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首页> 外文期刊>Frontiers in Plant Science >Phenotyping and Genotype × Environment Interaction of Resistance to Leaffolder, Cnaphalocrocis medinalis Guenee (Lepidoptera: Pyralidae) in Rice
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Phenotyping and Genotype × Environment Interaction of Resistance to Leaffolder, Cnaphalocrocis medinalis Guenee (Lepidoptera: Pyralidae) in Rice

机译:水稻对叶文件夹,稻纵卷叶Gu(Guidee)(鳞翅目:Pyralidae)的抗性的表型和基因型×环境相互作用

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Rice leaffolder, Cnaphalocrocis medinalis is one of the key foliage feeding insects of great concern throughout Asia as it results in significant yield losses. High visibility of damage is triggering farmers to apply toxic pesticides for its management. Therefore, it is vital to identify new stable sources of resistance for leaffolder. Phenotyping of 160 recombinant inbred lines (RILs) of a cross between a resistant parent, W1263 and a susceptible parent, TN1 using a rapid field screening method for three seasons resulted in identification of nine RILs as stable sources of resistance to rice leaffolder. Phenotypic frequency distributions were found continuous indicating that the resistance is a quantitative trait governed by polygenes. Phenotypic data for three seasons were analyzed using Genotype and Genotype × Environment Interaction (GGE) analysis for identification of stable resistant lines. Additive main effect and multiplicative interaction (AMMI) analysis showed that 86.41% of the total sum of square of damaged leaf area was attributed to genotype (GEN) effect; 0.48% to environment (ENV) effects and 5.68% to genotype by environment (G × E) interaction effects. Damage area, damage score and leaf length showed very high broad-sense heritability across three environments. However, leaf width had low heritability indicating higher environment influence. Phylogenetic analysis grouped these 160 RILs and parents into five clusters based on resistant reaction. AMMI and GGE biplot analysis revealed that stable genotypes G8 (MP114) and G3 (MP108) with lower damage area and damage score can be utilized in developing cultivars with leaffolder resistance.
机译:稻纵卷叶C稻(Cnaphalocrocis medinalis)是整个亚洲引起人们广泛关注的主要食叶昆虫之一,因为它导致产量大幅下降。损害的高可见性促使农民使用有毒农药进行管理。因此,确定新的稳定的抗折叠文件夹来源至关重要。使用三个季度的快速田间筛选方法对抗性亲本W1263和易感亲本TN1之间的160个重组自交系(RIL)进行了表型分型,结果鉴定出9个RIL是稳定的对水稻叶文件夹的抗性来源。发现表型频率分布是连续的,表明抗性是由多基因决定的数量性状。使用基因型和基因型×环境相互作用(GGE)分析来分析三个季节的表型数据,以鉴定稳定的抗性品系。加性主效应和乘性相互作用(AMMI)分析表明,受损叶面积平方和的86.41%归因于基因型(GEN)效应。对环境(ENV)的影响为0.48%,对环境(G×E)相互作用的基因型的影响为5.68%。在三种环境中,损伤面积,损伤得分和叶片长度显示出很高的广义遗传力。但是,叶片宽度的遗传力较低,表明对环境的影响更大。系统发育分析基于抗性反应将这160个RIL和亲本分为五个簇。 AMMI和GGE双图分析表明,具有较低损伤面积和损伤评分的稳定基因型G8(MP114)和G3(MP108)可用于开发具有抗叶折叠能力的品种。

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