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RNA-Seq 揭示了缺镁诱导柑橘叶片叶脉木质化、增大和开裂的分子机制。

Molecular mechanisms for magnesium-deficiency-induced leaf vein lignification, enlargement and cracking in Citrus sinensis revealed by RNA-Seq.

机构信息

Institute of Plant Nutritional Physiology and Molecular Biology, Department of Resources and Environment, College of Resources and Environment, Fujian Agriculture and Forestry University (FAFU), 15 Shangxiadian Road, Cangshan District, Fuzhou 350002, China.

Guangxi Key Laboratory of Citrus Biology, Guangxi Academy of Specialty Crops, 40 Putuo Road, Qixing District, Guilin 541004, China.

出版信息

Tree Physiol. 2021 Feb 2;41(2):280-301. doi: 10.1093/treephys/tpaa128.

Abstract

Citrus sinensis (L.) Osbeck seedlings were fertigated with nutrient solution containing 2 [magnesium (Mg)-sufficiency] or 0 mM (Mg-deficiency) Mg(NO3)2 for 16 weeks. Thereafter, RNA-Seq was used to investigate Mg-deficiency-responsive genes in the veins of upper and lower leaves in order to understand the molecular mechanisms for Mg-deficiency-induced vein lignification, enlargement and cracking, which appeared only in the lower leaves. In this study, 3065 upregulated and 1220 downregulated, and 1390 upregulated and 375 downregulated genes were identified in Mg-deficiency veins of lower leaves (MDVLL) vs Mg-sufficiency veins of lower leaves (MSVLL) and Mg-deficiency veins of upper leaves (MDVUL) vs Mg-sufficiency veins of upper leaves (MSVUL), respectively. There were 1473 common differentially expressed genes (DEGs) between MDVLL vs MSVLL and MDVUL vs MSVUL, 1463 of which displayed the same expression trend. Magnesium-deficiency-induced lignification, enlargement and cracking in veins of lower leaves might be related to the following factors: (i) numerous transciption factors and genes involved in lignin biosynthesis pathways, regulation of cell cycle and cell wall metabolism were upregulated; and (ii) reactive oxygen species, phytohormone and cell wall integrity signalings were activated. Conjoint analysis of proteome and transcriptome indicated that there were 287 and 56 common elements between DEGs and differentially abundant proteins (DAPs) identified in MDVLL vs MSVLL and MDVUL vs MSVUL, respectively, and that among these common elements, the abundances of 198 and 55 DAPs matched well with the transcript levels of the corresponding DEGs in MDVLL vs MSVLL and MDVUL vs MSVUL, respectively, indicating the existence of concordances between protein and transcript levels.

摘要

甜橙幼苗用含有 2 mM(镁充足)或 0 mM(镁缺乏)Mg(NO3)2 的营养液进行灌溉 16 周。此后,使用 RNA-Seq 研究镁缺乏响应基因在上、下叶片叶脉中的表达,以了解镁缺乏引起叶脉木质化、扩大和开裂的分子机制,这种现象仅出现在下部叶片中。在这项研究中,在镁缺乏下叶片叶脉(MDVLL)与镁充足下叶片叶脉(MSVLL)和镁缺乏上叶片叶脉(MDVUL)与镁充足上叶片叶脉(MSVUL)之间,分别鉴定出 3065 个上调和 1220 个下调基因,以及 1390 个上调和 375 个下调基因。MDVLL 与 MSVLL 之间和 MDVUL 与 MSVUL 之间有 1473 个共同差异表达基因(DEG),其中 1463 个显示相同的表达趋势。镁缺乏引起的下部叶片叶脉木质化、扩大和开裂可能与以下因素有关:(i)大量参与木质素生物合成途径、细胞周期调控和细胞壁代谢的转录因子和基因上调;(ii)活性氧、植物激素和细胞壁完整性信号转导被激活。蛋白质组和转录组的联合分析表明,在 MDVLL 与 MSVLL 之间和 MDVUL 与 MSVUL 之间,DEG 和差异丰度蛋白(DAP)之间有 287 和 56 个共同元素,在这些共同元素中,198 个和 55 个 DAP 的丰度与 MDVLL 与 MSVLL 和 MDVUL 与 MSVUL 之间相应 DEG 的转录水平相匹配,表明蛋白质和转录水平之间存在一致性。

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