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木质素为芍药(Paeonia lactiflora Pall.)茎提供机械支撑。

Lignin provides mechanical support to herbaceous peony (Paeonia lactiflora Pall.) stems.

作者信息

Zhao Daqiu, Luan Yuting, Xia Xing, Shi Wenbo, Tang Yuhan, Tao Jun

机构信息

College of Horticulture and Plant Protection, Yangzhou University, Yangzhou, 225009, P.R. China.

Joint International Research Laboratory of Agriculture and Agri-Product Safety, The Ministry of Education of China, Yangzhou University, Yangzhou, 225009, P.R. China.

出版信息

Hortic Res. 2020 Dec 28;7(1):213. doi: 10.1038/s41438-020-00451-5.

Abstract

Stem bending caused by mechanical failure is a major constraint for high-quality herbaceous peony (Paeonia lactiflora Pall.) cut flowers, but little is known about the underlying factors. In this study, two P. lactiflora cultivars, Xixia Yingxue (bending) and Hong Feng (upright), were used to investigate differences in stem bending. The results showed that the stem mechanical strength of Hong Feng was significantly higher than that of Xixia Yingxue, and the thickening of the secondary cell wall and the number of thickened secondary cell wall layers in Hong Feng were significantly higher than those in Xixia Yingxue. Moreover, compared with Xixia Yingxue, Hong Feng showed greater lignification of the cell wall and lignin deposition in the cell walls of the sclerenchyma, vascular bundle sheath and duct. All three types of lignin monomers were detected. The S-lignin, G-lignin, and total lignin contents and the activities of several lignin biosynthesis-related enzymes were higher in Hong Feng than in the other cultivar, and the S-lignin content was closely correlated with stem mechanical strength. In addition, 113,974 full-length isoforms with an average read length of 2106 bp were obtained from the full-length transcriptome of P. lactiflora stems, and differential expression analysis was performed based on the comparative transcriptomes of these two cultivars. Ten lignin biosynthesis-related genes, including 26 members that were closely associated with lignin content, were identified, and multiple upregulated and downregulated transcription factors were found to positively or negatively regulate lignin biosynthesis. Consequently, lignin was shown to provide mechanical support to P. lactiflora stems, providing useful information for understanding the formation of P. lactiflora stem strength.

摘要

机械故障导致的茎弯曲是优质芍药(Paeonia lactiflora Pall.)切花的主要限制因素,但对其潜在因素知之甚少。在本研究中,选用了两个芍药品种,‘西夏迎雪’(易弯曲)和‘红凤’(直立),来研究茎弯曲的差异。结果表明,‘红凤’的茎机械强度显著高于‘西夏迎雪’,‘红凤’次生细胞壁的增厚和增厚的次生细胞壁层数显著高于‘西夏迎雪’。此外,与‘西夏迎雪’相比,‘红凤’的细胞壁木质化程度更高,厚壁组织、维管束鞘和导管细胞壁中的木质素沉积更多。检测到了所有三种类型的木质素单体。‘红凤’中S-木质素、G-木质素和总木质素含量以及几种木质素生物合成相关酶的活性均高于另一个品种,且S-木质素含量与茎机械强度密切相关。此外,从芍药茎的全长转录组中获得了113,974个全长异构体,平均读长为2106 bp,并基于这两个品种的比较转录组进行了差异表达分析。鉴定出10个与木质素生物合成相关的基因,包括26个与木质素含量密切相关的成员,还发现多个上调和下调的转录因子对木质素生物合成有正向或负向调控作用。因此,木质素被证明为芍药茎提供机械支撑,为理解芍药茎强度的形成提供了有用信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd80/7769982/a8ef97d7c35b/41438_2020_451_Fig1_HTML.jpg

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