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Identification and screening of nitrogen-efficient cotton genotypes under low and normal nitrogen environments at the seedling stage

机译:低氮和正常氮环境下苗期氮效率棉花基因型的鉴定与筛选

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摘要

Background:Large quantities of nitrogen (N) fertilizer applied to cotton cropping systems support high yields but cause adverse environmental impacts such as N2O emission and water eutrophication.The development of cotton cultivars with higher N use efficiencies suitable for low-N conditions is therefore important for sustainable production.In this study,we evaluated 100 cotton genotypes in 2016 for N use efficiency and related traits at the seedling stage.Methods:Sand culture experiment was conducted with low N levels (0.01 g·kg-1) or normal N levels (0.1 g·kg-1).We investigated plant height,SPAD value (soil plant analysis development chlorophyll meter),dry weight,N accumulation,N utilization efficiency,and N uptake efficiency.Through descriptive statistics,principal component analysis and heatmap clustering analysis,we confirmed the evaluation index system of N-efficient genotypes and the classification of N-efficient genotypes.Results:Significant differences were observed among N levels and genotypes for all agronomic traits and N levels.Coefficients of variation varied greatly and ranged from 6.7~28.8 and 7.4~20.8 under low-N and normal-N treatment,respectively.All traits showed highly significant positive correlations with each other,except SPAD value.The principal components under both N levels were similar,showing that total dry weight,aboveground dry weight,total N accumulation,and N uptake efficiency were important components.We confirmed these four traits as suitable screening indexes for low N tolerance.Based on the results of heatmap clustering and scatter diagram analysis of N efficiency value,10 genotypes were found low-N tolerant,in which five varieties were inefficient under both low and normal N conditions,while four varieties were found efficient under low-N conditions but inefficient under normal-N conditions.Only one variety was efficient under both low and normal-N conditions.Meanwhile,20 genotypes were identified as low-N sensitive ones,in which 19 genotypes were inefficient under low-N conditions but efficient under normal-N conditions,one variety was inefficient under both low and normal-N conditions.Conclusion:We preliminarily identified Kashi as a low-N tolerant and N-efficient cotton genotype,and CCRI 64 as a low-N sensitive and N-inefficient cotton genotype.Further studies should be carried out to verify the yield and heritability effect of specific genotypes in the field.
机译:背景:用于棉花种植系统的大量氮肥可支持高产,但会造成不利的环境影响,例如N2O排放和水富营养化,因此开发适合低氮条件的高氮利用效率的棉花品种至关重要本研究以2016年棉花的100个基因型为研究对象,对苗期氮素利用效率及相关性状进行了评估。方法:以低氮水平(0.01 g·kg-1)或正常氮水平进行沙培养试验。 (0.1 g·kg-1)。通过描述性统计,主成分分析和热图聚类,研究了株高,SPAD值(土壤植物分析开发叶绿素计),干重,氮累积,氮利用效率和氮吸收效率。通过分析,我们确定了N-有效基因型的评价指标体系和N-有效基因型的分类。结果:N le之间存在显着差异在低氮和正常氮处理下,所有农艺性状和氮水平的变异和基因型。变异系数差异很大,分别在6.7〜28.8和7.4〜20.8之间。除性状外,所有性状之间均呈极显着的正相关。 SPAD值。两个氮水平下的主要成分相似,表明总干重,地面干重,总氮积累和氮吸收效率是重要的组成部分。我们确认了这四个性状是低氮耐受性的合适筛选指标。根据热图聚类结果和N效率值散点图分析,发现10个基因型耐低氮基因型,其中5个品种在低氮和正常N条件下均无效率,而四个品种在低N条件下均有效。在正常和低氮条件下效率低。只有一个品种在正常和低氮条件下均有效。同时,有20个基因型被鉴定为低氮敏感型。 h 19个基因型在低氮条件下无效,但在正常氮条件下有效,一个品种在低氮和正常氮条件下均无效。结论:我们初步确定喀什为低氮耐受和氮高效棉花基因型, CCRI 64是低氮敏感性和低氮效率的棉花基因型。应进一步研究以验证特定基因型在田间的产量和遗传效应。

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  • 来源
    《棉花研究(英文版)》 |2018年第2期|1-11|共11页
  • 作者单位

    State Key Laboratory of Cotton Biology, Institute of Cotton Research of Chinese Academy of Agricultural Sciences, Anyang 455000, China;

    State Key Laboratory of Cotton Biology, Institute of Cotton Research of Chinese Academy of Agricultural Sciences, Anyang 455000, China;

    State Key Laboratory of Cotton Biology, Institute of Cotton Research of Chinese Academy of Agricultural Sciences, Anyang 455000, China;

    State Key Laboratory of Cotton Biology, Institute of Cotton Research of Chinese Academy of Agricultural Sciences, Anyang 455000, China;

    State Key Laboratory of Cotton Biology, Institute of Cotton Research of Chinese Academy of Agricultural Sciences, Anyang 455000, China;

    State Key Laboratory of Cotton Biology, Institute of Cotton Research of Chinese Academy of Agricultural Sciences, Anyang 455000, China;

    State Key Laboratory of Cotton Biology, Institute of Cotton Research of Chinese Academy of Agricultural Sciences, Anyang 455000, China;

    State Key Laboratory of Cotton Biology, Institute of Cotton Research of Chinese Academy of Agricultural Sciences, Anyang 455000, China;

    State Key Laboratory of Cotton Biology, Institute of Cotton Research of Chinese Academy of Agricultural Sciences, Anyang 455000, China;

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