Department of Agronomy Animal Food Natural Resources and Environment, University of Padova, Viale dell'Università, 16 35020, Legnaro, Italy.
Institute of Evolution, University of Haifa, Abba Khoushy Ave 199, 3498838, Haifa, Israel.
Theor Appl Genet. 2022 Nov;135(11):3987-4003. doi: 10.1007/s00122-022-04122-y. Epub 2022 Jun 9.
Crop wild relatives (CWRs) are recognized as the best potential source of traits for crop improvement. However, successful crop improvement using CWR relies on identifying variation in genes controlling desired traits in plant germplasms and subsequently incorporating them into cultivars. Epigenetic diversity may provide an additional layer of variation within CWR and can contribute novel epialleles for key traits for crop improvement. There is emerging evidence that epigenetic variants of functional and/or agronomic importance exist in CWR gene pools. This provides a rationale for the conservation of epigenotypes of interest, thus contributing to agrobiodiversity preservation through conservation and (epi)genetic monitoring. Concepts and techniques of classical and modern breeding should consider integrating recent progress in epigenetics, initially by identifying their association with phenotypic variations and then by assessing their heritability and stability in subsequent generations. New tools available for epigenomic analysis offer the opportunity to capture epigenetic variation and integrate it into advanced (epi)breeding programmes. Advances in -omics have provided new insights into the sources and inheritance of epigenetic variation and enabled the efficient introduction of epi-traits from CWR into crops using epigenetic molecular markers, such as epiQTLs.
作物野生近缘种(CWR)被认为是改良作物的最佳潜在性状来源。然而,成功地利用作物野生近缘种进行作物改良依赖于识别控制植物种质中目标性状的基因的变异,然后将其整合到品种中。表观遗传多样性可以在作物野生近缘种中提供额外的变异层,并为作物改良的关键性状提供新的表观等位基因。有新的证据表明,功能和/或农艺重要性的表观遗传变异存在于作物野生近缘种的基因库中。这为有兴趣的表型型的保护提供了一个理由,从而通过保护和(表观)遗传监测为农业生物多样性的保存做出贡献。经典和现代育种的概念和技术应该考虑整合最近在表观遗传学方面的进展,最初是通过识别它们与表型变异的关联,然后评估它们在后代中的遗传力和稳定性。新的表观基因组分析工具提供了捕获表观遗传变异并将其整合到高级(表观)育种计划中的机会。组学的进展提供了对表观遗传变异的来源和遗传的新见解,并使我们能够使用表观遗传分子标记(如 epiQTL)从作物野生近缘种中有效地引入表型性状。