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PNAS Plus: Comprehensive developmental profiles of gene activity in regions and subregions of the Arabidopsis seed

机译:PNAS Plus:拟南芥种子区域和亚区域内基因活性的全面发育概况

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摘要

Seeds are complex structures that consist of the embryo, endosperm, and seed-coat regions that are of different ontogenetic origins, and each region can be further divided into morphologically distinct subregions. Despite the importance of seeds for food, fiber, and fuel globally, little is known of the cellular processes that characterize each subregion or how these processes are integrated to permit the coordinated development of the seed. We profiled gene activity genome-wide in every organ, tissue, and cell type of Arabidopsis seeds from fertilization through maturity. The resulting mRNA datasets offer the most comprehensive description of gene activity in seeds with high spatial and temporal resolution, providing unique insights into the function of understudied seed regions. Global comparisons of mRNA populations reveal unexpected overlaps in the functional identities of seed subregions. Analyses of coexpressed gene sets suggest that processes that regulate seed size and filling are coordinated across several subregions. Predictions of gene regulatory networks based on the association of transcription factors with enriched DNA sequence motifs upstream of coexpressed genes identify regulators of seed development. These studies emphasize the utility of these datasets as an essential resource for the study of seed biology.
机译:种子是复杂的结构,由具有不同个体发育起源的胚,胚乳和种皮区域组成,每个区域可进一步分为形态上不同的子区域。尽管种子在全球范围内对于食品,纤维和燃料非常重要,但对于每个子区域的特征性细胞过程以及如何整合这些过程以实现种子的协调发育,人们所知甚少。我们分析了从受精到成熟的每个器官,组织和拟南芥种子细胞类型的全基因组基因活性。产生的mRNA数据集提供了具有高时空分辨率的种子基因活性的最全面描述,为深入研究种子区域的功能提供了独特见解。 mRNA种群的全球比较揭示了种子子区域的功能同一性意外重叠。共表达基因集的分析表明,调节种子大小和填充的过程在几个亚区域之间是协调的。基于转录因子与共表达基因上游的丰富DNA序列基序的关联对基因调控网络的预测,可以确定种子发育的调控因子。这些研究强调了这些数据集作为种子生物学研究必不可少的资源的实用性。

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