National Key Laboratory for Germplasm Innovation & Utilization of Horticultural Crops, College of Horticulture and Forestry Sciences, Huazhong Agricultural University, Wuhan, 430070, China.
College of Horticulture and Landscape, Yunnan Agricultural University, Kunming, 650201, China.
Plant Cell Rep. 2024 Oct 15;43(11):262. doi: 10.1007/s00299-024-03357-x.
Abnormal expression of genes regulating anther and pollen development and insufficient accumulation of male sterility (MS)- related metabolites lead to MS in cybrid pummelo Male sterility (MS) is a major cause of seedlessness in citrus, which is an important trait for fresh fruit. Understanding the mechanism of MS is important for breeding seedless citrus cultivars. In this study, we dissected the transcriptional, metabolic and physiological mechanisms of MS in somatic cybrid of pummelo (G1 + HBP). G1 + HBP exhibited severe male sterility, manifesting as retarded anther differentiation, abnormal anther wall development (especially tapetum and endothecium), and deficient pollen wall formation. In the anthers of G1 + HBP, the expression of genes regulating anther differentiation and tapetum development was abnormal, and the expression of genes regulating endothecium secondary lignification thickening and pollen wall formation was down-regulated. The transcription of genes involved in MS-related biological processes, such as jasmonic acid (JA) signaling pathway, primary metabolism, flavonoid metabolism, and programmed cell death, was altered in G1 + HBP anthers, and the accumulation of MS-associated metabolites, including fatty acids, amino acids, sugars, ATP, flavonols and reactive oxygen species (ROS), was down-regulated in G1 + HBP anthers. In summary, abnormal expression of key genes regulating anther and pollen development, altered transcription of key genes involved in MS-related metabolic pathways, and insufficient accumulation of MS-related metabolites together lead to MS in G1 + HBP. The critical genes and the metabolism pathways identified herein provide new insights into the formation mechanism of MS in citrus and candidate genes for breeding seedless citrus.
异常表达调控花粉囊和花粉发育的基因以及雄性不育(MS)相关代谢物的不足积累导致杂种柚雄性不育
雄性不育(MS)是柑橘无核的主要原因,是鲜食水果的重要特征。了解 MS 的机制对于培育无核柑橘品种很重要。在这项研究中,我们剖析了体细胞杂种柚(G1+HBP)MS 的转录组、代谢组和生理学机制。G1+HBP 表现出严重的雄性不育,表现为花药分化延迟、花药壁发育异常(尤其是绒毡层和内皮层)以及花粉壁形成不足。在 G1+HBP 的花药中,调控花药分化和绒毡层发育的基因表达异常,调控内皮层次生木质化增厚和花粉壁形成的基因表达下调。与 MS 相关生物过程(如茉莉酸(JA)信号通路、初级代谢、类黄酮代谢和程序性细胞死亡)相关的基因在 G1+HBP 花药中转录发生改变,与 MS 相关的代谢物(包括脂肪酸、氨基酸、糖、ATP、类黄酮和活性氧(ROS))在 G1+HBP 花药中的积累下调。总之,调控花粉囊和花粉发育的关键基因异常表达、MS 相关代谢途径关键基因转录改变以及 MS 相关代谢物积累不足共同导致 G1+HBP 出现 MS。本文鉴定的关键基因和代谢途径为柑橘 MS 的形成机制提供了新的见解,并为培育无核柑橘提供了候选基因。