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5' 茎环及其在玉米S型细胞质雄性不育中对mRNA稳定性的作用。

The 5' stem-loop and its role in mRNA stability in maize S cytoplasmic male sterility.

作者信息

Xiao Hailin, Zhang Fangdong, Zheng Yonglian

机构信息

State Key Laboratory of Crop Genetic Improvement and National Center of Crop Molecular Breeding, College of Life Science and Technology, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

Plant J. 2006 Sep;47(6):864-72. doi: 10.1111/j.1365-313X.2006.02838.x.

Abstract

The co-transcribed orf355-orf77 region of the mitochondrial genome is associated with S cytoplasmic male sterility (CMS-S) in maize; the amounts of its 1.6- and 2.8-kb transcripts were previously shown to be greatly reduced in fertility-restored microspores relative to the amounts in sterile plants. To investigate the mechanism underlying this reduction, detailed analysis of the 5' and 3' termini of these transcripts was conducted. Using 3' RACE analysis, the polyadenylation sites of the 1.6- and 2.8-kb transcripts were mapped adjacent to a 3' stem-loop, which may play an important role in stabilizing their 3' ends. No difference was found between the polyadenylation sites in sterile and fertility-restored microspores that could account for the differences in orf355-orf77 transcript levels. The 5' terminus of the 1.6-kb transcript was further studied by primer extension; the result revealed that there was a deletion of nine nucleotides only in fertility-restored microspores, and that this deletion eliminated a 5' stem-loop sequence. We propose that the elimination of the 5' stem-loop in the fertility-restored microspores could be the cause of the degradation of the 1.6-kb transcript. Because the 2.8-kb transcript can be cleaved to generate the 1.6-kb transcript, the amount of the 2.8-kb transcript is also reduced in fertility-restored microspores.

摘要

线粒体基因组共转录的orf355 - orf77区域与玉米S型细胞质雄性不育(CMS - S)相关;先前研究表明,相对于不育植株,其1.6 kb和2.8 kb转录本在育性恢复的小孢子中的量大幅减少。为了探究这种减少背后的机制,对这些转录本的5'和3'末端进行了详细分析。利用3' RACE分析,将1.6 kb和2.8 kb转录本的多聚腺苷酸化位点定位在一个3'茎环附近,该茎环可能在稳定其3'末端方面发挥重要作用。在不育和育性恢复的小孢子的多聚腺苷酸化位点之间未发现差异,无法解释orf355 - orf77转录本水平的差异。通过引物延伸进一步研究了1.6 kb转录本的5'末端;结果显示,仅在育性恢复的小孢子中有9个核苷酸的缺失,且这种缺失消除了一个5'茎环序列。我们认为,育性恢复的小孢子中5'茎环的消除可能是1.6 kb转录本降解的原因。由于2.8 kb转录本可被切割产生1.6 kb转录本,因此2.8 kb转录本在育性恢复的小孢子中的量也会减少。

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