Institute of Industrial and Forage Crops, HAO-DEMETER, 41335 Larissa, Greece.
Institute of Plant Breeding and Genetic Resources, HAO-DEMETER, 57001 Thessaloniki, Greece.
J Exp Bot. 2021 Jul 28;72(15):5356-5371. doi: 10.1093/jxb/erab227.
In order to tackle the cumulative adverse effects of global climate change, reduced farmland, and heightened needs of an ever-increasing world population, modern agriculture is in urgent search of solutions that can ensure world food security and sustainable development. Classical crop breeding is still a powerful method to obtain crops with valued agronomical traits, but its potential is gradually being compromised by the menacing decline of genetic variation. Resorting to the epigenome as a source of variation could serve as a promising alternative. Here, we discuss current status of epigenetics-mediated crop breeding (epibreeding), highlight its advances and limitations, outline currently available methodologies, and propose novel RNA-based strategies to modify the epigenome in a gene-specific and transgene-free manner.
为了解决全球气候变化的累积不利影响、减少的农田以及不断增长的世界人口的更高需求,现代农业迫切需要找到既能确保世界粮食安全又能实现可持续发展的解决方案。经典的作物育种仍然是获得具有有价值农艺性状的作物的有力方法,但它的潜力正逐渐受到遗传变异威胁性下降的影响。利用表观基因组作为变异的来源可能是一种有前途的替代方法。在这里,我们讨论了基于表观遗传学的作物育种(epibreeding)的现状,强调了它的进展和局限性,概述了现有的方法,并提出了新的基于 RNA 的策略,以非转基因的方式特异性地修饰基因组。