Till Bradley J, Datta Sneha, Jankowicz-Cieslak Joanna
Plant Breeding and Genetics Laboratory, Joint FAO/IAEA Division of Nuclear Techniques in Food and Agriculture, IAEA Laboratories Seibersdorf, International Atomic Energy Agency, Vienna International Centre, Vienna, Austria.
Adv Biochem Eng Biotechnol. 2018;164:139-160. doi: 10.1007/10_2017_54.
Gene space: the final frontier in plant functional genomics. These are the voyages of TILLING, the reverse-genetics strategy that sought to boldly go where no-one had gone before by combining high-density chemical mutagenesis with high-throughput mutation discovery. Its 18-year mission has been to explore new technologies such as next generation sequencing and to seek out new strategies like in silico databases of catalogued EMS-induced mutations from entire mutant plant populations. This chapter is a clip show highlighting key milestones in the development of TILLING. Use of different technologies for the discovery of induced mutations, establishment of TILLING in different plant species, what has been learned about the effect of chemical mutagens on the plant genome, development of exome capture sequencing in wheat, and a look to the future of reverse-genetics with targeted genome editing are discussed. Graphical Abstract.
植物功能基因组学的终极前沿。这些是定向诱导基因组局部突变(TILLING)的征程,这一反向遗传学策略试图通过将高密度化学诱变与高通量突变发现相结合,大胆地前往前人未至之地。其18年的使命是探索诸如新一代测序等新技术,并寻找新策略,如来自整个突变植物群体的已编目甲基磺酸乙酯(EMS)诱导突变的电子数据库。本章是一个剪辑展示,突出了TILLING发展中的关键里程碑。讨论了用于发现诱导突变的不同技术、在不同植物物种中建立TILLING、关于化学诱变剂对植物基因组影响的了解、小麦外显子捕获测序的发展,以及对靶向基因组编辑反向遗传学未来的展望。图形摘要。