Zhang Xianzhi, Wang Xinyi, Pan Linsi, Guo Wei, Li Yongquan, Wang Wencai
College of Horticulture and Landscape Architecture, Zhongkai University of Agriculture and Engineering, Guangzhou, China.
Science and Technology Innovation Center, Guangzhou University of Chinese Medicine, Guangzhou, China.
Front Genet. 2023 Feb 21;14:1138703. doi: 10.3389/fgene.2023.1138703. eCollection 2023.
is a famous rubber-producing and medicinal tree species that produces unisexual flowers on separate individuals from the earliest stage of stamen/pistil primordium formation. To explore the genetic regulation pathway of sex in , comprehensive genome-wide analyses and tissue-/sex-specific transcriptome comparisons of MADS-box transcription factors were performed for the first time in this work. Quantitative real-time PCR technique was employed to further validate the expression of genes that are assigned to floral organ ABCDE model. A total of 66 non-redundant MADS-box (EuMADS) genes were identified, they were classified into Type I (M-type, 17 genes) and Type II (MIKC, 49 genes). Complex protein-motif composition, exon-intron structure and phytohormone-response cis-elements were detected in MIKC-EuMADS genes. Furthermore, 24 differentially-expressed EuMADS genes (DEGs) between male and female flowers, and two DEGs between male and female leaves were revealed. Amongst the 14 floral organ ABCDE model-related genes, there were 6 (A/B/C/E-class) and 5 (A/D/E-class) genes displayed male- and female-biased expression respectively. In particular, one B-class gene EuMADS39 and one A-class gene EuMADS65 were almost exclusively expressed in male trees, no matter in flower or leaf tissues. Collectively, these results suggested a critical role of MADS-box transcription factors in sex determination of , which is conducive to decoding the molecular regulation mechanism of sex in .
是一种著名的产橡胶和药用树种,从雄蕊/雌蕊原基形成的最早阶段开始,就在不同个体上产生单性花。为了探索该树种性别决定的遗传调控途径,本研究首次对MADS-box转录因子进行了全基因组综合分析以及组织/性别特异性转录组比较。采用定量实时PCR技术进一步验证了归属于花器官ABCDE模型的基因表达。共鉴定出66个非冗余的MADS-box(EuMADS)基因,它们被分为I型(M型,17个基因)和II型(MIKC,49个基因)。在MIKC-EuMADS基因中检测到复杂的蛋白质基序组成、外显子-内含子结构和植物激素响应顺式元件。此外,还揭示了雄花和雌花之间24个差异表达的EuMADS基因(DEGs),以及雄叶和雌叶之间2个DEGs。在14个与花器官ABCDE模型相关的基因中,分别有6个(A/B/C/E类)和5个(A/D/E类)基因表现出雄性和雌性偏向表达。特别是,一个B类基因EuMADS39和一个A类基因EuMADS65几乎只在雄树中表达,无论在花或叶组织中。总的来说,这些结果表明MADS-box转录因子在该树种性别决定中起关键作用,这有助于解码该树种性别决定的分子调控机制。