High Temporal-Resolution Transcriptome Landscape of Early Maize Seed Development

生物 转录组 人类受精 植物 进化生物学 遗传学 基因表达 基因
作者
Fei Yi,Wei Gu,Jian Chen,Ning Song,Xiang Gao,Xiangbo Zhang,Yingsi Zhou,Xuxu Ma,Weibin Song,Haiming Zhao,Eddi Esteban,Asher Pasha,Nicholas J. Provart,Jinsheng Lai
出处
期刊:The Plant Cell [Oxford University Press]
卷期号:31 (5): 974-992 被引量:121
标识
DOI:10.1105/tpc.18.00961
摘要

The early maize (Zea mays) seed undergoes several developmental stages after double fertilization to become fully differentiated within a short period of time, but the genetic control of this highly dynamic and complex developmental process remains largely unknown. Here, we report a high temporal-resolution investigation of transcriptomes using 31 samples collected at an interval of 4 or 6 h within the first six days of seed development. These time-course transcriptomes were clearly separated into four distinct groups corresponding to the stages of double fertilization, coenocyte formation, cellularization, and differentiation. A total of 22,790 expressed genes including 1415 transcription factors (TFs) were detected in early stages of maize seed development. In particular, 1093 genes including 110 TFs were specifically expressed in the seed and displayed high temporal specificity by expressing only in particular period of early seed development. There were 160, 22, 112, and 569 seed-specific genes predominantly expressed in the first 16 h after pollination, coenocyte formation, cellularization, and differentiation stage, respectively. In addition, network analysis predicted 31,256 interactions among 1317 TFs and 14,540 genes. The high temporal-resolution transcriptome atlas reported here provides an important resource for future functional study to unravel the genetic control of seed development.
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