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在木栓形成层中积累的马铃薯愈伤组织木质素过氧化物酶 FHT 受创伤诱导,并受脱落酸和水杨酸的调控。

The potato suberin feruloyl transferase FHT which accumulates in the phellogen is induced by wounding and regulated by abscisic and salicylic acids.

机构信息

Laboratori del Suro, Facultat de Ciències, Universitat de Girona, Campus Montilivi s/n, E-17071 Girona, Spain.

出版信息

J Exp Bot. 2013 Aug;64(11):3225-36. doi: 10.1093/jxb/ert163.

Abstract

The present study provides new insights on the role of the potato (Solanum tuberosum) suberin feruloyl transferase FHT in native and wound tissues, leading to conclusions about hitherto unknown properties of the phellogen. In agreement with the enzymatic role of FHT, it is shown that its transcriptional activation and protein accumulation are specific to tissues that undergo suberization such as the root boundary layers of the exodermis and the endodermis, along with the tuber periderm. Remarkably, FHT expression and protein accumulation within the periderm is restricted to the phellogen derivative cells with phellem identity. FHT levels in the periderm are at their peak near harvest during periderm maturation, with the phellogen becoming meristematically inactive and declining thereafter. However, periderm FHT levels remain high for several months after harvest, suggesting that the inactive phellogen retains the capacity to synthesize ferulate esters. Tissue wounding induces FHT expression and the protein accumulates from the first stages of the healing process onwards. FHT is up-regulated by abscisic acid and down-regulated by salicylic acid, emphasizing the complex regulation of suberin synthesis and wound healing. These findings open up new prospects important for the clarification of the suberization process and yield important information with regard to the skin quality of potatoes.

摘要

本研究提供了马铃薯(Solanum tuberosum)愈伤木酚酰转移酶 FHT 在天然和受伤组织中作用的新见解,得出了关于木栓形成层迄今未知特性的结论。与 FHT 的酶促作用一致,研究表明其转录激活和蛋白积累是特定于经历木质化的组织的,如外皮层和内皮层的根边界层,以及块茎周皮。值得注意的是,FHT 在周皮中的表达和积累仅限于具有栓内层特征的栓内层衍生细胞。在周皮成熟期间接近收获时,周皮中的 FHT 水平达到峰值,此时栓内层失去分生组织活性,此后逐渐下降。然而,收获后几个月内,周皮 FHT 水平仍保持较高水平,这表明失活的栓内层仍具有合成阿魏酸酯的能力。组织受伤诱导 FHT 表达,蛋白质从愈合过程的早期开始积累。脱落酸上调 FHT 的表达,水杨酸下调 FHT 的表达,这强调了木质素合成和伤口愈合的复杂调控。这些发现为阐明木质化过程开辟了新的前景,并为马铃薯的皮肤质量提供了重要信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fe4/3733149/597b54e2606a/exbotj_ert163_f0001.jpg

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