首页> 外文期刊>Acta Agriculturae Scandinavica. Section B, Soil and Plant Science >Functional traits associated with nitrogen use efficiency in wheat
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Functional traits associated with nitrogen use efficiency in wheat

机译:与小麦氮素利用效率相关的功能性状

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The association between functional traits and nitrogen use efficiency (NUE) was investigated to assist the breeding of nitrogen (N) use-efficient bread wheat (Triticum aestivum ssp. aestivum) varieties. This study combined results from a climate chamber experiment involving 41 spring wheat varieties and a field experiment involving six winter and six spring wheat varieties grown with and without the application of mineral N fertiliser. The climate chamber experiment was analysed by partial least squares (PLS) regression, with several predictors and NUE as response, to identify traits related to NUE. Specific hypotheses were then tested in the field experiment. The PLS indicated six traits of particular importance for overall NUE: leaf chlorophyll (SPAD value) of the top leaf at stem elongation, grains ear(-1), ears pot(-1), straw biomass pot(-1), days between emergence and anthesis, and days between emergence and completed senescence. In the field experiment, the SPAD value of flag leaves of winter wheat around anthesis was positively correlated with NUE and total grain N, at both N levels. Fast development was positively correlated with high NUE and N uptake efficiency in spring wheat. Early senescence of the flag leaf was positively correlated with grain N concentration and negatively correlated with grain-specific N efficiency in winter wheat at low N fertilisation levels. The results indicate that high SPAD value of the top leaf might be a candidate trait that could be used in wheat breeding for improved NUE, while genetic variation in senescence could possibly be used to tailor varieties for different end-use quality when grown at low N. More studies are needed to validate these findings in other environments and for other genotypes.
机译:研究了功能性状与氮素利用效率(NUE)之间的关联,以帮助育种具有氮素(N)利用率的面包小麦(Triticum aestivum ssp。aestivum)品种。这项研究结合了涉及41种春小麦品种的气候试验箱试验和涉及使用和不使用矿物氮肥的6种冬小麦和6种春小麦品种的田间试验结果。通过偏最小二乘(PLS)回归分析气候室实验,并使用多个预测因子和NUE作为响应,以识别与NUE相关的特征。然后在现场实验中检验特定的假设。 PLS指出了对整个NUE尤为重要的六个特征:茎伸长时顶叶的叶绿素(SPAD值),谷物穗(-1),穗罐(-1),秸秆生物量罐(-1),之间的天数出苗和花期,以及出苗和完全衰老之间的天数。在田间试验中,在两个氮水平下,花期周围的冬小麦旗叶SPAD值均与NUE和总籽粒N呈正相关。春小麦的快速发育与高NUE和N吸收效率呈正相关。在低氮水平下,冬小麦旗叶的早衰与籽粒氮含量呈正相关,与籽粒氮效率呈负相关。结果表明,较高叶片的SPAD值可能是可用于小麦育种以改善NUE的候选性状,而在低氮下生长时,衰老的遗传变异可用于适应不同最终用途质量的品种。需要更多的研究来验证在其他环境和其他基因型中的发现。

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