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拟南芥茎中半纤维素的免疫定位。第二部分:甘露聚糖的沉积受发育阶段的调节,其时间和空间分布模式在细胞类型之间存在差异。

Immunolocalization of hemicelluloses in Arabidopsis thaliana stem. Part II: Mannan deposition is regulated by phase of development and its patterns of temporal and spatial distribution differ between cell types.

机构信息

Wood Science, Department of Forest Products, Swedish University of Agricultural Sciences, P.O. Box 7008, 750 07, Uppsala, Sweden.

出版信息

Planta. 2012 Nov;236(5):1367-79. doi: 10.1007/s00425-012-1687-x. Epub 2012 Jun 21.

Abstract

Microdistribution of mannans in Arabidopsis stem was examined using immunolocalization with mannan-specific monoclonal antibodies (LM21 and LM22). Mannan labeling in secondary xylem cells (except for protoxylem vessels) was initially detected in the cell wall during S(2) formation and increased gradually during development. Labeling in metaxylem vessels (vessels) was detected earlier than that in xylary fibers (fibers), but was much weaker than fibers. The S(1) layer of vessels and fibers showed much less labeling than the S(2) layer. Some strong labeling was also detected in pit membranes of vessel pits. Interfascicular fibers (If-fibers) showed more heterogeneous labeling patterns than fibers by LM21. Unlike fibers, If-fibers also revealed some strong labeling in the cell corner of the S(1) layer, indicating different mannan labeling patterns between If-fibers and fibers. Interestingly, protoxylem vessels (proto-vessels) showed strong labeling at the early stage of secondary xylem formation with more intense labeling in the outer- than inner cell wall even though fibers and vessels showed no or very low labeling at this stage. Labeling intensity of proto-vessels was also much stronger than vessels and stronger or slightly weaker than fibers by LM21 and LM22, respectively. Using pectinase and mild alkali treatment, the presence of mannans in parenchymatous cells was also confirmed. Together our observations indicate that there are temporal and spatial variations in mannan labeling between cell types in the secondary xylem of Arabidopsis stems. Some similar features of mannan labeling between Arabidopsis and poplar are also discussed.

摘要

使用甘露聚糖特异性单克隆抗体(LM21 和 LM22)进行免疫定位,研究了拟南芥茎中甘露聚糖的微观分布。在 S2 形成过程中,次生木质部细胞(除原生木质部导管外)细胞壁最初检测到甘露聚糖标记,并且在发育过程中逐渐增加。木质部导管(导管)中的标记比木质部纤维(纤维)更早检测到,但比纤维弱得多。导管和纤维的 S1 层的标记比 S2 层少。在导管纹孔的纹孔膜中也检测到一些强标记。与纤维相比,间隔纤维(If-纤维)通过 LM21 显示出更多异质的标记模式。与纤维不同,If-纤维在 S1 层的细胞角也显示出一些强标记,表明 If-纤维和纤维之间存在不同的甘露聚糖标记模式。有趣的是,次生木质部形成的早期,原生木质部导管(proto-vessels)显示出强烈的标记,其外壁的标记比内壁更强烈,尽管在这个阶段纤维和导管没有或很少有标记。与 LM21 和 LM22 相比,proto-vessels 的标记强度也明显强于导管,且与纤维的标记强度相当或稍弱。使用果胶酶和温和的碱处理也证实了薄壁细胞中甘露聚糖的存在。综上所述,我们的观察结果表明,拟南芥茎次生木质部中不同细胞类型之间的甘露聚糖标记存在时间和空间变化。还讨论了拟南芥和杨树之间甘露聚糖标记的一些相似特征。

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