Shen Zhikang, Chen Min
College of Life Science and Technology, Huazhong Agricultural University, Wuhan, China.
State Key Laboratory of Crop Stress Adaptation and Improvement, School of Life Sciences, Henan University, Kaifeng, China.
Front Plant Sci. 2022 Feb 22;13:837130. doi: 10.3389/fpls.2022.837130. eCollection 2022.
Hypocotyl elongation is the key step of soybean seed germination, as well an important symbol of seedling vitality, but the regulatory mechanisms remain largely elusive. To address the problem, bioinformatics approaches along with the weighted gene co-expression network analysis (WGCNA) were carried out to elucidate the regulatory networks and identify key regulators underlying soybean hypocotyl elongation at transcriptional level. Combining results from WGCNA, yeast one hybridization, and phenotypic analysis of transgenic plants, a cyan module significantly associated with hypocotyl elongation was discerned, from which two novel regulatory submodules were identified as key candidates underpinning soybean hypocotyl elongation by modulating auxin and light responsive signaling pathways. Taken together, our results constructed the regulatory network and identified novel transcriptional regulators of soybean hypocotyl elongation based on WGCNA, which provide new insights into the global regulatory basis of soybean hypocotyl elongation and offer potential targets for soybean improvement to acquire cultivars with well-tuned hypocotyl elongation and seed germination vigor.
下胚轴伸长是大豆种子萌发的关键步骤,也是幼苗活力的重要标志,但其调控机制仍不清楚。为了解决这个问题,我们采用生物信息学方法并结合加权基因共表达网络分析(WGCNA)来阐明调控网络,并在转录水平上鉴定大豆下胚轴伸长的关键调控因子。结合WGCNA、酵母单杂交和转基因植物的表型分析结果,我们识别出一个与下胚轴伸长显著相关的蓝色模块,从中鉴定出两个新的调控子模块,它们通过调节生长素和光响应信号通路成为大豆下胚轴伸长的关键候选因子。总之,我们的研究结果构建了基于WGCNA的大豆下胚轴伸长调控网络,并鉴定了新的转录调控因子,这为大豆下胚轴伸长的整体调控基础提供了新见解,并为大豆改良提供了潜在靶点,以培育具有良好下胚轴伸长和种子萌发活力的品种。