Leroux Olivier, Sørensen Iben, Marcus Susan E, Viane Ronnie Ll, Willats William Gt, Knox J Paul
BMC Plant Biol. 2015 Feb 18;15:56. doi: 10.1186/s12870-014-0362-8.
While it is kno3wn that complex tissues with specialized functions emerged during land plant evolution, it is not clear how cell wall polymers and their structural variants are associated with specific tissues or cell types. Moreover, due to the economic importance of many flowering plants, ferns have been largely neglected in cell wall comparative studies.
To explore fern cell wall diversity sets of monoclonal antibodies directed to matrix glycans of angiosperm cell walls have been used in glycan microarray and in situ analyses with 76 fern species and four species of lycophytes. All major matrix glycans were present as indicated by epitope detection with some variations in abundance. Pectic HG epitopes were of low abundance in lycophytes and the CCRC-M1 fucosylated xyloglucan epitope was largely absent from the Aspleniaceae. The LM15 XXXG epitope was detected widely across the ferns and specifically associated with phloem cell walls and similarly the LM11 xylan epitope was associated with xylem cell walls. The LM5 galactan and LM6 arabinan epitopes, linked to pectic supramolecules in angiosperms, were associated with vascular structures with only limited detection in ground tissues. Mannan epitopes were found to be associated with the development of mechanical tissues. We provided the first evidence for the presence of MLG in leptosporangiate ferns.
The data sets indicate that cell wall diversity in land plants is multifaceted and that matrix glycan epitopes display complex spatio-temporal and phylogenetic distribution patterns that are likely to relate to the evolution of land plant body plans.
虽然已知在陆地植物进化过程中出现了具有特殊功能的复杂组织,但尚不清楚细胞壁聚合物及其结构变体如何与特定组织或细胞类型相关联。此外,由于许多开花植物具有经济重要性,蕨类植物在细胞壁比较研究中基本上被忽视了。
为了探索蕨类植物细胞壁的多样性,针对被子植物细胞壁基质聚糖的单克隆抗体组已用于聚糖微阵列以及对76种蕨类植物和4种石松类植物的原位分析。通过表位检测表明所有主要的基质聚糖均存在,只是丰度有所不同。果胶同型半乳糖醛酸聚糖表位在石松类植物中丰度较低,并且CCRC-M1岩藻糖基化木葡聚糖表位在铁角蕨科中基本不存在。LM15 XXXG表位在蕨类植物中广泛检测到,并且与韧皮部细胞壁特异性相关,同样地,LM11木聚糖表位与木质部细胞壁相关。与被子植物中的果胶超分子相连的LM5半乳聚糖和LM6阿拉伯聚糖表位与维管结构相关,在基本组织中仅检测到有限的量。甘露聚糖表位被发现与机械组织的发育相关。我们首次提供了薄囊蕨类植物中存在鼠李半乳糖醛酸聚糖的证据。
数据集表明陆地植物的细胞壁多样性是多方面的,并且基质聚糖表位呈现出复杂的时空和系统发育分布模式,这可能与陆地植物身体结构的进化有关。