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两个 CCCH 型锌指蛋白基因的过表达导致 亚种花粉败育。

Overexpression of Two CCCH-type Zinc-Finger Protein Genes Leads to Pollen Abortion in ssp. .

机构信息

Laboratory of Cell & Molecular Biology, Institute of Vegetable Science, Zhejiang University, Hangzhou 310058, China.

Key Laboratory of Horticultural Plant Growth, Development and Quality Improvement, Ministry of Agriculture/Zhejiang Provincial Key Laboratory of Horticultural Plant Integrative Biology, Hangzhou 310058, China.

出版信息

Genes (Basel). 2020 Oct 29;11(11):1287. doi: 10.3390/genes11111287.

Abstract

The pollen grains produced by flowering plants are vital for sexual reproduction. Previous studies have shown that two CCCH-type zinc-finger protein genes in , and , are involved in pollen development. Due to their possible functional redundancy, gain-of-function analysis is helpful to reveal their respective biological functions. Here, we found that the phenotypes of and overexpression transgenic plants driven by their native promoters were similar, suggesting their functional redundancy. The results showed that the vegetative growth was not affected in both transgenic plants, but male fertility was reduced. Further analysis found that the abortion of transgenic pollen was caused by the degradation of pollen contents from the late uninucleate microspore stage. Subcellular localization analysis demonstrated that BcMF30a and BcMF30c could localize in cytoplasmic foci. Combined with the studies of other CCCH-type genes, we speculated that the overexpression of these genes can induce the continuous assembly of abnormal cytoplasmic foci, thus resulting in defective plant growth and development, which, in this study, led to pollen abortion. Both the overexpression and knockout of and lead to abnormal pollen development, indicating that the appropriate expression levels of these two genes are critical for the maintenance of normal pollen development.

摘要

开花植物产生的花粉粒对于有性繁殖至关重要。先前的研究表明, 和 中的两个 CCCH 型锌指蛋白基因参与花粉发育。由于它们可能具有功能冗余性,因此功能获得分析有助于揭示它们各自的生物学功能。在这里,我们发现由其天然启动子驱动的 和 过表达转基因植物的表型相似,表明它们具有功能冗余性。结果表明,两种转基因植物的营养生长不受影响,但雄性育性降低。进一步的分析发现,转基因花粉的败育是由于花粉内容物从晚期单核小孢子阶段开始降解所致。亚细胞定位分析表明 BcMF30a 和 BcMF30c 可以定位于细胞质焦点。结合对其他 CCCH 型基因的研究,我们推测这些基因的过表达可以诱导异常细胞质焦点的连续组装,从而导致植物生长和发育缺陷,在本研究中导致花粉败育。 和 过表达和敲除都导致花粉发育异常,表明这两个基因的适当表达水平对于维持正常花粉发育至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7453/7693475/66d9f2f39c29/genes-11-01287-g001.jpg

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