Juurakko Collin L, Bredow Melissa, diCenzo George C, Walker Virginia K
Department of Biology Queen's University Kingston Ontario Canada.
Present address: Department of Plant Pathology and Microbiology Iowa State University Ames Iowa USA.
Plant Direct. 2022 Sep 12;6(9):e449. doi: 10.1002/pld3.449. eCollection 2022 Sep.
The model forage crop, , has a cluster of ice recrystallization inhibition () genes, which encode antifreeze proteins that function by adsorbing to ice crystals and inhibiting their growth. The genes were targeted for knockdown using a cold-induced promoter from rice (pr) to drive miRNA. The transgenic lines showed no apparent pleiotropic developmental defects but had reduced antifreeze activity as assessed by assays for ice-recrystallization inhibition, thermal hysteresis, electrolyte leakage, and leaf infrared thermography. Strikingly, the number of cold-acclimated transgenic plants that survived freezing at -8°C was reduced by half or killed entirely, depending on the line, compared with cold-acclimated wild type plants. In addition, more leaf damage was apparent at subzero temperatures in knockdowns after infection with an ice nucleating pathogen, . Although antifreeze proteins have been studied for almost 60 years, this is the first unequivocal demonstration of their function by knockdown in any organism, and their dual contribution to freeze protection as well as pathogen susceptibility, independent of obvious developmental defects. These proteins are thus of potential interest in a wide range of biotechnological applications from cryopreservation, to frozen product additives, to the engineering of transgenic crops with enhanced pathogen and freezing tolerance.
模式饲用作物[作物名称未给出]有一簇冰重结晶抑制(IRI)基因,这些基因编码抗冻蛋白,其作用方式是吸附到冰晶上并抑制其生长。利用来自水稻的冷诱导启动子(pr)驱动miRNA,对这些基因进行敲低。通过冰重结晶抑制、热滞、电解质渗漏和叶片红外热成像分析评估,转基因株系没有明显的多效性发育缺陷,但抗冻活性降低。令人惊讶的是,与冷驯化的野生型植株相比,在-8°C冷冻条件下存活的冷驯化转基因植株数量减少了一半或全部死亡,具体取决于株系。此外,在用冰核病原体[病原体名称未给出]感染后,在低温条件下,敲低植株的叶片损伤更明显。尽管抗冻蛋白已经被研究了近60年,但这是首次在任何生物体中通过敲低明确证明其功能,以及它们对冷冻保护和病原体易感性的双重贡献,且与明显的发育缺陷无关。因此,这些蛋白在从低温保存到冷冻产品添加剂,再到具有增强病原体和冷冻耐受性的转基因作物工程等广泛的生物技术应用中具有潜在的应用价值。