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Biological nitrogen fixation with non-legumes: An achievable target or a dogma?

机译:非豆类生物固氮:可实现的目标或教条?

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摘要

Nitrogen is most often the limiting nutrient for crop production, since only a fraction of atmospheric nitrogen is made available to the plants through biological nitrogen fixation (BNF). Extending the BNF ability to non-legumes would be a useful technology for increased crop yields among resource-poor farmers. The idea that genetic manipulation techniques might be used to engineer crop plants to fix nitrogen is, of course, not new. However, the more we understand about the biochemistry and physiology of BNF, the less likely it seems that this goal will be achieved by 'simply' transferring the genes for nitrogen fixation to suitable crop species. Induction of nodulation has therefore been the main target of researchers over the past few years. Thisreview briefly describes the progress made towards nodular symbiosis between rhizo-bia and other free-living atmospheric nitrogen fixers and non-legume crops.
机译:氮通常是作物生产中的限制性营养素,因为通过生物固氮(BNF)仅向植物提供了一部分大气氮。将BNF能力扩展到非豆科植物将是一种在资源贫乏的农民中提高作物单产的有用技术。当然,可以使用基因操作技术来改造农作物以固氮的想法并不新鲜。但是,我们对BNF的生物化学和生理学了解得越多,似乎越不可能通过“简单地”将固氮基因转移到合适的农作物上来实现这一目标。因此,在过去几年中,诱导结瘤一直是研究人员的主要目标。这篇综述简要地描述了根瘤菌与其他自由生活的固氮剂和非豆类作物在结节共生方面的进展。

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