Institute of Horticultural Biotechnology, Fujian Agriculture and Forestry University, Fuzhou, 350002, China.
Quanzhou Agricultural Science Research Institute, Quanzhou, 362212, China.
J Plant Physiol. 2021 Mar-Apr;258-259:153364. doi: 10.1016/j.jplph.2021.153364. Epub 2021 Jan 10.
DEAD-box (DDX) proteins belong to the largest subfamily of RNA helicase SF2, which contributes to all biological processes of RNA metabolism in the plant kingdom. Till now, no significant data are available regarding studies on DDX in Somatic Embryogenesis (SE) of woody plants. It is important to investigate the biological function of the DlDDX family in longan SE. Thus, a comprehensive analysis of 58 longan DEAD-box (DlDDX) genes characterization was performed by genome-wide identification and transcript abundance validation analysis. Homologous evolution has revealed that some DlDDXs in longan had high sequence similarity with Mus musculus, Citrus and Saccharomyces cerevisiae, indicating that DlDDXs were highly conservative in the animal, plant, and microorganism. Remarkably, gene duplication, purifying selection, and alternative splicing events, and new auxiliary domains have likely contributed to the functional evolution of DlDDX, indicating that DlDDX appeared neofunctionalization in longan. Besides, DlDDX3, 15, 28, 36 might interact with protein complex (MAC3A, MAC3B, CDC5, CBP20) of miRNA biosynthesis. Notably, DlDDX28 contained a novel auxiliary domain (CAF-1 p150), which might contribute to DNA demethylation in longan early SE. 4 DlDDX genes significantly expressed not only in early SE and zygotic embryogenesis (ZE) but also up-regulated at high levels in 'Honghezi' and 'Quanlongbaihe' with abortive seeds, which are of great significance. Moreover, some DlDDXs presented abiotic stress-response dynamic expression patterns by ABA, SA, JA, and NaCl treatments during early SE. Hence, DEAD-box is essential to SE development and seed abortive in longan.
DEAD-box (DDX) 蛋白属于 RNA 解旋酶 SF2 家族中最大的亚家族,在植物王国的所有 RNA 代谢生物过程中都有贡献。到目前为止,关于木本植物体细胞胚胎发生 (SE) 中 DDX 的研究还没有重要数据。因此,研究龙眼 SE 中 DlDDX 家族的生物学功能非常重要。因此,通过全基因组鉴定和转录丰度验证分析,对 58 个龙眼 DEAD-box (DlDDX) 基因特征进行了全面分析。同源进化表明,龙眼中的一些 DlDDX 与 Mus musculus、Citrus 和 Saccharomyces cerevisiae 具有高度相似的序列,表明 DlDDX 在动物、植物和微生物中高度保守。值得注意的是,基因复制、纯化选择和选择性剪接事件以及新的辅助结构域可能有助于 DlDDX 的功能进化,表明 DlDDX 在龙眼中出现了新功能化。此外,DlDDX3、15、28、36 可能与 miRNA 生物合成的蛋白质复合物 (MAC3A、MAC3B、CDC5、CBP20) 相互作用。值得注意的是,DlDDX28 含有一个新的辅助结构域 (CAF-1 p150),可能有助于龙眼早期 SE 中的 DNA 去甲基化。4 个 DlDDX 基因不仅在早期 SE 和合子胚胎发生 (ZE) 中显著表达,而且在具有败育种子的 'Honghezi' 和 'Quanlongbaihe' 中高水平上调,这具有重要意义。此外,在早期 SE 期间,一些 DlDDXs 在 ABA、SA、JA 和 NaCl 处理下呈现出非生物胁迫响应的动态表达模式。因此,DEAD-box 对龙眼 SE 发育和种子败育至关重要。