State Key Laboratory of Crop Stress Adaptation and Improvement, School of Life Sciences, Henan University, Kaifeng, China.
Sanya Institute of Henan University, Sanya, Hainan, China.
Plant Biotechnol J. 2023 May;21(5):1033-1043. doi: 10.1111/pbi.14016. Epub 2023 Feb 2.
Cold stress affects crop growth and productivity worldwide. Understanding the genetic basis of cold tolerance in germplasms is critical for crop improvement. Plants can coordinate environmental stimuli of light and temperature to regulate cold tolerance. However, it remains unknown which gene in germplasms could have such function. Here, we utilized genome-wide association study (GWAS) to investigate the cold tolerance of wild and cultivated tomato accessions and discovered that increased cold tolerance is accompanied with tomato domestication. We further identified a 27-bp InDel in the promoter of the CONSTANS-like transcription factor (TF) SlBBX31 is significantly linked with cold tolerance. Coincidentally, a key regulator of light signalling, SlHY5, can directly bind to the SlBBX31 promoter to activate SlBBX31 transcription while the 27-bp InDel can prevent S1HY5 from transactivating SlBBX31. Parallel to these findings, we observed that the loss of function of SlBBX31 results in impaired tomato cold tolerance. SlBBX31 can also modulate the cold-induced expression of several ERF TFs including CBF2 and DREBs. Therefore, our study has uncovered that SlBBX31 is possibly selected during tomato domestication for cold tolerance regulation, providing valuable insights for the development of hardy tomato varieties.
冷胁迫影响全球作物的生长和生产力。了解种质资源中耐冷性的遗传基础对于作物改良至关重要。植物可以协调光和温度等环境刺激来调节耐冷性。然而,目前尚不清楚种质资源中的哪个基因具有这种功能。在这里,我们利用全基因组关联研究(GWAS)来研究野生和栽培番茄品系的耐冷性,发现耐冷性伴随着番茄的驯化而增加。我们进一步鉴定出 SlBBX31 启动子中的 27-bp InDel 与耐冷性显著相关。巧合的是,光信号的关键调节剂 SlHY5 可以直接结合 SlBBX31 启动子来激活 SlBBX31 转录,而 27-bp InDel 可以阻止 SlHY5 反式激活 SlBBX31。与此平行的是,我们观察到 SlBBX31 的功能丧失会导致番茄耐冷性受损。SlBBX31 还可以调节冷诱导的几个 ERF TF 的表达,包括 CBF2 和 DREBs。因此,我们的研究揭示了 SlBBX31 可能是在番茄驯化过程中被选择用于调节耐冷性的,这为培育耐寒番茄品种提供了有价值的见解。