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受限制木聚糖的侧链会影响纤维素的完整性,导致观赏植物弯曲的茎,机械强度降低。

Side chain of confined xylan affects cellulose integrity leading to bending stem with reduced mechanical strength in ornamental plants.

机构信息

Yunnan Province Engineering Research Center for Functional Flower Resources and Industrialization, College of Landscape Architecture and Horticulture Sciences, Southwest Forestry University, Kunming 650224, China.

School of Agriculture, Yunnan University, Kunming 650091, China; College of Plant Science and Technology, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

Carbohydr Polym. 2024 Apr 1;329:121787. doi: 10.1016/j.carbpol.2024.121787. Epub 2024 Jan 10.

Abstract

The stem support for fresh-cut flowers exerts a profound influence on the display of their blossoms. During vase insertion, bending stems significantly affect the ornamental value, but much remains unclear about the underlying reasons. In this study, six pairs of ornamental plants were screened for the contrast of bending and straight stems. The bending stems have weakened mechanical force and biomass recalcitrance compared with the straight ones. Meanwhile, cells in the bending stems became more loosely packed, along with a decrease in cell wall thickness and cellulose levels. Furthermore, wall properties characterizations show bending stems have decreased lignocellulosic CrI and cellulose DP, and enhanced the branching ratio of hemicellulose which is trapped in the cellulose. Given the distinct cell wall factors in different species, all data are grouped in standardized to eliminate the variations among plant species. The principal composition analysis and correlation analysis of the processed dataset strongly suggest that cellulose association factors determine the stem mechanical force and recalcitrance. Based on our results, we propose a model for how branches of confined hemicellulose interacted with cellulose to modulate stem strength support for the straight or bending phenotype in cut flowers.

摘要

鲜切花的茎支撑对花朵的展示有深远的影响。在花瓶插入过程中,弯曲的茎会显著影响观赏价值,但弯曲茎背后的潜在原因仍有许多不清楚的地方。在这项研究中,筛选了六对具有弯曲和直茎对比的观赏植物。与直茎相比,弯曲茎的机械力和生物量抗性较弱。同时,弯曲茎中的细胞变得更加疏松,细胞壁厚度和纤维素水平降低。此外,细胞壁特性表明弯曲茎的木质纤维素 CrI 和纤维素 DP 降低,并且半纤维素的支化比增加,这些半纤维素被困在纤维素中。鉴于不同物种之间存在明显的细胞壁因素,所有数据都进行了标准化分组,以消除植物物种之间的差异。经过处理的数据集的主成分分析和相关性分析强烈表明,纤维素结合因子决定了茎的机械力和抗性。基于我们的结果,我们提出了一个模型,说明受限制的半纤维素分支如何与纤维素相互作用,以调节直茎或弯曲茎表型的茎强度支撑,用于切花。

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