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Cross-linking of maize walls by ferulate dimerization and incorporation into lignin

机译:阿魏酸二聚体并掺入木质素中玉米壁的交联

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Cross-linking of xylans and lignin by ferulates was investigated with primary maize walls acylated with 2% ferulate and with ferulate ethyl esters. Peroxidase-mediated coupling of wall ferulate and ethyl ferulate yielded mostly 8-coupled products, including three new dehydrodimers. Significant quantities of 5-5-coupled diferulate formed only within walls, suggesting that matrix effects influence dimer formation. Over 60% of wall ferulate dimerized upon H2O2 addition, suggesting that xylan feruloylation is highly regulated during wall biosynthesis to permit extensive dimer formation at the onset of lignification. During lignification, ferulate and 5-5-coupled diferulate copolymerized more rapidly and formed fewer ether-linked structures with coniferyl alcohol than 8-5-, 8-O-4-, and 8-8-coupled diferulates. The potential incorporation of most ferulates and diferulates into lignin exceeded 90%. As a result, xylans become extensively cross-linked by ferulate dimerization and incorporation to lignin, but only a small and variable proportion of these cross-links is measurable by solvolysis of lignified walls. [References: 39]
机译:用2%阿魏酸酯和阿魏酸酯乙酯酰化的玉米原壁研究了木聚糖与木聚糖通过阿魏酸酯的交联。阿魏酸和阿魏酸乙酯的过氧化物酶介导的偶联主要产生8偶联产物,包括三种新的脱氢二聚体。仅在壁内形成大量5-5偶合的扩散,表明基质效应影响二聚体的形成。加入H2O2时,超过60%的阿魏壁蛋白二聚化,这表明木聚糖的阿魏酰化作用在壁生物合成过程中受到高度调节,以允许在木质化开始时形成大量的二聚体。在木质化过程中,与8-5-,8-O-4-和8-8偶合的二价齿相比,阿魏酸和5-5偶合的二价齿更快地共聚,并且与松柏醇形成的醚连接结构更少。大多数阿魏酸盐和阿魏酸盐掺入木质素的潜力超过90%。结果,木聚糖通过阿魏酸酯二聚作用并结合到木质素中而广泛地交联,但是通过木质化壁的溶剂分解只能测量这些交联的小部分和可变部分。 [参考:39]

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