Facultad, de Biología, Departamento de Biología Vegetal Y Ciencias del Suelo, Universidad de Vigo, As Lagoas Marcosende, 36310, Vigo, Spain.
Agrobiología Ambiental, Calidad de Suelos Y Plantas (UVIGO), Unidad Asociada a La MBG (CSIC), Vigo, Spain.
BMC Plant Biol. 2021 Jun 2;21(1):251. doi: 10.1186/s12870-021-03040-3.
Besides the use of maize grain as food and feed, maize stover can be a profitable by-product for cellulosic ethanol production, whereas the whole plant can be used for silage production. However, yield is reduced by pest damages, stem corn borers being one of the most important yield constraints. Overall, cell wall composition is key in determining the quality of maize biomass, as well as pest resistance. This study aims to evaluate the composition of the four cell wall fractions (cellulose, hemicellulose, lignin and hydroxycinnamates) in diverse maize genotypes and to understand how this composition influences the resistance to pests, ethanol capacity and digestibility.
The following results can be highlighted: (i) pests' resistant materials may show cell walls with low p-coumaric acid and low hemicellulose content; (ii) inbred lines showing cell walls with high cellulose content and high diferulate cross-linking may present higher performance for ethanol production; (iii) and inbreds with enhanced digestibility may have cell walls poor in neutral detergent fibre and diferulates, combined with a lignin polymer composition richer in G subunits.
Results evidence that there is no maize cell wall ideotype among the tested for optimal performance for various uses, and maize plants should be specifically bred for each particular application.
除了将玉米作为食物和饲料外,玉米秸秆也可以作为生产纤维素乙醇的有利副产品,整株玉米都可以用于青贮饲料生产。然而,虫害会降低玉米的产量,其中玉米螟是最重要的减产因素之一。总的来说,细胞壁的组成是决定玉米生物质质量以及抗虫害能力的关键因素。本研究旨在评估不同玉米基因型的四个细胞壁成分(纤维素、半纤维素、木质素和羟基肉桂酸)的组成,并了解这种组成如何影响对害虫的抗性、乙醇产量和消化率。
以下结果值得强调:(i)抗虫害的材料可能表现出低对香豆酸和低半纤维素含量的细胞壁;(ii)纤维素含量高、二糠醇交联程度高的自交系可能在乙醇生产方面表现出更高的性能;(iii)消化率提高的自交系可能具有低中性洗涤剂纤维和二糠醇含量的细胞壁,同时木质素聚合物组成中富含 G 亚基。
研究结果表明,在所测试的玉米中,没有一种细胞壁理想型能够在各种用途中表现出最佳性能,玉米植株应根据每种特定用途进行专门培育。