Copenhagen Plant Science Centre, Department of Plant and Environmental Sciences, University of Copenhagen, Frederiksberg, Denmark.
Physiol Plant. 2020 Aug;169(4):586-599. doi: 10.1111/ppl.13079. Epub 2020 Mar 14.
Stable genetic transformation of plants is a low-efficiency process, and identification of positive transformants usually relies on screening for expression of a co-transformed marker gene. Often this involves germinating seeds on solid media containing a selection reagent. Germination on solid media requires surface sterilization of seeds and careful aseptic technique to prevent microbial contamination, but surface sterilization techniques are time consuming and can cause seed mortality if not performed carefully. We developed an antimicrobial cocktail that can be added to solid media to inhibit bacterial and fungal growth without impairing germination, allowing us to bypass the surface sterilization step. Adding a combination of terbinafine (1 μM) and timentin (200 mg l ) to Murashige and Skoog agar delayed the onset of observable microbial growth and did not affect germination of non-sterile seeds from 10 different wild-type and mutant Arabidopsis thaliana accessions. We named this antimicrobial solid medium "MSTT agar". Seedlings sown in non-sterile conditions could be maintained on MSTT agar for up to a week without observable contamination. This medium was compatible with rapid screening methods for hygromycin B, phosphinothricin (BASTA) and nourseothricin resistance genes, meaning that positive transformants can be identified from non-sterile seeds in as little as 4 days after stratification, and transferred to soil before the onset of visible microbial contamination. By using MSTT agar we were able to select genetic transformants on solid media without seed surface sterilization, eliminating a tedious and time-consuming step.
植物的稳定遗传转化是一个低效率的过程,阳性转化体的鉴定通常依赖于共转化标记基因表达的筛选。通常,这涉及到在含有选择试剂的固体培养基上萌发种子。固体培养基上的萌发需要对种子进行表面消毒,并采用严格的无菌技术以防止微生物污染,但表面消毒技术耗时且如果操作不当可能导致种子死亡。我们开发了一种抗菌鸡尾酒,可以添加到固体培养基中,在不影响萌发的情况下抑制细菌和真菌的生长,从而使我们能够跳过表面消毒步骤。在 Murashige 和 Skoog 琼脂中添加特比萘芬(1 μM)和替莫西林(200mg/L)可以延迟可观察到的微生物生长的开始,并且不会影响来自 10 种不同野生型和突变型拟南芥品系的非无菌种子的萌发。我们将这种抗菌固体培养基命名为"MSTT 琼脂"。在非无菌条件下播种的幼苗可以在 MSTT 琼脂上维持长达一周而没有可观察到的污染。这种培养基与潮霉素 B、草铵膦(巴斯塔)和壮观霉素抗性基因的快速筛选方法兼容,这意味着在分层后 4 天内就可以从非无菌种子中鉴定出阳性转化体,并在可见微生物污染开始之前转移到土壤中。通过使用 MSTT 琼脂,我们能够在不进行种子表面消毒的情况下在固体培养基上选择遗传转化体,从而消除了繁琐和耗时的步骤。