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分析有性和无融合生殖拟南芥属植物花组织中的保守 microRNAs。

Analysis of conserved microRNAs in floral tissues of sexual and apomictic Boechera species.

机构信息

Leibniz Institute of Plant Genetics and Crop Plant Research (IPK), Corrensstrasse 3, D-06466 Gatersleben, Germany.

出版信息

BMC Genomics. 2011 Oct 11;12:500. doi: 10.1186/1471-2164-12-500.

Abstract

BACKGROUND

Apomixis or asexual seed formation represents a potentially important agronomic trait whose introduction into crop plants could be an effective way to fix and perpetuate a desirable genotype through successive seed generations. However, the gene regulatory pathways underlying apomixis remain unknown. In particular, the potential function of microRNAs, which are known to play crucial roles in many aspects of plant growth and development, remains to be determined with regards to the switch from sexual to apomictic reproduction.

RESULTS

Using bioinformatics and microarray validation procedures, 51 miRNA families conserved among angiosperms were identified in Boechera. Microarray assay confirmed 15 of the miRNA families that were identified by bioinformatics techniques. 30 cDNA sequences representing 26 miRNAs could fold back into stable pre-miRNAs. 19 of these pre-miRNAs had miRNAs with Boechera-specific nucleotide substitutions (NSs). Analysis of the Gibbs free energy (ΔG) of these pre-miRNA stem-loops with NSs showed that the Boechera-specific miRNA NSs significantly (p ≤ 0.05) enhance the stability of stem-loops. Furthermore, six transcription factors, the Squamosa promoter binding protein like SPL6, SPL11 and SPL15, Myb domain protein 120 (MYB120), RELATED TO AP2.7 DNA binding (RAP2.7, TOE1 RAP2.7) and TCP family transcription factor 10 (TCP10) were found to be expressed in sexual or apomictic ovules. However, only SPL11 showed differential expression with significant (p ≤ 0.05) up-regulation at the megaspore mother cell (MMC) stage of ovule development in apomictic genotypes.

CONCLUSIONS

This study constitutes the first extensive insight into the conservation and expression of microRNAs in Boechera sexual and apomictic species. The miR156/157 target squamosa promoter binding protein-like 11 (SPL11) was found differentially expressed with significant (p ≤ 0.05) up-regulation at the MMC stage of ovule development in apomictic genotypes. The results also demonstrate that nucleotide changes in mature miRNAs significantly (p ≤ 0.05) enhance the thermodynamic stability of pre-miRNA stem-loops.

摘要

背景

无融合生殖或无性种子形成代表了一个潜在的重要农艺性状,通过将其引入作物,可以有效地通过连续的种子世代来固定和延续理想的基因型。然而,无融合生殖的基因调控途径仍然未知。特别是,microRNAs 在植物生长和发育的许多方面都起着至关重要的作用,但其在从有性到无性繁殖的转变中的潜在功能仍有待确定。

结果

使用生物信息学和微阵列验证程序,在 Boechera 中鉴定出了 51 个在被子植物中保守的 miRNA 家族。微阵列分析证实了通过生物信息学技术鉴定的 15 个 miRNA 家族。代表 26 个 miRNA 的 30 个 cDNA 序列可以折叠成稳定的 pre-miRNA。其中 19 个 pre-miRNA 具有 Boechera 特异性核苷酸取代 (NSs)。对具有 NSs 的这些 pre-miRNA 茎环的 Gibbs 自由能 (ΔG) 的分析表明,Boechera 特异性 miRNA NSs 显著 (p≤0.05) 增强了茎环的稳定性。此外,发现六个转录因子,Squamosa 启动子结合蛋白样 SPL6、SPL11 和 SPL15、Myb 结构域蛋白 120 (MYB120)、与 AP2.7 结合的 RELATED TO AP2.7 DNA (RAP2.7) 和 TCP 家族转录因子 10 (TCP10) 在有性或无性胚珠中表达。然而,只有 SPL11 在无性基因型胚珠发育的大孢子母细胞 (MMC) 阶段表现出差异表达,且具有显著 (p≤0.05) 的上调。

结论

本研究首次深入了解了 Boechera 有性和无性物种中 microRNAs 的保守性和表达情况。miR156/157 的靶标 squamosa 启动子结合蛋白样 11 (SPL11) 在无性基因型胚珠发育的 MMC 阶段表现出差异表达,且具有显著 (p≤0.05) 的上调。结果还表明,成熟 miRNA 中的核苷酸变化显著 (p≤0.05) 增强了 pre-miRNA 茎环的热力学稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8904/3208272/02940ccdc2ec/1471-2164-12-500-1.jpg

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