School of Horticulture and Forestry, Tarim University, Alar, 843300, China.
School of Horticulture and Forestry, Huazhong Agricultural University, WuHan, 430070, China.
Biochem Genet. 2023 Jun;61(3):1065-1085. doi: 10.1007/s10528-022-10303-7. Epub 2022 Nov 24.
Lignin deficiency in the endocarp of walnuts causes kernel bare, leads to inconvenient processing and transportation of walnuts, and easily produces insect damage and mildew, thereby affecting the quality of walnuts. Cinnamyl alcohol dehydrogenase (CAD) is one of the key rate-limiting enzymes in lignin synthesis and plays an important role in the synthesis of lignin in the endocarp of walnut. However, knowledge about CAD gene family members and their evolutionary and functional characteristics in walnuts is limited. In this study, all 18 JrCADs were identified, and phylogenetic relationships, gene structure, protein motifs, collinearity analysis, and expression patterns of the JrCADs were also analyzed. All JrCADs could be divided into three groups based on the phylogenetic tree, gene structure, and motif analysis also support this grouping. Transcriptome data demonstrated that JrCADs have different expression patterns in walnut endocarps at different developmental stages. Combined with qRT-PCR data, we finally identified several candidate JrCADs involved in the process of endocarp sclerosis. This study showed that the JrCAD family members are highly conservative in evolutionary characteristics and they might participate in a variety of hormone responses. JrCAD17 and JrCAD18 are highly expressed in all periods of walnut endocarp harding, they are closely related to lignin accumulation.
核桃内种皮木质素缺乏导致核仁外露,给核桃的加工和运输带来不便,且易受虫害和霉变的影响,从而影响核桃的品质。肉桂醇脱氢酶(CAD)是木质素合成的关键限速酶之一,在核桃内种皮木质素合成中起重要作用。然而,关于 CAD 基因家族成员及其在核桃中的进化和功能特征的知识有限。在本研究中,鉴定了所有 18 个 JrCAD,分析了 JrCAD 的系统发育关系、基因结构、蛋白基序、共线性分析和表达模式。基于系统发育树、基因结构和基序分析,所有 JrCAD 可分为三组,这也支持这种分组。转录组数据表明 JrCAD 在核桃内种皮不同发育阶段的表达模式不同。结合 qRT-PCR 数据,我们最终鉴定出几个参与内种皮硬化过程的候选 JrCAD。本研究表明 JrCAD 家族成员在进化特征上高度保守,它们可能参与多种激素反应。JrCAD17 和 JrCAD18 在核桃内种皮硬化的所有时期均高度表达,与木质素积累密切相关。