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首页> 外文期刊>Crop & Pasture Science >Identification of genes related to the regulation of anther and pollen development in Mu-type cytoplasmic male sterile wheat (Triticum aestivum) by transcriptome analysis
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Identification of genes related to the regulation of anther and pollen development in Mu-type cytoplasmic male sterile wheat (Triticum aestivum) by transcriptome analysis

机译:通过转录组分析鉴定穆型细胞质雄性无菌小麦(Triticum aestivum)中花药和花粉发育的调节基因

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Cytoplasmic male sterile (CMS) lines are important tools for hybrid production but they cannot produce viable pollen. Breeding new CMS lines and studying their sterility mechanism in wheat (Triticum aestivum L.) greatly facilitates the process of hybrid wheat breeding. We conducted transcriptome sequencing for a recently identified Mu-CMS line with Aegilops uniaristata Vis. cytoplasm, named U706A, and its isonuclear maintainer line (706B) at the binucleate stage, which was a critical period when abortion occurred. We found that most of the genes involved in phosphatidylinositol metabolism and pectin degradation were downregulated, as well as genes encoding the MYB21 and MYC2 transcription factors, in U706A compared with 706B. In addition, pectin contents indicated that the production of pectin has been enhanced from the binucleate stage to the trinucleate stage, owing to the downregulation of pectin-degradation-related genes in U706A at the binucleate stage, which confirmed the reliability of the sequencing results. We also discovered that the accumulation period of pectin content in U706A is abnormal compared with 706B, which may be an important reason for abortion. Some differentially expressed genes that might be related to the sterile phenotype were verified by quantitative RT-PCR. Therefore, we suggest that the downregulation of these genes possibly leads to the anther not to crack; the tapetum and microspore membrane system is less metabolised, and the abnormal pectin accumulation results in microspore nutrient deficiencies and abnormal development. These findings provide novel insights into the mechanism responsible for pollen abortion in CMS, which may facilitate hybrid wheat breeding.
机译:细胞质雄性无菌(CMS)系列是杂化生产的重要工具,但它们不能产生可行的花粉。育种新的CMS系列并在小麦(Triticum Aestivum L.)中研究其无菌机制极大地促进了杂交小麦育种的过程。我们对最近鉴定的MU-CMS线进行了转录组测序,与Aegilops Uniarirtata Vis。细胞质,命名为U706a及其在离内阶段的患者的异核维护系列(706b),这是堕胎发生时的关键时期。我们发现,与706b相比,下调磷脂酰肌醇代谢和果胶降解中涉及磷脂酰肌醇代谢和果胶降解的大部分基因,以及编码MyB21和MyC2转录因子的基因。另外,果胶含量表明,由于在离内蛋白阶段的U706a中的果胶降解相关基因的下调,从进素阶段增强了果胶的产生,这证实了测序结果的可靠性。我们还发现,与706B相比,U706A中果胶含量的累积期是异常的,这可能是流产的重要原因。一些差异表达的基因可能与无菌表型相关的通过定量RT-PCR验证。因此,我们建议这些基因的下调可能导致花药不破裂; Tapetum和微孔膜系统的代谢较少,并且异常果胶积聚导致微孔养分缺陷和异常发育。这些发现提供了对负责CMS中花粉流产的机制的新颖见解,这可能促进杂交小麦滋生。

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