首页> 外文期刊>Cereal Research Communications >Impact of Nitrogen Regimes and Planting Densities on Stem Physiology, Lignin Biosynthesis and Grain Yield in Relation to Lodging Resistance in Winter Wheat (Triticum aestivum L.)
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Impact of Nitrogen Regimes and Planting Densities on Stem Physiology, Lignin Biosynthesis and Grain Yield in Relation to Lodging Resistance in Winter Wheat (Triticum aestivum L.)

机译:氮素制度的影响以及种植密度对冬小麦(Triticum Aestivum L.)抗肝硬化抗性与肝硬化生理学,木质素生物合成和籽粒产量的影响

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摘要

Higher plant population and nitrogen management is an adopted approach for improving crop productivity from limited land resources. Moreover, higher plant density and nitrogen regimes may increase the risk of stalk lodging, which is a consequence of complex interplant competition of individual organs. Here, we aimed to investigate the dynamic change in morphology, chemical compositions and lignin promoting enzymes of the second basal inter-nodes altering lodging risk controlled by planting density and nitrogen levels. A field trial was conducted at the Mengcheng research station (33 degrees 9'44 '' N, 116 degrees 32'56 '' E), Huaibei plain, Anhui province, China. A randomized complete block design was adopted, in which four plant densities, i.e., 180, 240, 300, and 360 x 10(4) ha(-1) and four N levels, i.e., 0, 180, 240, and 300 kg ha(-1) were studied. The two popular wheat varieties AnNong0711 and YanNong19 were cultivated. Results revealed that the culm lodging resistance (CLRI) index of the second basal intemodes was positively and significantly correlated with light interception, lignin and cellulose content. The lignin and cellulose contents were significantly and positive correlated to light interception. The increased planting density and nitrogen levels declined the lignin and its related enzymes activities. The variety AnNong0711 showed more resistive response to lodging compared to YanNong19. Overall our study found that increased planting densities and nitrogen regimes resulted in poor physical strength and enzymatic activity which enhanced lodging risk in wheat varieties. The current study demonstrated that stein bending strength of the basal internode was significantly positive correlated to grains per spike. The thousand grain weight and grain yield had a positive and significant relationship with stein bending strength of the basal internode. The results suggested that the variety YanNong19 produces higher grain yield (9298 kg ha(-1)) at density 240 x 10(4) plants and 180 kg ha(-1) nitrogen, while AnNong0711 produced higher grain yield (10178.86 kg ha(-1)) at density 240 x 10(4) plants ha(-1) and with 240 kg ha(-1) nitrogen. Moreover, this combination of nitrogen and planting density enhanced the grain yield with better lodging resistance.
机译:较高的植物种群和氮管理是一种采用有限土地资源的作物生产力的采用方法。此外,较高的植物密度和氮素制度可能会增加茎秆滞留的风险,这是个体器官复杂的间面竞争的结果。在这里,我们旨在探讨第二基础节点的形态,化学成分和木质素促进酶的动态变化,改变通过种植密度和氮水平控制的寄宿风险。在孟城研究站(33度9'44''n,116摄氏度32'56'e),中国安徽省淮北平原,116摄氏度进行了田间试验。采用随机完全块设计,其中四种植物密度,即180,240,300和360×10(4)Ha(-1)和四个水平,即0,180,240和300kg研究了HA(-1)。这两种流行的小麦品种Annong0711和Yannong19栽培。结果表明,第二基底系焦点的秆封装抗性(CLRI)指数与光截止,木质素和纤维素含量有阳性和显着相关。木质素和纤维素含量显着且阳性相关与光截止。增加的种植密度和氮水平下降了木质素及其相关酶活性。与Yannong19相比,多样性Annong0711对住宿进行了更大的电阻响应。总的来说我们的研究发现,增加的种植密度和氮素制度导致了差的体力和酶活性,这增加了小麦品种的携带危险。目前的研究表明,基础节水区的斯坦因弯曲强度与每穗颗粒显着呈正相关。千粒重和谷物产量与基底间质度的斯坦弯曲强度有正交且显着的关系。结果表明,多种yannong19在密度240×10(4)株植物和180kg ha(-1)氮气下产生更高的谷物产率(9298kg ha(-1)),而Annong0711产生较高的谷物产量(10178.86kg ha( -1))密度240×10(4)植物HA(-1)和240kg HA(-1)氮。此外,这种氮气和种植密度的组合增强了具有更好的封闭性抗性的籽粒产量。

著录项

  • 来源
    《Cereal Research Communications》 |2019年第3期|共14页
  • 作者单位

    Agron Univ Anhui Agr Sch Hefei 230036 Anhui Peoples R China;

    Agron Univ Anhui Agr Sch Hefei 230036 Anhui Peoples R China;

    Agron Univ Anhui Agr Sch Hefei 230036 Anhui Peoples R China;

    Agron Univ Anhui Agr Sch Hefei 230036 Anhui Peoples R China;

    Bacha Khan Univ Dept Chem Charsadda Pakistan;

    Northwest A&

    F Univ Minist Agr Coll Agron Key Lab Crop Physioecol &

    Tillage Northwestern Lo Yangling 712100 Shaanxi Peoples R China;

    Northwest A&

    F Univ Minist Agr Coll Agron Key Lab Crop Physioecol &

    Tillage Northwestern Lo Yangling 712100 Shaanxi Peoples R China;

    Agron Univ Anhui Agr Sch Hefei 230036 Anhui Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农作物;
  • 关键词

    winter wheat; lodging; lignin biosynthesis; nitrogen fertilizer; planting density; grain yield;

    机译:冬小麦;住宿;木质素生物合成;氮肥;种植密度;籽粒产量;

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