杂交小麦种子生产的障碍:制约因素分析

Madhwendra Kumar Pathak, R. Srivastava, Mukesh Kumar Singh
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摘要

由于气候变化、人口数量增加以及微生物(生物)和矿物质(非生物)胁迫等问题,小麦这种具有全球重要性的重要主粮作物面临着巨大的压力。杂交小麦是由差异很大的亲本杂交产生的,可以利用杂交来培育优良特性。然而,杂交小麦一直受到自花授粉、异交率低、生产成本高昂和消费者接受度低等问题的困扰。本研究探讨了杂交小麦的生产方式,如化学杂交剂、细胞质雄性不育和基因组选择。这方面涉及杂交小麦生产的困难和复杂性,如杂交不亲和、遗传不稳定、杂交家族多样化以及对杂交种活力进行基因组预测的要求。本文讨论了杂交小麦在印度的应用滞后问题,并特别关注与印度有关的特殊问题。 然而,仍有一些与杂交组合和不育系有关的问题是印度特有的。尽管如此,包括 ICAR 杂交网络或转基因方法在内的重大努力还是给未来带来了希望。最后,应该指出的是,尽管杂交小麦似乎很有希望获得高产和良好的谷物品质,但必须首先解决生物遗传方面的限制。如果杂交小麦有望在全球人口增长导致水资源日益减少的情况下提高粮食安全和改善营养状况,那么解决这些障碍是至关重要的。
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Roadblocks to Hybrid Wheat Seed Production: An Analysis of Constraints
There is great pressure on wheat, a crucial staple crop of global importance due to issues such as climate change, rising population numbers, and both microorganismic (biotic) and mineral (abiotic) stress. Heterosis can be employed in developing superior characters in hybrid wheat resulting from crosses between highly divergent parents. However, hybrid wheat has been beset with problems such as self-pollination, low heterosis, prohibitive production cost, and small scale of consumer acceptance. It explores how hybrid wheats are produced such as chemical hybridising agents, cytoplasmic male sterility and genomic selection. This aspect entails difficulties and complexity associated with hybrid wheat production such as hybrid incompatibility, unstable genetics, diverse heterotic families and requirement for genomic prediction of hybrid vigour. Hybrid wheat’s lag of adoption in India is discussed with a special view put on particular problems associated with that country alone.  Nevertheless, there are still some issues associated with heterotic grouping and sterility systems specific for the Indian situation. Nevertheless, significant efforts, including the hybrid network of ICAR or transgenic methods, give hope to future. Finally, it should be noted that although hybrid wheat appears to have a great promise of high yield and good grain quality, bio-genetic limitations must be sorted first. Addressing these hurdles is essential if hybrid wheat is expected to increase food security and improve nutrition amid dwindling water resources due to growing populations worldwide.
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