Department of Plant Biology, University of Illinois, Urbana, IL, 61801, USA.
Department of Crop Sciences, University of Illinois, Urbana, IL, 61801, USA.
Plant Reprod. 2022 Dec;35(4):233-264. doi: 10.1007/s00497-022-00447-2. Epub 2022 Aug 3.
Differential spatial and temporal expression patterns due to regulatory cis-elements and two different isoforms are detected among CpMDAR4 alleles in papaya. The aim of this research was to study the effects of cis-element differences between the X, Y and Y alleles on the expression of CpMDAR4, a potential candidate gene for sex differentiation in papaya, using a transcriptional reporter system in a model species Arabidopsis thaliana. Possible effects of a retrotransposon insertion in the Y and Y alleles on the transcription and expression of CpMDAR4 alleles in papaya flowers were also examined. When comparing promoters and cis-regulatory elements among genes in the non-recombining region of the sex chromosomes, paired genes exhibited differences. Our results showed that differences in the promoter sequences of the CpMDAR4 alleles drove the expression of a reporter gene to different flower tissues in Arabidopsis. β-glucuronidase staining analysis of T and T lines for constructs containing 5' deletions of native Y and Y allele promoters showed the loss of specific expression of the reporter gene in the anthers, confirming the existence and location of cis-regulatory element POLLEN1LELAT52. The expression analysis of CpMDAR4 alleles in papaya flowers also showed that all alleles are actively expressed in different flower tissues, with the existence of a shorter truncated isoform, with unknown function, for the Y and Y alleles due to an LTR-RT insertion in the Y and Y chromosomes. The observed expression patterns in Arabidopsis thaliana flowers and the expression patterns of CpMDAR4 alleles in papaya flowers suggest that MDAR4 might have a role on development of reproductive organs in papaya, and that it constitutes an important candidate for sex differentiation.
由于调控顺式元件和两种不同异构体的差异空间和时间表达模式,在木瓜中检测到 CpMDAR4 等位基因。本研究的目的是使用拟南芥模型物种中的转录报告系统,研究 X、Y 和 Y 等位基因之间顺式元件差异对 CpMDAR4 表达的影响,CpMDAR4 是木瓜性别分化的一个潜在候选基因。还研究了 Y 和 Y 等位基因中的逆转座子插入对木瓜花中 CpMDAR4 等位基因转录和表达的可能影响。在比较性染色体非重组区域中基因的启动子和顺式调控元件时,发现成对基因存在差异。我们的结果表明,CpMDAR4 等位基因启动子序列的差异导致报告基因在拟南芥的不同花组织中表达。含有天然 Y 和 Y 等位基因启动子 5'缺失的构建体的 T 和 T 系的β-葡糖苷酸酶染色分析显示,报告基因在花药中的特异性表达丧失,证实了 cis-调控元件 POLLEN1LELAT52 的存在和位置。对木瓜花中 CpMDAR4 等位基因的表达分析也表明,所有等位基因在不同的花组织中都有活性表达,由于 Y 和 Y 染色体上存在 LTR-RT 插入,存在一个较短的截断异构体,其功能未知。拟南芥花中的观察到的表达模式和木瓜花中 CpMDAR4 等位基因的表达模式表明,MDAR4 可能在木瓜生殖器官发育中起作用,并且它是性别分化的重要候选基因。