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首页> 外文期刊>Cellular & molecular biology letters. >Identification of microRNAs potentially involved in male sterility of Brassica campestris ssp. chinensis using microRNA array and quantitative RT-PCR assays
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Identification of microRNAs potentially involved in male sterility of Brassica campestris ssp. chinensis using microRNA array and quantitative RT-PCR assays

机译:鉴定可能与甘蓝型油菜雄性不育有关的microRNA。 microRNA芯片和定量RT-PCR分析的中国

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摘要

microRNAs (miRNAs) are a class of newly identified, noncoding, small RNA molecules that negatively regulate gene expression. Many miRNAs are reportedly involved in plant growth, development and stress response processes. However, their roles in the sexual reproduction mechanisms in flowering plants remain unknown. Pollen development is an important process in the life cycle of a flowering plant, and it is closely related to the yield and quality of crop seeds. This study aimed to identify miRNAs involved in pollen development. A microarray assay was conducted using the known complementary sequences of plant miRNAs as probes on inflorescences of a sterile male line (Bcajh97-01A) and a fertile male line (Bcajh97-01B) of the Brassica campestris ssp. chinensis cv. ‘Aijiaohuang’ genic male sterility sister line system (Bcajh97-01A/B). The results showed that 44 miRNAs were differently expressed in the two lines. Of these, 15 had over 1.5-fold changes in their transcript levels, with 9 upregulated and 6 downregulated miRNAs in inflorescences of ‘Bcajh97-01A’ sterile line plants. We then focused on 3 of these 15 miRNAs (miR158, miR168 and miR172). Through computational methods, 13 family members were predicted for these 3 miRNAs and 22 genes were predicted to be their candidate target genes. By using 5’ modified RACE, 2 target genes of miR168 and 5 target genes of miR172 were identified. Then, qRT-PCR was applied to verify the existence and expression patterns of the 3 miRNAs in the flower buds at five developmental stages. The results were generally consistent with those of the microarray. Thus, this study may give a valuable clue for further exploring the miRNA group that may function during pollen development.
机译:微小RNA(miRNA)是一类新近鉴定的,非编码的,负面调节基因表达的小RNA分子。据报道,许多miRNA参与植物的生长,发育和胁迫响应过程。然而,它们在开花植物有性生殖机制中的作用仍然未知。花粉发育是开花植物生命周期中的重要过程,并且与农作物种子的产量和质量密切相关。这项研究旨在鉴定参与花粉发育的miRNA。使用已知的植物miRNA互补序列作为甘蓝型油菜的不育雄性品系(Bcajh97-01A)和可育雄性品系(Bcajh97-01B)花序的探针进行微阵列分析。中国种'Aijiaohuang'基因雄性不育姊妹系(Bcajh97-01A / B)。结果表明,在两个系中44个miRNA的表达不同。其中15株的转录水平变化超过1.5倍,“ Bcajh97-01A”不育系植物的花序中有9个上调的miRNA和6个下调的miRNA。然后,我们专注于这15个miRNA中的3个(miR158,miR168和miR172)。通过计算方法,预测了这3个miRNA的13个家族成员,并预测了22个基因为其候选靶基因。通过使用5'修饰的RACE,鉴定了miR168的2个靶基因和miR172的5个靶基因。然后,应用qRT-PCR验证了三个miRNA在花蕾中五个发育阶段的存在和表达模式。结果通常与微阵列一致。因此,这项研究可能为进一步探索在花粉发育过程中可能起作用的miRNA组提供有价值的线索。

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