Jiang Nan, Feng Meng-Qi, Cheng Lai-Chao, Kuang Li-Hua, Li Chao-Chao, Yin Zhao-Ping, Wang Rong, Xie Kai-Dong, Guo Wen-Wu, Wu Xiao-Meng
National Key Laboratory for Germplasm Innovation & Utilization of Horticultural Crops, College of Horticulture and Forestry Sciences, Huazhong Agricultural University, Wuhan, 430070, China.
Hubei Hongshan Laboratory, Wuhan 430070, China.
Hortic Res. 2023 May 12;10(7):uhad105. doi: 10.1093/hr/uhad105. eCollection 2023 Jul.
Cytoplasmic male sterility (CMS) has long been used to produce seedless fruits in perennial woody crops like citrus. A male-sterile somatic cybrid citrus (G1 + HBP) was generated by protoplast fusion between a CMS callus parent 'Guoqing No. 1' Satsuma mandarin (, G1) and a fertile mesophyll parent Hirado Buntan pummelo (, HBP). To uncover the male-sterile mechanism of G1 + HBP, we compared the transcriptome profiles of stamen organ and cell types at five stages between G1 + HBP and HBP, including the initial stamen primordia, enlarged stamen primordia, pollen mother cells, tetrads, and microspores captured by laser microdissection. The stamen organ and cell types showed distinct gene expression profiles. A majority of genes involved in stamen development were differentially expressed, especially , which was downregulated in enlarged stamen primordia and upregulated in tetrads of G1 + HBP compared with HBP. Jasmonic acid- and auxin-related biological processes were enriched among the differentially expressed genes of stamen primordia, and the content of jasmonic acid biosynthesis metabolites was higher in flower buds and anthers of G1 + HBP. In contrast, the content of auxin biosynthesis metabolites was lower in G1 + HBP. The mitochondrial tricarboxylic acid cycle and oxidative phosphorylation processes were enriched among the differentially expressed genes in stamen primordia, meiocytes, and microspores, indicating the dysfunction of mitochondria in stamen organ and cell types of G1 + HBP. Taken together, the results indicate that malfunction of mitochondria-nuclear interaction might cause disorder in stamen development, and thus lead to male sterility in the citrus cybrid.
细胞质雄性不育(CMS)长期以来一直被用于在柑橘等多年生木本作物中生产无籽果实。通过将细胞质雄性不育愈伤组织亲本“国庆一号”温州蜜柑(G1)与可育叶肉亲本平户文旦柚(HBP)进行原生质体融合,获得了雄性不育的体细胞杂种柑橘(G1 + HBP)。为了揭示G1 + HBP的雄性不育机制,我们比较了G1 + HBP和HBP在五个阶段的雄蕊器官和细胞类型的转录组图谱,包括通过激光显微切割捕获的初始雄蕊原基、增大的雄蕊原基、花粉母细胞、四分体和小孢子。雄蕊器官和细胞类型显示出不同的基因表达谱。大多数参与雄蕊发育的基因存在差异表达,特别是与HBP相比,在G1 + HBP增大的雄蕊原基中下调而在四分体中上调。茉莉酸和生长素相关的生物学过程在雄蕊原基的差异表达基因中富集,并且G1 + HBP的花芽和花药中茉莉酸生物合成代谢物的含量较高。相反,G1 + HBP中生长素生物合成代谢物的含量较低。线粒体三羧酸循环和氧化磷酸化过程在雄蕊原基、减数分裂细胞和小孢子的差异表达基因中富集,表明G1 + HBP的雄蕊器官和细胞类型中线粒体功能异常。综上所述,结果表明线粒体-核相互作用的故障可能导致雄蕊发育紊乱,从而导致柑橘体细胞杂种雄性不育。