首页> 美国卫生研究院文献>Plant Physiology >Chemical Composition of Hypodermal and Endodermal Cell Walls and Xylem Vessels Isolated from Clivia miniata (Identification of the Biopolymers Lignin and Suberin).
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Chemical Composition of Hypodermal and Endodermal Cell Walls and Xylem Vessels Isolated from Clivia miniata (Identification of the Biopolymers Lignin and Suberin).

机译:从小君子兰分离的次表皮和内胚层细胞壁和木质部容器的化学组成(木质素和木栓质素生物聚合物的鉴定)。

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摘要

The occurrence of the biopolymers lignin and suberin was investigated with hypodermal (HCW) and endodermal cell walls (ECW) and xylem vessels (XV) isolated from Clivia miniata Reg. roots. Both biopolymers were detected in HCW and ECW, whereas in XV, typical aliphatic suberin monomers were missing and only representative lignin monomers such as guaiacyl (G) and syringyl (S) units could be detected. The absolute amounts of lignin were about one order of magnitude higher compared with suberin in both HCW and ECW. The ratios of the two aromatic lignin units (G/S) decreased from 39 in XV and 10 in HCW to about 1 in ECW, indicating significant differences in lignin structure and function between the three investigated samples. Additionally, compared with the detectable lignin-derived aromatic units G and S, significantly higher amounts of esterified p-coumaric acid-derived aromatic monomers were obtained with HCW, but not with ECW. This is interpreted as a functional adaption of HCW toward pathogen defense at the root/soil interface. The final aim of this study was to provide a thorough chemical characterization of the composition of HCW, ECW, and XV, which in turn will form the basis for a better understanding of the relevant barriers toward the passive, radial, and apoplastic diffusion of solutes from the soil across the root cortex into the root cylinder.
机译:用从小君子兰分离的皮下(HCW)和内胚层细胞壁(ECW)和木质部血管(XV)研究了生物聚合物木质素和木栓质的存在。根。在HCW和ECW中都检测到了这两种生物聚合物,而在XV中,典型的脂肪族Suberin单体丢失了,只能检测到代表性的木质素单体,如愈创木(G)和丁香基(S)单元。在HCW和ECW中,木质素的绝对量均比木栓质高约一个数量级。两个芳香族木质素单位的比例(G / S)从XV的39和HCW的10降低到ECW的约1,表明这三个研究样品之间木质素结构和功能的显着差异。另外,与可检测到的木质素衍生的芳族单元G和S相比,用HCW可获得的酯化对香豆酸衍生的芳族单体的量明显更高,而ECW则没有。这被解释为HCW在根/土壤界面对病原体防御的功能适应。这项研究的最终目的是对HCW,ECW和XV的成分进行全面的化学表征,从而为更好地理解溶质的被动,径向和质外扩散相关障碍奠定基础。从土壤穿过根皮层进入根柱体。

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