Miao Cuicui, Zhang Yuting, Bai Xuechun, Qin Tao
College of Grassland Agriculture, Northwest A&F University, Yangling District, Xianyang 712100, China.
Life (Basel). 2022 Jun 8;12(6):860. doi: 10.3390/life12060860.
Perennial ryegrass ( L.) is an important turfgrass and gramineous forage widely grown in temperate regions around the world. However, its perennial nature leads to the inevitable exposure of perennial ryegrass to various environmental stresses on a seasonal basis and from year to year. Like other plants, perennial ryegrass has evolved sophisticated mechanisms to make appropriate adjustments in growth and development in order to adapt to the stress environment at both the physiological and molecular levels. A thorough understanding of the mechanisms of perennial ryegrass response to abiotic stresses is crucial for obtaining superior stress-tolerant varieties through molecular breeding. Over the past decades, studies of perennial ryegrass at the molecular and genetic levels have revealed a lot of useful information to understand the mechanisms of perennial ryegrass adaptation to an adverse environment. Unfortunately, molecular mechanisms by which perennial ryegrass adapts to abiotic stresses have not been reviewed thus far. In this review, we summarize the recent works on the genetic and molecular mechanisms of perennial ryegrass response to the major abiotic stresses (i.e., drought, salinity, and extreme temperatures) and discuss new directions for future studies. Such knowledge will provide valuable information for molecular breeding in perennial ryegrass to improve stress resistance and promote the sustainability of agriculture and the environment.
多年生黑麦草(Lolium perenne L.)是一种重要的草坪草和禾本科牧草,广泛种植于世界各地的温带地区。然而,其多年生特性导致多年生黑麦草不可避免地会在季节更替和逐年变化中遭受各种环境胁迫。与其他植物一样,多年生黑麦草已经进化出复杂的机制,以便在生理和分子水平上对生长发育进行适当调整,从而适应胁迫环境。深入了解多年生黑麦草对非生物胁迫的响应机制,对于通过分子育种获得优良的耐胁迫品种至关重要。在过去几十年中,对多年生黑麦草在分子和遗传水平上的研究揭示了许多有助于理解其适应逆境环境机制的有用信息。遗憾的是,迄今为止尚未对多年生黑麦草适应非生物胁迫的分子机制进行综述。在本综述中,我们总结了多年生黑麦草对主要非生物胁迫(即干旱、盐度和极端温度)响应的遗传和分子机制方面的最新研究成果,并讨论了未来研究的新方向。这些知识将为多年生黑麦草的分子育种提供有价值的信息,以提高其抗逆性,促进农业和环境的可持续发展。