...
首页> 外文期刊>International Journal of Agronomy >Genotypic Variability in Some Morpho-Physiological Traits in Different Environments and Their Relationship with Cassava (Manihot esculenta Crantz) Root Yield
【24h】

Genotypic Variability in Some Morpho-Physiological Traits in Different Environments and Their Relationship with Cassava (Manihot esculenta Crantz) Root Yield

机译:不同环境中的一些态生生理特性的基因型变异及其与木薯(Manihot Esculenta Crantz)根产量的关系

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Cassava root yield under diverse environments is influenced by morpho-physiological traits that are in turn influenced by genotype, environment, and genotype?×?environment interaction (GEI). Most GEI analyses in cassava have been limited to root yield with less emphasis on stability of other yield-related traits. This study was carried out to assess the effect of GEI on some morpho-physiological traits in cassava and key traits that are useful for selection in different environments. The study utilized 20 cassava genotypes evaluated in six environments, namely, Fumesua 2013 and 2014, Nyankpala 2013 and 2014 (irrigation), and Nyankpala 2013 and 2014 (no irrigation). The genotypes were arranged in a randomized complete block design (RCBD) with three replications and assessed for a number of morpho-physiological traits, root yield and yield components. The data were subjected to analysis of variance using SAS statistical package. Subsequently, the GGE biplot was used to carry out genotype?×?environment, genotype?×?trait, and environment?×?trait interaction analyses to determine the specificity of genotypic performance and traits linked to particular environments. The results indicated significant (P0.05) GEI effect on all traits except leaf temperature. The genotype?×?trait biplot analysis revealed closely related traits and those associated with root yield and genotypes that show weakness in these traits. Both environment?×?trait biplot and principal component analyses identified traits with higher discriminatory power among genotypes in various environments particularly in the dry environments. These can be used as secondary traits to select drought-tolerant genotypes. From this study, the GGE biplot was useful in identifying traits associated with specific genotypes in different environments to aid in selection. Moderate broad-sense heritability estimates werefound for storage root yield, harvest index, plant height, ratio of storage rootlength to girth, and cassava mosaic disease score indicating that progresscan be made through selection for these traits.
机译:在各种环境下的木薯根产量受到官能生理性状的影响,又受基因型,环境和基因型的影响?×?环境互动(GEI)。 Cassava中大多数GEI分析仅限于根产量,重点强调其他与产量相关的特征的稳定性。进行了本研究以评估GEI对木薯中一些态化生理性状的影响,以及在不同环境中选择的关键特征。该研究利用了六种环境中评估了20种木薯基因型,即Fumesua 2013和2014,Nyankpala 2013和2014(灌溉),尼克斯帕拉2013年和2014年(没有灌溉)。基因型以随机的完整块设计(RCBD)排列,具有三种复制,并评估了许多均相生理性状,根产率和产量组分。使用SAS统计包进行数据分析。随后,GGE双针用于进行基因型?×?环境,基因型?特征和环境?×x?特异性相互作用分析,以确定与特定环境相关的基因型性能和特征的特异性。结果表明除叶温之外的所有特征的巨大效应显着(P <0.05)。基因型?×x?特质的双针分析显示出密切相关的性状和与根产量和基因型相关的那些,表现出这些特征的弱点。环境?×x?特质和主成分分析,鉴定了各种环境中基因型中的歧视力的特性,特别是在干燥环境中。这些可以用作辅助性状以选择耐旱基因型。从该研究来看,GGE双批准可用于鉴定与不同环境中的特定基因型相关的特征,以帮助选择。适度的广义遗传性估算估计用于储存根产量,收获指数,植物高度,储存root长度与周长的比例,以及Cassava Mosaic疾病评分,表明通过选择这些特征来进行分配。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号