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首页> 外文期刊>Tree Physiology >Heterogeneous distribution of xylan and lignin in tension wood G-layers of the S-1+G type in several Japanese hardwoods
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Heterogeneous distribution of xylan and lignin in tension wood G-layers of the S-1+G type in several Japanese hardwoods

机译:几种日本硬木中S-1 + G型张力木材G层中木聚糖和木质素的异质分布

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A gradual shift in the microfibril angle of gelatinous layer (G-layer) of tension wood fibres of the S-1+G type has been detected via potassium permanganate (KMnO4) staining. Thus, microfibril angles in fibres of the S-1+G type are different from nn S-1+S-2+G type fibres. We evaluated the microfibril orientation and presence of lignin and xylan in G-layers of tension wood fibres of the S-1+G type in several Japanese hardwoods. The distribution of xylan and lignin was examined using immunoelectron microscopy with anti-xylan monoclonal antibody, ultraviolet (UV) microscopy, fluorescence microscopy after acrifravine staining and transmission electron microscopy after KMnO4 staining. In transverse sections, the outer parts of the G-layers showed ultraviolet absorption and a heterogeneous KMnO4 staining pattern, suggesting that lignin was heterogeneously distributed in the outer parts of the G-layers. The heterogeneous staining pattern was found in the G-layers of several tree species; however, the degree of staining differed between tree species. In longitudinal sections, the KMnO4-staining region in the G-layers continued parallel to the cell axis to variable lengths. The orientation of cellulose microfibrils changed gradually from a steep helix to parallel to the cell axis from the outer to inner parts of the G-layers. Xylan immunolabelling was observed in the outer part of the G-layers; in some fibres, labelling was found in the innermost parts of the G-layers. Following immunogold labelling combined with KMnO4 staining, xylan labelling was mainly found in KMnO4-stained electron-opaque regions, suggesting that lignin and xylan were heterogeneously colocalized in the outer parts of the G-layers. The rotation of cellulose microfibrils and heterogeneous distribution of xylan and lignin might be a general phenomenon in S-1+G tension wood fibres.
机译:已经通过高锰酸钾(KMnO 4)染色来检测S-1 + G型张力木纤维的凝胶层(G层)的微纤维角的逐渐变化。因此,S-1 + G型纤维中的微纤维角度不同于NN S-1 + S-2 + G型纤维。在几个日本硬木中,我们评估了S-1 + G型张力木纤维的G层和木聚糖的微纤维取向和Xylan的存在。使用免疫电解显微镜用抗木质单克隆抗体,紫外线(UV)显微镜,荧光显微镜,在KMnO4染色后的透射电子显微镜后,使用免疫电解显微镜检查Xylan和木质素的分布。在横截面中,G层的外部部分显示出紫外线吸收和异质性kmno4染色图案,表明木质素在G层的外部中是异渗透的。在几种树种的G层中发现异质染色模式;然而,树种之间的染色程度不同。在纵向部分中,G层中的KMnO4染色区域与电池轴线平行于可变长度。纤维素微纤维的取向从陡峭的螺旋逐渐变为与来自G层的外部到内部的电池轴线平行于电池轴。在G层的外部观察到Xylan免疫标签;在一些纤维中,在G层的最内部发现标记。在免疫角质标记结合KMNO4染色之后,Xylan标记主要发现在KMnO4染色的电子不透明区域中,表明木质素和木聚糖在G层的外部内均匀地分致中化。纤维素微纤维的旋转和木环和木质素的异质分布可能是S-1 + G张力木纤维中的一般现象。

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