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早期形成拉力木过程中,关于细胞壁生物合成和修饰相关功能基因在黄花木(鹅掌楸)茎次生木质部中的 EST 分析。

EST analysis of functional genes associated with cell wall biosynthesis and modification in the secondary xylem of the yellow poplar (Liriodendron tulipifera) stem during early stage of tension wood formation.

机构信息

Division of Biotechnology, Korea University, Seoul, 136-713, Korea.

出版信息

Planta. 2011 Nov;234(5):959-77. doi: 10.1007/s00425-011-1449-1. Epub 2011 Jun 18.

Abstract

A cDNA library was constructed from secondary xylem in the stem of a 2-year-old yellow poplar after being bent for 6 h with a 45° configuration to isolate genes related to cell wall modification during the early stages of tension wood formation. A total of 6,141 ESTs were sequenced to generate a database of 5,982 high-quality expressed sequence tags (ESTs). These sequences were clustered into 1,733 unigenes, including 822 contigs and 911 singletons. Homologs of the genes regulate many aspects of secondary xylem development, including those for primary and secondary metabolism, plant growth hormones, transcription factors, cell wall biosynthesis and modification, and stress responses. Although there were only 1,733 annotated ESTs (28.9%), the annotated ESTs obtained in this study provided sequences for a broad array of transcripts expressed in the stem upon mechanical bending, and the majority of them were the first representatives of their respective gene families in Liriodendron tulipifera. In the case of lignin, xylem-specific COMTs were identified and their expressions were significantly downregulated in the tension wood-forming tissues. Additionally, the majority of the auxin- and BR-related genes were downregulated significantly in response to mechanical bending treatment. Despite the small number of ESTs sequenced in this study, many genes that are relevant to cell wall biosynthesis and modification have been isolated. Expression analysis of selected genes allow us to identify the regulatory genes that may perform essential functions during the early stages of tension wood formation and associated cell wall modification.

摘要

构建了一个 cDNA 文库,该文库来源于经过 6 小时 45°弯曲处理的 2 年生黄杨次生木质部,用于分离与张性木材形成早期细胞壁修饰相关的基因。共测序了 6141 个 EST 以生成 5982 个高质量表达序列标签 (EST) 的数据库。这些序列被聚类为 1733 个 unigenes,包括 822 个 contigs 和 911 个 singletons。调控次生木质部发育的许多方面的基因的同源物,包括那些参与初级和次级代谢、植物生长激素、转录因子、细胞壁生物合成和修饰以及应激反应的基因。尽管只有 1733 个注释的 ESTs(28.9%),但本研究获得的注释 ESTs 为机械弯曲后茎中表达的广泛转录本提供了序列,其中大多数是 Liriodendron tulipifera 中各自基因家族的第一个代表。在木质素的情况下,鉴定了木质部特异性的 COMTs,并且它们在形成张性木材的组织中的表达明显下调。此外,大多数与生长素和 BR 相关的基因在响应机械弯曲处理时都显著下调。尽管本研究中测序的 ESTs 数量较少,但已经分离出许多与细胞壁生物合成和修饰相关的基因。对选定基因的表达分析使我们能够鉴定在张性木材形成和相关细胞壁修饰的早期阶段可能发挥重要功能的调节基因。

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