Du Juan, Wang Shoudong, He Cunman, Zhou Bin, Ruan Yong-Ling, Shou Huixia
State Key Laboratory of Plant Physiology and Biochemistry, College of Life Sciences, Zhejiang University, 866 Yuhangtang Road, Hangzhou, 310058, China.
Institute of Crop Science, Anhui Academy of Agricultural Sciences, Hefei, 230031, China.
J Exp Bot. 2017 Apr 1;68(8):1955-1972. doi: 10.1093/jxb/erw460.
To understand the gene expression networks controlling soybean seed set and size, transcriptome analyses were performed in three early seed developmental stages, using two genotypes with contrasting seed size. The two-dimensional data set provides a comprehensive and systems-level view on dynamic gene expression networks underpinning soybean seed set and subsequent development. Using pairwise comparisons and weighted gene coexpression network analyses, we identified modules of coexpressed genes and hub genes for each module. Of particular importance are the discoveries of specific modules for the large seed size variety and for seed developmental stages. A large number of candidate regulators for seed size, including those involved in hormonal signaling pathways and transcription factors, were transiently and specifically induced in the early developmental stages. The soybean homologs of a brassinosteroid signaling receptor kinase, a brassinosteroid-signaling kinase, were identified as hub genes operating in the seed coat network in the early seed maturation stage. Overexpression of a candidate seed size regulatory gene, GmCYP78A5, in transgenic soybean resulted in increased seed size and seed weight. Together, these analyses identified a large number of potential key regulators controlling soybean seed set, seed size, and, consequently, yield potential, thereby providing new insights into the molecular networks underlying soybean seed development.
为了解控制大豆结实和种子大小的基因表达网络,利用两种种子大小差异显著的基因型,在三个种子发育早期阶段进行了转录组分析。二维数据集为支撑大豆结实及后续发育的动态基因表达网络提供了全面的系统层面视角。通过成对比较和加权基因共表达网络分析,我们确定了共表达基因模块以及每个模块的枢纽基因。对于大粒种子品种和种子发育阶段的特定模块的发现尤为重要。大量种子大小的候选调控因子,包括那些参与激素信号通路和转录因子的因子,在发育早期被瞬时且特异性地诱导。油菜素内酯信号受体激酶、油菜素内酯信号激酶的大豆同源物被鉴定为种子成熟早期种皮网络中的枢纽基因。在转基因大豆中过表达候选种子大小调控基因GmCYP78A5导致种子大小和种子重量增加。总之,这些分析确定了大量控制大豆结实、种子大小以及产量潜力的潜在关键调控因子,从而为大豆种子发育的分子网络提供了新的见解。