College of Horticulture and Institute of Storage Science and Technology of Horticultural Products, Fujian Agriculture and Forestry University , Fuzhou 350002, China.
J Agric Food Chem. 2014 Dec 17;62(50):12082-9. doi: 10.1021/jf5041349. Epub 2014 Dec 5.
Juice sac granulation occurring in pummelo fruits [Citrus maxima (Burm.) Merr.] is an undesirable trait, and the underlying mechanism remains unresolved. Previous studies have shown that lignin metabolism is closely associated with the process of juice sac granulation. Here, a method suitable for lignin isolation from pummelo tissues is established. Acetylated lignins from different pummelo tissues and cultivars were analyzed by HSQC NMR. The results showed that lignins in granulated juice sacs were characterized by an extremely high abundance of guaiacyl units (91.13-96.82%), in contrast to lignins from other tissues, including leaves, stems, and segment membranes. The abnormally accumulated lignins in granulated juice sacs were specific and mainly polymerized from coniferyl alcohol. No significant difference was found in lignin types among various cultivars. These findings indicated that the mechanism of juice sac granulation might be similar among various cultivars, although very different degrees of juice sac granulation can be observed.
柚子果实中的汁囊粒化是一种不良性状,其潜在机制仍未得到解决。先前的研究表明,木质素代谢与汁囊粒化过程密切相关。本文建立了一种适用于从柚子组织中分离木质素的方法。利用 HSQC NMR 对不同柚子组织和品种的乙酰化木质素进行了分析。结果表明,粒化汁囊中的木质素具有极高的愈创木基单元含量(91.13-96.82%),与叶片、茎和囊瓣膜等其他组织中的木质素形成鲜明对比。粒化汁囊中异常积累的木质素具有特异性,主要由松柏醇聚合而成。不同品种之间的木质素类型没有显著差异。这些发现表明,尽管不同品种汁囊粒化的程度存在差异,但粒化的机制可能相似。