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Selecting sugarcane genotypes by the selection index reveals high gain for technological quality traits

机译:通过选择指数选择甘蔗基因型可显着提高技术品质性状

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Sugarcane (Saccharum sp) is one of the most promising crops and researchers have sought for renewable alternative energy sources to reduce CO2 emission. The study of strategies, which allow breeders in the selection of superior genotypes for many traits simultaneously, is important. Therefore, the objectives of this study were: i) to apply path analysis to better understand the relationship between the lignocellulosic traits and technological quality traits with total recoverable sugars (TRS) and ii) to use several multivariate selection indexes to predict the genetic gain and to select superior genotypes in the sugarcane breeding. A total of 40 sugarcane genotypes were evaluated in an experimental design using incomplete blocks with two replicates. The follow traits were evaluated: dry matter (DM), total soluble solids (BRIX), apparent sucrose content in the juice (POL), apparent sucrose content in sugarcane (POLS), fiber content (FIB), purity (PUR), TRS, lignin content (LC), cellulose content (CC), hemicellulose content (HC), and ash content (AC). These traits were analyzed by analysis of variance, phenotypic correlation network, path analysis, and selection index. The highest direct effect on TRS was obtained by POLS (0.337), POL (0.299), BRIX (0.227), and FIB (-0.146). The estimates of phenotypic correlation between these characters and TRS were in the same direction, which demonstrated a cause-and-effect relationship. The highest indirect effect was of POL via POLS (0.331) followed by POLS via POL (0.294). BRIX presented high indirect effects via POLS (0.266) and via POL (0.246). On the other hand, FIB presented negative indirect effects via POLS (-0.169) and POL (-0.103). In conclusion, path analysis and index selection are useful strategies to help breeders in the selection of superior genotypes in sugarcane.
机译:甘蔗(Saccharum sp)是最有前途的作物之一,研究人员一直在寻找可再生的替代能源来减少CO2排放。重要的是,研究策略,使育种者可以同时选择许多性状的优良基因型。因此,本研究的目标是:i)应用路径分析以更好地理解木质纤维素特性与技术质量特性与总可回收糖(TRS)之间的关系,并且ii)使用多个多元选择指数来预测遗传增益和在甘蔗育种中选择优良的基因型。在实验设计中使用不完全的重复两次的不完整基因座评估了总共40个甘蔗基因型。评价以下特征:干物质(DM),总可溶性固形物(BRIX),果汁中表观蔗糖含量(POL),甘蔗中表观蔗糖含量(POLS),纤维含量(FIB),纯度(PUR),TRS ,木质素含量(LC),纤维素含量(CC),半纤维素含量(HC)和灰分含量(AC)。通过方差分析,表型相关网络,路径分析和选择指数来分析这些特征。 POS(0.337),POL(0.299),BRIX(0.227)和FIB(-0.146)获得了对TRS最高的直接影响。这些字符和TRS之间的表型相关性的估计方向相同,表明了因果关系。间接影响最大的是通过POLS的POL(0.331),其次是通过POL的POLS(0.294)。 BRIX通过POLS(0.266)和POL(0.246)表现出很高的间接影响。另一方面,FIB通过POLS(-0.169)和POL(-0.103)表现出负面的间接影响。总之,路径分析和指标选择是有用的策略,可帮助育种者选择甘蔗的优良基因型。

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