Vegenov, Pen ar Prat, 29250 Saint-Pol-de-Léon, France.
Vegenov, Pen ar Prat, 29250 Saint-Pol-de-Léon, France.
Plant Sci. 2020 Nov;300:110586. doi: 10.1016/j.plantsci.2020.110586. Epub 2020 Jul 24.
Haplomethods are key biotechnological tools that make it possible to rapidly produce perfectly homozygous lines, speeding up plant breeding programs. Under specific stress conditions, microspores are reprogrammed toward sporophytic pathways, leading to embryo formation. Various endogenous and exogenous factors affect embryo yield in androgenesis, so the improvement of androgenesis efficiency requires the development of early, reliable and robust reactivity markers. During the last decade, numerous cytological, cellular and biochemical approaches were carried out to finely characterize microspore development and fate during androgenesis. However, the different available markers are often species-dependent, and their development and application are time-consuming and cumbersome. In this study, we show the suitable use of impedance flow cytometry (IFC) to develop new robust, reliable and strong markers of androgenesis reactivity in wheat, leading to: (i) routine monitoring of the viability of heterogeneous cell cultures; (ii) quick and simple evaluation of stress treatment efficiency; and (iii) early prediction of embryo yields from microspore suspensions. IFC can therefore provide the fine characterization of all of the microspore developmental pathways that occur in a cell suspension, for embryogenic microspores as well as pollen-like microspores. IFC technology has become a very useful tool to track and characterize wheat microspores in androgenesis, but can also be adapted to other species and other in vitro cell culture systems.
单倍体育种方法是一种关键的生物技术工具,可用于快速产生完全纯合的系,从而加速植物育种计划。在特定的胁迫条件下,小孢子被重新编程为孢子体途径,导致胚胎形成。各种内源性和外源性因素影响雄核发育中的胚胎产量,因此提高雄核发育效率需要开发早期、可靠和稳健的反应性标记物。在过去的十年中,进行了许多细胞学、细胞和生化方法来精细表征雄核发育过程中小孢子的发育和命运。然而,不同的可用标记物通常是物种依赖性的,其开发和应用既费时又繁琐。在这项研究中,我们展示了阻抗流式细胞术(IFC)在小麦中开发新的稳健、可靠和强的雄核发育反应性标记物的合适用途,从而:(i)常规监测异质细胞培养物的活力;(ii)快速简单地评估应激处理效率;(iii)从小孢子悬浮液中早期预测胚胎产量。因此,IFC 可以提供细胞悬浮液中所有小孢子发育途径的精细特征,包括胚胎发生小孢子和花粉样小孢子。IFC 技术已成为跟踪和表征小麦雄核发育中小孢子的非常有用的工具,但也可以适应其他物种和其他体外细胞培养系统。