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Transcriptome Analysis Identifies Key Candidate Genes Mediating Purple Ovary Coloration in Asiatic Hybrid Lilies

机译:转录组分析确定介导亚洲杂种百合紫色子房着色的关键候选基因。

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摘要

Lily tepals have a short lifespan. Once the tepals senesce, the ornamental value of the flower is lost. Some cultivars have attractive purple ovaries and fruits which greatly enhance the ornamental value of Asiatic hybrid lilies. However, little is known about the molecular mechanisms of anthocyanin biosynthesis in Asiatic hybrid lily ovaries. To investigate the transcriptional network that governs purple ovary coloration in Asiatic hybrid lilies, we obtained transcriptome data from green ovaries (S1) and purple ovaries (S2) of Asiatic “Tiny Padhye”. Comparative transcriptome analysis revealed 4228 differentially expressed genes. Differential expression analysis revealed that ten unigenes including four CHS genes, one CHI gene, one F3H gene, one F3′H gene, one DFR gene, one UFGT gene, and one 3RT gene were significantly up-regulated in purple ovaries. One MYB gene, LhMYB12-Lat, was identified as a key transcription factor determining the distribution of anthocyanins in Asiatic hybrid lily ovaries. Further qPCR results showed unigenes related to anthocyanin biosynthesis were highly expressed in purple ovaries of three purple-ovaried Asiatic hybrid lilies at stages 2 and 3, while they showed an extremely low level of expression in ovaries of three green-ovaried Asiatic hybrid lilies during all developmental stages. In addition, shading treatment significantly decreased pigment accumulation by suppressing the expression of several unigenes related to anthocyanin biosynthesis in ovaries of Asiatic “Tiny Padhye”. Lastly, a total of 15,048 Simple Sequence Repeats (SSRs) were identified in 13,710 sequences, and primer pairs for SSRs were designed. The results could further our understanding of the molecular mechanisms of anthocyanin biosynthesis in Asiatic hybrid lily ovaries.
机译:百合花茶的寿命短。一旦花果变薄,花的观赏价值就丧失了。一些品种具有诱人的紫色卵巢和果实,极大地提高了亚洲杂交百合的观赏价值。然而,关于亚洲杂种百合卵巢中花色苷生物合成的分子机制知之甚少。为了研究控制亚洲杂种百合紫色卵巢着色的转录网络,我们从亚洲“ Tiny Padhye”的绿色卵巢(S1)和紫色卵巢(S2)获得了转录组数据。比较转录组分析揭示了4228个差异表达的基因。差异表达分析显示,紫色卵巢中有10个单基因,包括4个CHS基因,1个CHI基因,1个F3H基因,1个F3'H基因,1个DFR基因,1个UFGT基因和1个3RT基因。一个MYB基因LhMYB12-Lat被确定为决定亚洲杂交百合卵巢中花色苷分布的关键转录因子。进一步的qPCR结果显示,与花青素生物合成相关的单基因在三个第2和第3阶段的紫色亚洲杂种百合的紫色卵巢中高表达,而在整个过程中它们在三个绿色的亚洲杂种百合的卵巢中表达极低。发展阶段。此外,遮光处理通过抑制亚洲“ Tiny Padhye”卵巢中与花色苷生物合成相关的几种单基因的表达,显着减少了色素积聚。最后,在13,710个序列中鉴定出总共15,048个简单序列重复(SSR),并设计了SSR的引物对。结果可以进一步了解亚洲杂种百合卵巢花色苷生物合成的分子机制。

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