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转录组分析揭示了与冬枣(Mill.)种子败育相关的关键候选基因。

Transcriptomic Analysis Reveals Key Candidate Genes Related to Seed Abortion in Chinese Jujube ( Mill).

作者信息

Shao Fengxia, Yin Hengfu, Wang Sen, Zhang Saiyang, Chen Juan, Feng Can

机构信息

College of Landscape Architecture, Central South University of Forestry and Technology, Changsha, China.

State Key Laboratory of Tree Genetics and Breeding, Research Institute of Subtropical Forestry, Chinese Academy of Forestry, Hangzhou, China.

出版信息

Curr Genomics. 2022 Apr 7;23(1):26-40. doi: 10.2174/1389202922666211110100017.

Abstract

BACKGROUND

Seed abortion is a common phenomenon in Chinese jujube that seriously hinders the process of cross-breeding. However, the molecular mechanisms of seed abortion remain unclear in jujube.

METHODS

Here, we performed transcriptome sequencing using eight flower and fruit tissues at different developmental stages in Mill. 'Zhongqiusucui' to identify key genes related to seed abortion. Histological analysis revealed a critical developmental process of embryo abortion after fertilization.

RESULTS

Comparisons of gene expression revealed a total of 14,012 differentially expressed genes. Functional enrichment analyses of differentially expressed genes between various sample types uncovered several important biological processes, such as embryo development, cellular metabolism, and stress response, that were potentially involved in the regulation of seed abortion. Furthermore, gene co-expression network analysis revealed a suite of potential key genes related to ovule and seed development. We focused on three types of candidate genes, agamous subfamily genes, plant ATP-binding cassette subfamily G transporters, and metacaspase enzymes, and showed that the expression profiles of some members were associated with embryo abortion.

CONCLUSION

This work generates a comprehensive gene expression data source for unraveling the molecular mechanisms of seed abortion and aids future cross-breeding efforts in jujube.

摘要

背景

种子败育是枣树中的常见现象,严重阻碍了杂交育种进程。然而,枣树种子败育的分子机制仍不清楚。

方法

在此,我们对‘中秋酥脆枣’不同发育阶段的八个花和果实组织进行了转录组测序,以鉴定与种子败育相关的关键基因。组织学分析揭示了受精后胚胎败育的关键发育过程。

结果

基因表达比较共鉴定出14012个差异表达基因。对不同样本类型之间差异表达基因的功能富集分析发现了几个重要的生物学过程,如胚胎发育、细胞代谢和应激反应,这些过程可能参与种子败育的调控。此外,基因共表达网络分析揭示了一组与胚珠和种子发育相关的潜在关键基因。我们聚焦于三类候选基因,即无花瓣亚家族基因、植物ATP结合盒亚家族G转运蛋白和metacaspase酶,并表明部分成员的表达谱与胚胎败育有关。

结论

本研究为揭示种子败育的分子机制提供了全面的基因表达数据源,并有助于枣树未来的杂交育种工作。

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