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解析冬小麦MAGIC群体亲本中氮素利用效率差异的生理和分子基础。

Understanding the Physiological and Molecular Basis for Differences in Nitrogen Use Efficiency in the Parents of a Winter Wheat MAGIC Population.

作者信息

Ligeza Aleksander, Milner Matthew J

机构信息

NIAB, 93 Lawrence Weaver Road, Cambridge CB3 0LE, UK.

出版信息

Plants (Basel). 2024 Nov 28;13(23):3331. doi: 10.3390/plants13233331.

Abstract

The need to improve both the cost of food production and lower the environmental impact of food production is key to being able to sustainably feed the projected growth of the human population. To attempt to understand how to improve yields under lower nitrogen (N) inputs, a diverse set of UK winter wheats encompassing ~80% of the genetic diversity in current winter wheats in the UK were grown under a range of N levels and their performance measured under various levels of N. This population has parents which encompass all four end-use categories to understand how breeding for differences in NUE may change across different end-use types of wheat. The growth of the eight parents of a MAGIC population showed significant differences in biomass per plant, ear number, yield and protein content of the grain when grown with differing levels of N. No consistent response to N was seen for the lines tested for all of the traits measured. However, the underlying difference in response to N was not due to N uptake or N translocation, as short-term N uptake and translocation showed no significant differences in the lines tested. RNASeq was then performed on two different bread-making varieties grown under low-N conditions to identify putative genes controlling the underlying differences seen in biomass production when grown on low N. This led to the identification of the genes involved in growth and C/N signaling and metabolism, which may explain the differences in growth and biomass production seen between the parents of this population.

摘要

提高粮食生产成本并降低粮食生产对环境的影响,对于可持续满足预计增长的人口粮食需求至关重要。为了尝试理解如何在低氮投入条件下提高产量,种植了一组多样的英国冬小麦,它们涵盖了英国当前冬小麦约80%的遗传多样性,种植于一系列氮水平下,并在不同氮水平下测量其表现。该群体的亲本涵盖了所有四种最终用途类别,以了解氮利用效率差异的育种在不同最终用途类型的小麦中可能如何变化。当在不同氮水平下种植时,一个MAGIC群体的八个亲本在单株生物量、穗数、产量和籽粒蛋白质含量方面表现出显著差异。对于所测量的所有性状,测试的品系对氮没有一致的反应。然而,对氮反应的潜在差异并非由于氮吸收或氮转运,因为短期氮吸收和转运在测试的品系中没有显著差异。然后对在低氮条件下种植的两个不同面包制作品种进行RNA测序,以鉴定控制在低氮条件下生长时生物量生产中潜在差异的假定基因。这导致鉴定出参与生长以及碳/氮信号传导和代谢的基因,这可能解释了该群体亲本之间在生长和生物量生产上的差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c04/11644404/bbb6a1fa63c2/plants-13-03331-g001.jpg

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