Joint International Research Laboratory of Metabolic & Developmental Sciences, State Key Laboratory of Hybrid Rice, School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai 200240, China.
Key Laboratory of Crop Marker-Assisted Breeding of Huaian Municipality, Jiangsu Collaborative Innovation Center of Regional Modern Agriculture and Environmental Protection, Huaian 223300, China.
Plant Physiol. 2021 Dec 4;187(4):2405-2418. doi: 10.1093/plphys/kiab391.
Seed germination is critical for plant survival and agricultural production, which is affected by both internal seed factors and external environmental conditions. However, the genetic basis and underlying molecular mechanisms of early seed germination in crops remain largely unclear. Here, we report that R2R3 MYB transcription factor Carbon Starved Anther (CSA) is expressed specifically in Oryza sativa embryo and aleurone in response to seed imbibition, peaking at 3-6 h and undetectable by 24-h post-imbibition. CSA seeds germinated more quickly than wild-type rice seeds and had higher levels of amylase activity, glucose, and inactive abscisic acid-glucose ester (ABA-GE), but lower levels of ABA. Through analyzing the CSA-associated transcriptome and CSA binding to downstream target genes, we identified two glycolytic genes as direct CSA targets. CSA inhibits Amylase 3A expression to limit glucose production from starch and activates Os3BGlu6 expression to promote de-conjugation of ABA-GE to ABA; these functions serve to slow germination and improve seedling resilience to abiotic stress in the first 3 weeks of growth. Therefore, this study unveils a protection mechanism conferred by CSA during early seed germination by balancing glucose and ABA metabolism to optimize seed germination and stress response fitness.
种子萌发对于植物的生存和农业生产至关重要,它受到内部种子因素和外部环境条件的影响。然而,作物早期种子萌发的遗传基础和潜在分子机制在很大程度上仍不清楚。在这里,我们报告说,R2R3 MYB 转录因子 Carbon Starved Anther(CSA)在种子吸胀时特异性表达于水稻胚和糊粉层,在吸胀后 3-6 小时达到峰值,24 小时后无法检测到。CSA 种子比野生型水稻种子萌发得更快,淀粉酶活性、葡萄糖和非活性脱落酸-葡萄糖酯(ABA-GE)水平更高,但 ABA 水平更低。通过分析 CSA 相关的转录组和 CSA 与下游靶基因的结合,我们鉴定出两个糖酵解基因是 CSA 的直接靶标。CSA 抑制淀粉酶 3A 的表达,以限制淀粉产生的葡萄糖,并激活 Os3BGlu6 的表达,以促进 ABA-GE 与 ABA 的去共轭;这些功能有助于减缓萌发,并提高种子在生长的前 3 周对非生物胁迫的幼苗弹性。因此,这项研究揭示了 CSA 在早期种子萌发过程中通过平衡葡萄糖和 ABA 代谢来优化种子萌发和应激反应适应性的保护机制。