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Comparative Transcript Profiling of a Male Sterile Cybrid Pummelo and Its Fertile Type Revealed Altered Gene Expression Related to Flower Development

机译:雄性不育胞质杂种柚和肥沃的类型比较转录谱揭示基因表达改变相关的花卉发展

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摘要

Male sterile and seedless characters are highly desired for citrus cultivar improvement. In our breeding program, a male sterile cybrid pummelo, which could be considered as a variant of male fertile pummelo, was produced by protoplast fusion. Herein, ecotopic stamen primordia initiation and development were detected in this male sterile cybrid pummelo. Histological studies revealed that the cybrid showed reduced petal development in size and width, and retarded stamen primordia development. Additionally, disorganized cell proliferation was also detected in stamen-like structures (fused to petals and/or carpel). To gain new insight into the underlying mechanism, we compared, by RNA-Seq analysis, the nuclear gene expression profiles of floral buds of the cybrid with that of fertile pummelo. Gene expression profiles which identified a large number of differentially expressed genes (DEGs) between the two lines were captured at both petal primordia and stamen primordia distinguishable stages. For example, nuclear genes involved in nucleic acid binding and response to hormone synthesis and metabolism, genes required for floral bud identification and expressed in particular floral whorls. Furthermore, in accordance with flower morphology of the cybrid, expression of PISTILLATA (PI) was reduced in stamen-like structures, even though it was restricted to correct floral whorls. Down-regulated expression of APETALA3 (AP3) coincided with that of PI. These finding indicated that, due to their whorl specific effects in flower development, citrus class-B MADS-box genes likely constituted ‘perfect targets’ for CMS retrograde signaling, and that dysfunctional mitochondria seemed to cause male sterile phenotype in the cybrid pummelo.
机译:雄性不育和无核的性状对于柑橘品种的改良是非常需要的。在我们的育种计划中,原生质体融合产生了雄性不育杂交种柚子,可以认为是雄性可育柚子的变种。在此,在这种雄性不育杂交种柚子中检测到异位雄蕊原基的发生和发育。组织学研究表明,该杂交种显示出花瓣的大小和宽度减少,而雄蕊原基发育延迟。另外,在雄蕊样结构(融合到花瓣和/或心皮)中也检测到混乱的细胞增殖。为了获得对潜在机制的新见解,我们通过RNA-Seq分析比较了杂种花芽与可育柚子的核芽的核基因表达谱。在花瓣原基和雄蕊原基可分辨的两个阶段都捕获到了鉴定两株系之间大量差异表达基因(DEG)的基因表达谱。例如,涉及核酸结合以及对激素合成和代谢的反应的核基因,花芽鉴定所需的基因以及在特定的花轮中表达的基因。此外,根据杂交种的花形,即使限于正确的花轮,PISTILLATA(PI)的表达在雄蕊样结构中也减少了。 APETALA3(AP3)的表达下调与PI一致。这些发现表明,由于柑橘类B-MADS-box基因在花发育中具有特定的螺旋效应,因此很可能构成CMS逆向信号传导的“完美靶点”,而线粒体功能异常似乎会导致杂交柚子的雄性不育表型。

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