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长期寒冷暴露诱导桉树木质部次生细胞壁的转录和生化重塑。

Long cold exposure induces transcriptional and biochemical remodelling of xylem secondary cell wall in Eucalyptus.

机构信息

Laboratoire de Recherche en Sciences Végétales, Université de Toulouse, CNRS, UPS, 31326 Castanet-Tolosan, France.

Instituto de Tecnologia de Química Biológica (ITQB), Biotecnologia de Células Vegetais, Av. da Republica, 2781-157 Oeiras, Portugal.

出版信息

Tree Physiol. 2018 Mar 1;38(3):409-422. doi: 10.1093/treephys/tpx062.

DOI:10.1093/treephys/tpx062
PMID:28633295
Abstract

Although eucalypts are the most planted hardwood trees worldwide, the majority of them are frost sensitive. The recent creation of frost-tolerant hybrids such as Eucalyptus gundal plants (E. gunnii × E. dalrympleana hybrids), now enables the development of industrial plantations in northern countries. Our objective was to evaluate the impact of cold on the wood structure and composition of these hybrids, and on the biosynthetic and regulatory processes controlling their secondary cell-wall (SCW) formation. We used an integrated approach combining histology, biochemical characterization and transcriptomic profiling as well as gene co-expression analyses to investigate xylem tissues from Eucalyptus hybrids exposed to cold conditions. Chilling temperatures triggered the deposition of thicker and more lignified xylem cell walls as well as regulation at the transcriptional level of SCW genes. Most genes involved in lignin biosynthesis, except those specifically dedicated to syringyl unit biosynthesis, were up-regulated. The construction of a co-expression network enabled the identification of both known and potential new SCW transcription factors, induced by cold stress. These regulators at the crossroads between cold signalling and SCW formation are promising candidates for functional studies since they may contribute to the tolerance of E. gunnii × E. dalrympleana hybrids to cold.

摘要

尽管桉树是全球种植最多的硬木树种,但它们中的大多数对霜敏感。最近培育的耐寒杂交种,如蓝桉植物(Eucalyptus gunnii × Eucalyptus dalrympleana 杂交种),现在使得北方国家能够发展工业种植园。我们的目标是评估寒冷对这些杂交种木材结构和成分的影响,以及控制其次生细胞壁(SCW)形成的生物合成和调节过程。我们使用了一种综合方法,结合组织学、生化特性和转录组分析以及基因共表达分析来研究暴露于寒冷条件下的桉树杂交种的木质部组织。冷藏温度引发了更厚和更木质化的木质部细胞壁的沉积,以及 SCW 基因在转录水平上的调节。除了专门用于丁香基单元生物合成的基因外,大多数参与木质素生物合成的基因都被上调。共表达网络的构建使我们能够鉴定出由冷胁迫诱导的已知和潜在的新的 SCW 转录因子。这些处于冷信号和 SCW 形成交叉点的调节剂是功能研究的有前途的候选者,因为它们可能有助于蓝桉 × 赤桉杂交种对寒冷的耐受性。

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