Grabber John H, Hatfield Ronald D
U.S. Dairy Forage Research Center, Agricultural Research Service, U.S. Department of Agriculture, 1925 Linden Drive West, Madison, Wisconsin 53706, USA.
J Agric Food Chem. 2005 Mar 9;53(5):1546-9. doi: 10.1021/jf048799b.
Nonlignified cell walls from Zea mays (L.) cell suspensions were incubated with and without pectin methylesterase (PME) and a portion were artificially lignified to assess how methyl esters influence the release of pectic uronosyls and total sugars from cell walls by fungal enzymes. Treatment with PME reduced uronosyl concentrations from 97 to 92 mg/g, reduced uronosyl methylation from 57% to 21%, and increased Klason lignin concentrations in artificially lignified cell walls from 99 to 116 mg/g. Although PME treatment slightly enhanced uronosyl release from nonlignified cell walls, it reduced uronosyl release from artificially lignified cell walls by 55% after 4 h and by 7% after 72 h of enzymatic hydrolysis. Pectin hydrolysis in PME treated cell walls was probably impaired by enhanced benzyl ester cross-linking of uronosyls to lignin via quinone methide intermediates. Variations in uronosyl methylation had little effect on the overall release of total sugars from cell walls.
将来自玉米(Zea mays (L.))细胞悬浮液的非木质化细胞壁在有和没有果胶甲酯酶(PME)的情况下进行孵育,并将一部分进行人工木质化,以评估甲酯如何影响真菌酶从细胞壁中释放果胶糖醛酸和总糖。用PME处理后,糖醛酸浓度从97毫克/克降至92毫克/克,糖醛酸甲基化从57%降至21%,并且人工木质化细胞壁中的克拉森木质素浓度从99毫克/克增加到116毫克/克。尽管PME处理略微增强了非木质化细胞壁中糖醛酸的释放,但在酶水解4小时后,它使人工木质化细胞壁中糖醛酸的释放减少了55%,在72小时后减少了7%。PME处理的细胞壁中的果胶水解可能因糖醛酸通过醌甲基化物中间体与木质素的苄酯交联增强而受到损害。糖醛酸甲基化的变化对细胞壁中总糖的总体释放影响很小。