Singh Hira, Sekhon Bhallan Singh, Kumar Pradeep, Dhall Rajinder Kumar, Devi Ruma, Dhillon Tarsem Singh, Sharma Suman, Khar Anil, Yadav Ramesh Kumar, Tomar Bhoopal Singh, Ntanasi Theodora, Sabatino Leo, Ntatsi Georgia
Department of Vegetable Science, Punjab Agriculture University, Ludhiana 141004, India.
ICAR-Central Arid Zone Research Institute, Jodhpur 342003, India.
Plants (Basel). 2023 Jun 12;12(12):2294. doi: 10.3390/plants12122294.
To address the complex challenges faced by our planet such as rapidly changing climate patterns, food and nutritional insecurities, and the escalating world population, the development of hybrid vegetable crops is imperative. Vegetable hybrids could effectively mitigate the above-mentioned fundamental challenges in numerous countries. Utilizing genetic mechanisms to create hybrids not only reduces costs but also holds significant practical implications, particularly in streamlining hybrid seed production. These mechanisms encompass self-incompatibility (SI), male sterility, and gynoecism. The present comprehensive review is primarily focused on the elucidation of fundamental processes associated with floral characteristics, the genetic regulation of floral traits, pollen biology, and development. Specific attention is given to the mechanisms for masculinizing and feminizing cucurbits to facilitate hybrid seed production as well as the hybridization approaches used in the biofortification of vegetable crops. Furthermore, this review provides valuable insights into recent biotechnological advancements and their future utilization for developing the genetic systems of major vegetable crops.
为应对我们星球面临的复杂挑战,如迅速变化的气候模式、粮食和营养不安全以及世界人口的不断增长,杂交蔬菜作物的开发势在必行。蔬菜杂交种可以有效缓解许多国家面临的上述根本性挑战。利用遗传机制培育杂交种不仅可以降低成本,而且具有重要的实际意义,特别是在简化杂交种子生产方面。这些机制包括自交不亲和性(SI)、雄性不育和雌性系。本综述主要侧重于阐明与花的特征、花性状的遗传调控、花粉生物学和发育相关的基本过程。特别关注使葫芦科作物雄性化和雌性化以促进杂交种子生产的机制,以及蔬菜作物生物强化中使用的杂交方法。此外,本综述还对近期生物技术进展及其在主要蔬菜作物遗传系统开发中的未来应用提供了有价值的见解。