首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >An irregularly striped rind mutant reveals new insight into the function of PG1 beta in cucumber (Cucumis sativus L.)
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An irregularly striped rind mutant reveals new insight into the function of PG1 beta in cucumber (Cucumis sativus L.)

机译:不规则条纹的外皮突变体揭示了对黄瓜(Cucumis Sativus L)的PG1β功能的新洞察力

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Key message Via bulked segregant analysis sequencing combined with linkage mapping, the ist gene responsible for the irregularly striped rind mutation was delimited to a 144-kb region in cucumber. Sequencing and expression analysis identified Csa1G005490 as the candidate gene. The rind appearance of cucumber is one of the most important commercial quality traits. Usually, an immature cucumber fruit has a uniform rind that varies from green to yellow to white among different cultivated varieties. In the present paper, we isolated a novel fruit appearance cucumber mutant, ist, that has an irregularly striped rind pattern. The mutant displayed green irregular stripes on a yellow-green background at the immature fruit stage. Genetic analysis revealed that a single recessive gene, ist, is responsible for this mutation. A BSA (bulked segregant analysis) sequencing approach combined with genetic mapping delimited the ist locus to an interval with a length of 144 kb, and 21 predicted genes were annotated in the region. Based on mutation site screening and expression analysis, two single-nucleotide polymorphisms within the candidate gene, Csa1G005490, were identified as constituting the mutation. Csa1G005490 encodes a polygalacturonase-1 noncatalytic subunit beta protein (PG1 beta) known to be involved in fruit softening. The expression of Csa1G005490 was significantly lower in the ist mutant than in the wild type. Transcriptome analysis identified 1796 differentially expressed genes (DEGs) between the ist mutant and wild type. Gene ontology (GO) annotation and Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment analyses indicated that these DEGs were enriched mostly in photosynthesis and chlorophyll metabolism pathways. Decreased expression patterns of several chlorophyll synthesis genes in the mutant suggest that ist plays a key role in chlorophyll biosynthesis. These results will provide new insight into the molecular mechanism underlying rind appearance polymorphisms in cucumber.
机译:通过膨胀分析分析测序的关键消息与连杆映射相结合,负责不规则条纹的外皮突变的IST基因被界定至黄瓜的144kb区域。测序和表达分析将CSA1G005490鉴定为候选基因。黄瓜的外观外观是最重要的商业品质特征之一。通常,未成熟的黄瓜果实具有均匀的外皮,在不同栽培品种中,从绿色变为黄色到白色。在本文中,我们孤立一种新颖的果实外观黄瓜突变体,IST,具有不规则条纹的外皮图案。突变体在未成熟的水果阶段的黄绿色背景上显示了绿色不规则条纹。遗传分析显示,单一隐性基因IST是对该突变的原因。与遗传映射结合的BSA(膨胀分析分析)测序方法将IST轨迹分解为长度为144kb的间隔,并且在该区域注释了21个预测基因。基于突变位点筛选和表达分析,鉴定候选基因内的两种单核苷酸多态性,CSA1G005490,鉴定为构成突变。 CSA1G005490编码了一种已知参与果实软化的聚乳糖酰基酶-1非催化亚ββ蛋白(PG1β)。 IST突变体中CSA1G005490的表达明显低于野生型。转录组分析鉴定了IST突变体和野生型之间的1796个差异表达的基因(DEGS)。基因本体(GO)注释和基因和基因组的京都百科全书(KEGG)富集分析表明,这些含量主要富含光合作用和叶绿素代谢途径。突变体中几种叶绿素合成基因的表达模式下降表明IST在叶绿素生物合成中起着关键作用。这些结果将对黄瓜中外观多态性的分子机制提供新的洞察力。

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