Wang Ya-Hui, Que Feng, Wang Guang-Long, Hao Jian-Nan, Li Tong, Xu Zhi-Sheng, Xiong Ai-Sheng
State Key Laboratory of Crop Genetics and Germplasm Enhancement, Ministry of Agriculture and Rural Affairs Key Laboratory of Biology and Germplasm Enhancement of Horticultural Crops in East China, College of Horticulture, Nanjing Agricultural University, Nanjing, China.
School of Life Sciences and Food Engineering, Huaiyin Institute of Technology, Huai'an, China.
Front Genet. 2019 Mar 29;10:247. doi: 10.3389/fgene.2019.00247. eCollection 2019.
Carrot is an important root vegetable crop with a variety of nutrients. As the main product of carrots, the growth and development of fleshy roots directly determine the yield and quality of carrots. However, molecular mechanism underlying the carrot root formation and expansion is still limited. In our study, isobaric tags for relative and absolute quantification (iTRAQ) was utilized to explore the differentially expressed proteins (DEPs) during different developmental stages of carrot roots. Overall, 2,845 proteins were detected, of which 118 were significantly expressed in all three stages. DEPs that participated in several growth metabolisms were identified, including energy metabolism, defense metabolism, cell growth and shape regulation. Among them, two expansin proteins were obtained. A total of 30 expansin genes were identified based on the carrot genome database. Structure analysis showed that carrot expansin gene family was relatively conserved. Based on the expression analysis, we found that the expression profile of expansins genes was up-regulated during the vigorous growing period of carrot root. Furthermore, there was a consistent relationship between the expression patterns of mRNA and protein. The results indicated that expansin proteins might play important roles during root development in carrot. Our work provided useful information for understanding molecular mechanism of carrot root development.
胡萝卜是一种重要的根菜类作物,富含多种营养成分。作为胡萝卜的主要产品,肉质根的生长发育直接决定了胡萝卜的产量和品质。然而,胡萝卜根形成和膨大的分子机制仍不明确。在我们的研究中,采用相对和绝对定量同位素标记(iTRAQ)技术来探究胡萝卜根不同发育阶段的差异表达蛋白(DEP)。总体而言,共检测到2845种蛋白质,其中118种在所有三个阶段均有显著表达。鉴定出参与多种生长代谢的DEP,包括能量代谢、防御代谢、细胞生长和形态调控。其中,获得了两种扩张蛋白。基于胡萝卜基因组数据库共鉴定出30个扩张蛋白基因。结构分析表明,胡萝卜扩张蛋白基因家族相对保守。基于表达分析,我们发现扩张蛋白基因在胡萝卜根的旺盛生长期表达谱上调。此外,mRNA和蛋白质的表达模式之间存在一致的关系。结果表明,扩张蛋白可能在胡萝卜根发育过程中发挥重要作用。我们的工作为理解胡萝卜根发育的分子机制提供了有用信息。