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首页> 外文期刊>Acta Agriculturae Scandinavica. Section B, Soil and Plant Science >Characterisation of sweet stem sorghum genotypes for bio-ethanol production
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Characterisation of sweet stem sorghum genotypes for bio-ethanol production

机译:生物乙醇生产甜茎高粱基因型的特征

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摘要

In an effort to characterise and select promising sweet stem sorghum genotypes with enhanced biofuel productivity, the present study investigated phenotypic variability present among diverse sweet stem sorghum genotypes based on ethanol production and related agronomic traits. One hundred and ninety genotypes were evaluated. Data were subjected to variance, cluster, correlation, path coefficient and principal component analyses. Significant differences (P&0.01) were detected among tested genotypes for all measured traits. Days to flowering varied from 62 to 152 with a mean of 93. Plant height varied from 90 to 420cm with a mean of 236cm. Stem diameter ranged from 7 to 31mm with a mean of 16mm. Biomass yield varied from 6.668 to 111.2tha(-1) with a mean of 30tha(-1). Stalk dry matter content ranged from 17.2% to 44.2% with a mean of 29.8%, while fibre content varied from 8.92% to 34.8% with a mean of 17.2%. The stalk brix yield varied from 3.3% to 18.9% with a mean of 12.1%. Ethanol productivity ranged from 240.9 to 5500lha(-1) with a mean of 1886lha(-1). The best ethanol producing genotypes were AS203, AS391, AS205, AS251 and AS448. Days to flowering, plant height, stalk brix and stem diameter exerted the greatest indirect effects on ethanol production through higher biomass production. Biomass yield had the greatest direct effect on ethanol production. Therefore, the above traits should be considered during breeding sorghum for bio-ethanol production. Also, the traits had high heritability values, hence selection should provide for good genetic gains. Overall, the above sweet stem sorghum genotypes are useful genetic resources for breeding of sorghum with enhanced bio-ethanol production.
机译:为了表征和选择具有增强的生物燃料生产率的有前途的甜茎高粱基因型,本研究研究了基于乙醇生产和相关农艺性状的不同甜茎高粱基因型中存在的表型变异性。评估了一百九十个基因型。对数据进行方差,群集,相关性,路径系数和主成分分析。在所有测量性状的测试基因型中检测到显着差异(P& 0.01)。开花的日子从62到152变化,平均值为93.植物高度从90〜420cm变化,平均为236厘米。茎直径范围为7至31mm,平均为16mm。生物质产率从6.668到111.2Tha(-1)不同,平均值30tha(-1)。茎干物质含量为17.2%至44.2%,平均为29.8%,而纤维含量从8.92%变化至34.8%,平均值为17.2%。秸秆BRIX产量从3.3%变化至18.9%,平均值为12.1%。乙醇生产率范围为240.9至5500℃(-1),平均值为1886LHA(-1)。产生基因型的最佳乙醇为0.203,AS391,AS205,AS251和AS448。开花,植物高度,茎秆和茎直径的日子施加了通过更高的生物量生产对乙醇生产的最大间接影响。生物质产量对乙醇生产具有最大的直接影响。因此,在育种高粱中应考虑上述性状,用于生物乙醇生产。此外,该特征具有高遗传性值,因此选择应提供良好的遗传收益。总体而言,上述甜茎高粱基因型是具有增强的生物乙醇产量的高粱繁殖的有用遗传资源。

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