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拟南芥种子贮藏物质积累相关的基因共表达簇和潜在调控元件。

Gene coexpression clusters and putative regulatory elements underlying seed storage reserve accumulation in Arabidopsis.

机构信息

Agricultural Lipid Biotechnology Program, Department of Agricultural, Food and Nutritional Science, University of Alberta, Edmonton, Canada.

出版信息

BMC Genomics. 2011 Jun 2;12:286. doi: 10.1186/1471-2164-12-286.

Abstract

BACKGROUND

In Arabidopsis, a large number of genes involved in the accumulation of seed storage reserves during seed development have been characterized, but the relationship of gene expression and regulation underlying this physiological process remains poorly understood. A more holistic view of this molecular interplay will help in the further study of the regulatory mechanisms controlling seed storage compound accumulation.

RESULTS

We identified gene coexpression networks in the transcriptome of developing Arabidopsis (Arabidopsis thaliana) seeds from the globular to mature embryo stages by analyzing publicly accessible microarray datasets. Genes encoding the known enzymes in the fatty acid biosynthesis pathway were found in one coexpression subnetwork (or cluster), while genes encoding oleosins and seed storage proteins were identified in another subnetwork with a distinct expression profile. In the triacylglycerol assembly pathway, only the genes encoding diacylglycerol acyltransferase 1 (DGAT1) and a putative cytosolic "type 3" DGAT exhibited a similar expression pattern with genes encoding oleosins. We also detected a large number of putative cis-acting regulatory elements in the promoter regions of these genes, and promoter motifs for LEC1 (LEAFY COTYLEDON 1), DOF (DNA-binding-with-One-Finger), GATA, and MYB transcription factors (TF), as well as SORLIP5 (Sequences Over-Represented in Light-Induced Promoters 5), are overrepresented in the promoter regions of fatty acid biosynthetic genes. The conserved CCAAT motifs for B3-domain TFs and binding sites for bZIP (basic-leucine zipper) TFs are enriched in the promoters of genes encoding oleosins and seed storage proteins.

CONCLUSIONS

Genes involved in the accumulation of seed storage reserves are expressed in distinct patterns and regulated by different TFs. The gene coexpression clusters and putative regulatory elements presented here provide a useful resource for further experimental characterization of protein interactions and regulatory networks in this process.

摘要

背景

在拟南芥中,大量参与种子发育过程中种子储存储备积累的基因已经被鉴定出来,但这个生理过程背后的基因表达和调控关系仍然知之甚少。对这种分子相互作用的更全面的了解将有助于进一步研究控制种子储存化合物积累的调控机制。

结果

我们通过分析公开的微阵列数据集,鉴定了拟南芥种子从球形到成熟胚胎发育过程中转录组中的基因共表达网络。在一个共表达子网络(或簇)中发现了编码脂肪酸生物合成途径中已知酶的基因,而在另一个具有不同表达模式的子网络中鉴定了编码油体蛋白和种子储存蛋白的基因。在三酰基甘油组装途径中,只有编码二酰甘油酰基转移酶 1(DGAT1)和一种假定的细胞质“类型 3”DGAT 的基因与编码油体蛋白的基因表现出相似的表达模式。我们还在这些基因的启动子区域检测到大量的假定顺式作用调控元件,以及 LEAFY COTYLEDON 1(LEC1)、DNA 结合单指(DOF)、GATA 和 MYB 转录因子(TF)的启动子基序,以及 SORLIP5(序列在光诱导启动子 5 中过度表达),在脂肪酸生物合成基因的启动子区域中过度表达。B3 结构域 TF 的保守 CCAAT 基序和 bZIP(碱性亮氨酸拉链)TF 的结合位点在编码油体蛋白和种子储存蛋白的基因启动子中富集。

结论

参与种子储存储备积累的基因以不同的模式表达,并受不同的 TF 调控。这里提出的基因共表达簇和假定的调控元件为进一步研究这个过程中的蛋白质相互作用和调控网络提供了有用的资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4eb5/3126783/14db46d5738c/1471-2164-12-286-1.jpg

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