Nogales Amaia, Nobre Tânia, Valadas Vera, Ragonezi Carla, Döring Matthias, Polidoros Alexios, Arnholdt-Schmitt Birgit
Brief Funct Genomics. 2016 Jul;15(4):288-97. doi: 10.1093/bfgp/elv030. Epub 2015 Aug 20.
Molecular plant breeding usually overlooks the genetic variability that arises from the association of plants with endophytic microorganisms, when looking at agronomic interesting target traits. This source of variability can have crucial effects on the functionality of the organism considered as a whole (the holobiont), and therefore can be selectable in breeding programs. However, seeing the holobiont as a unit for selection and improvement in breeding programs requires novel approaches for genotyping and phenotyping. These should not focus just at the plant level, but also include the associated endophytes and their functional effects on the plant, to make effective desirable trait screenings. The present review intends to draw attention to a new research field on functional hologenomics that if associated with adequate phenotyping tools could greatly increase the efficiency of breeding programs.
在关注具有农艺学意义的目标性状时,分子植物育种通常会忽略植物与内生微生物共生所产生的遗传变异性。这种变异来源可能会对作为一个整体的生物体(全生物)的功能产生关键影响,因此在育种计划中是可以选择的。然而,将全生物视为育种计划中选择和改良的单位,需要新的基因分型和表型分析方法。这些方法不应仅关注植物层面,还应包括相关的内生菌及其对植物的功能影响,以便进行有效的理想性状筛选。本综述旨在引起人们对功能全息基因组学这一新兴研究领域的关注,如果与适当的表型分析工具相结合,可以大大提高育种计划的效率。