Gupta Sanjay Mohan, Arora Sandeep, Mirza Neelofar, Pande Anjali, Lata Charu, Puranik Swati, Kumar J, Kumar Anil
Molecular Biology and Genetic Engineering Laboratory, Defence Institute of Bio-Energy Research, Defence Research and Development OrganisationHaldwani, India.
Department of Molecular Biology and Genetic Engineering, College of Basic Sciences and Humanities, G. B. Pant University of Agriculture and TechnologyPantnagar, India.
Front Plant Sci. 2017 Apr 25;8:643. doi: 10.3389/fpls.2017.00643. eCollection 2017.
Crop growth and productivity has largely been vulnerable to various abiotic and biotic stresses that are only set to be compounded due to global climate change. Therefore developing improved varieties and designing newer approaches for crop improvement against stress tolerance have become a priority now-a-days. However, most of the crop improvement strategies are directed toward staple cereals such as rice, wheat, maize etc., whereas attention on minor cereals such as finger millet [ (L.) Gaertn.] lags far behind. It is an important staple in several semi-arid and tropical regions of the world with excellent nutraceutical properties as well as ensuring food security in these areas even during harsh environment. This review highlights the importance of finger millet as a model nutraceutical crop. Progress and prospects in genetic manipulation for the development of abiotic and biotic stress tolerant varieties is also discussed. Although limited studies have been conducted for genetic improvement of finger millets, its nutritional significance in providing minerals, calories and protein makes it an ideal model for nutrition-agriculture research. Therefore, improved genetic manipulation of finger millets for resistance to both abiotic and biotic stresses, as well as for enhancing nutrient content will be very effective in millet improvement. Apart from the excellent nutraceutical value of finger millet, its ability to tolerate various abiotic stresses and resist pathogens make it an excellent model for exploring vast genetic and genomic potential of this crop, which provide us a wide choice for developing strategies for making climate resilient staple crops.
作物生长和生产力在很大程度上易受各种非生物和生物胁迫的影响,而由于全球气候变化,这些胁迫只会变得更加复杂。因此,培育改良品种并设计新的作物改良方法以提高抗逆性已成为当今的优先事项。然而,大多数作物改良策略都针对水稻、小麦、玉米等主要谷物,而对诸如龙爪稷[(L.)Gaertn.]等小谷物的关注则远远落后。龙爪稷是世界上几个半干旱和热带地区的重要主食,具有出色的营养特性,并且即使在恶劣环境下也能确保这些地区的粮食安全。本综述强调了龙爪稷作为典型营养作物的重要性。还讨论了在开发抗非生物和生物胁迫品种的基因操作方面的进展和前景。尽管针对龙爪稷的遗传改良进行的研究有限,但其在提供矿物质、热量和蛋白质方面的营养意义使其成为营养农业研究的理想模型。因此,对龙爪稷进行改良的基因操作以提高其对非生物和生物胁迫的抗性以及增加营养成分,将对谷子改良非常有效。除了龙爪稷具有出色的营养保健价值外,其耐受各种非生物胁迫和抵抗病原体的能力使其成为探索该作物巨大遗传和基因组潜力的理想模型,这为我们制定培育适应气候变化的主食作物的策略提供了广泛选择。