子形成的模式;每个杂交分别获得了平均 31.12%和 22.79%的母性位点。这证实了 S. malmeanum 中的 2n 卵子形成归因于第二次分裂还原(SDR)与交换事件的发生。本研究中使用的高通量测序技术相对于传统细胞学分析具有很强的优势。此外,S. malmeanum 具有许多目前栽培马铃薯基因库中没有的优良性状,但其研究关注度较低,而在本研究中,它成功地实现了基因流入栽培种。这些发现将有助于理解和优化马铃薯野生种质资源的利用。

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