Department of Vegetable Science, College of Horticulture, China Agricultural University, Beijing, 100193, China.
State Key Laboratory of Vegetable Biobreeding, National Engineering Research Center for Vegetables, Beijing Key Laboratory of Vegetable Germplasms Improvement, Beijing Vegetable Research Center, Beijing Academy of Agriculture and Forestry Science, Beijing, 100097, China.
Plant J. 2024 Nov;120(3):1206-1220. doi: 10.1111/tpj.17048. Epub 2024 Sep 30.
The external appearance of fruit commodities is an essential trait that has profound effects on consumer preferences. A natural melon variety, characterized by an uneven and patchy arrangement of dark green streaks and spots on the white-skinned rind, resembles shooting stars streaking across the sky; thus, this variety is called "Shooting Star" (SS). To investigate the mechanism underlying the SS melon rind pattern, we initially discovered that the variegated dark green color results from chlorophyll accumulation on the white skin. We then constructed a segregation population by crossing a SS inbred line with a white rind (WR) inbred line and used bulk segregant analysis (BSA) revealed that the SS phenotype is controlled by a single dominant gene, CmAPRR2, which has been previously confirmed to determine dark green coloration. Further genomic analysis revealed a hAT-like transposable element (TE) inserted in CmAPRR2. This TE in CmAPRR2 is recurrently excised from rind tissues, activating the expression of CmAPRR2. This activation promotes the accumulation of chlorophyll, leading to the variegated dark green color on the rind, and ultimately resulting in the SS rind phenotype. Therefore, we propose that the SS phenotype results from the recurrent excision of the hAT-like TE in CmAPRR2.
水果商品的外观是一个重要特征,对消费者的偏好有深远的影响。一种天然的瓜类品种,其白皮上有不均匀的深绿色条纹和斑点排列,类似于划过天空的流星,因此这个品种被称为“流星”(SS)。为了研究 SS 瓜皮图案的形成机制,我们最初发现斑驳的深绿色是由于叶绿素在白皮上的积累。然后,我们通过将 SS 自交系与白皮(WR)自交系杂交构建了一个分离群体,并利用分离群体分析(BSA)揭示 SS 表型由一个单一的显性基因 CmAPRR2 控制,该基因先前已被证实决定深绿色。进一步的基因组分析揭示了 CmAPRR2 中的 hAT 样转座元件(TE)插入。这个 TE 在 CmAPRR2 中会从果皮组织中反复切除,激活 CmAPRR2 的表达。这种激活促进了叶绿素的积累,导致果皮上斑驳的深绿色,最终形成 SS 果皮表型。因此,我们提出 SS 表型是由 CmAPRR2 中的 hAT 样 TE 反复切除引起的。