Yang Rui, Sun Yuan, Zhu Xiaoling, Jiao Baozhen, Sun Sifan, Chen Yun, Li Lizhu, Wang Xue, Zeng Qian, Liang Qiqi, Huang Binquan
State Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, School of Agriculture, Yunnan University, Kunming, 650500, China.
Southwest United Graduate School, Kunming, 650500, China.
New Phytol. 2024 Feb;241(4):1676-1689. doi: 10.1111/nph.19426. Epub 2023 Dec 3.
In potato, stolon swelling is a complex and highly regulated process, and much more work is needed to fully understand the underlying mechanisms. We identified a novel tuber-specific basic helix-loop-helix (bHLH) transcription factor, StbHLH93, based on the high-resolution transcriptome of potato tuber development. StbHLH93 is predominantly expressed in the subapical and perimedullary region of the stolon and developing tubers. Knockdown of StbHLH93 significantly decreased tuber number and size, resulting from suppression of stolon swelling. Furthermore, we found that StbHLH93 directly binds to the plastid protein import system gene TIC56 promoter, activates its expression, and is involved in proplastid-to-amyloplast development during the stolon-to-tuber transition. Knockdown of the target TIC56 gene resulted in similarly problematic amyloplast biogenesis and tuberization. Taken together, StbHLH93 functions in the differentiation of proplastids to regulate stolon swelling. This study highlights the critical role of proplastid-to-amyloplast interconversion during potato tuberization.
在马铃薯中,匍匐茎膨大是一个复杂且受到高度调控的过程,需要开展更多工作才能全面了解其潜在机制。基于马铃薯块茎发育的高分辨率转录组,我们鉴定出了一种新的块茎特异性碱性螺旋-环-螺旋(bHLH)转录因子StbHLH93。StbHLH93主要在匍匐茎的亚顶端和髓周区域以及发育中的块茎中表达。敲低StbHLH93会显著减少块茎数量和大小,这是由于匍匐茎膨大受到抑制所致。此外,我们发现StbHLH93直接结合到质体蛋白导入系统基因TIC56的启动子上,激活其表达,并在匍匐茎向块茎转变过程中参与前质体到淀粉体的发育。敲低靶基因TIC56会导致类似的淀粉体生物发生和块茎形成问题。综上所述,StbHLH93在前质体分化中发挥作用以调控匍匐茎膨大。这项研究突出了前质体到淀粉体相互转化在马铃薯块茎形成过程中的关键作用。