Key Laboratory of Horticultural Plant Biology-Ministry of Education, College of Horticulture and Forestry Sciences, Huazhong Agricultural University, No. 1 Shizishan Street, Hongshan District, Wuhan 430070, Hubei Province, China.
Plant Physiol Biochem. 2012 Jul;56:97-103. doi: 10.1016/j.plaphy.2012.04.008. Epub 2012 Apr 21.
Most of the economically important citrus cultivars have originated from bud mutations. Leaf shape and structure are important factors that impact plant photosynthesis. We found a spontaneous bud mutant exhibiting a narrow leaf phenotype in navel orange [Citrus sinensis (L.) Osbeck]. To identify and characterize the genes involved in the formation of this trait, we performed suppression subtractive hybridization (SSH) and macroarray analysis. A total of 221 non-redundant differentially expressed transcripts were obtained. These transcripts included cell wall- and microtubule-related genes and two transcription factor-encoding genes, yabby and wox, which are crucial for leaf morphogenesis. Many highly redundant transcripts were associated with stress responses, while others, encoding caffeic acid 3-O-methyltransferase (EC 2.1.1.68) and a myb-like transcription factor, might be involved in the lignin pathway, which produces a component of secondary walls. Furthermore, real-time quantitative RT-PCR was performed for selected genes to validate the quality of the expressed sequence tags (ESTs) from the SSH libraries. This study represents an attempt to investigate the molecular mechanism associated with a leaf shape mutation, and its results provide new clues for understanding leaf shape mutations in citrus.
大多数具有经济重要性的柑橘品种都源自芽变。叶片形状和结构是影响植物光合作用的重要因素。我们在脐橙 [Citrus sinensis (L.) Osbeck] 中发现了一个自发的芽变突变体,表现出窄叶表型。为了鉴定和描述参与该性状形成的基因,我们进行了抑制差减杂交 (SSH) 和宏阵列分析。总共获得了 221 个非冗余差异表达转录本。这些转录本包括细胞壁和微管相关基因以及两个转录因子编码基因 yabby 和 wox,它们对叶片形态发生至关重要。许多高度冗余的转录本与应激反应有关,而其他转录本,如编码咖啡酸 3-O-甲基转移酶 (EC 2.1.1.68) 和一个 MYB 样转录因子的转录本,可能参与木质素途径,该途径产生次生细胞壁的组成部分。此外,还对选定基因进行了实时定量 RT-PCR,以验证 SSH 文库中表达序列标签 (EST) 的质量。本研究试图探讨与叶片形状突变相关的分子机制,其结果为理解柑橘叶片形状突变提供了新的线索。