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受伤会迅速改变收获的甜菜根中的转录因子表达、激素信号传导和酚类化合物代谢。

Wounding rapidly alters transcription factor expression, hormonal signaling, and phenolic compound metabolism in harvested sugarbeet roots.

作者信息

Fugate Karen K, Finger Fernando L, Lafta Abbas M, Dogramaci Munevver, Khan Mohamed F R

机构信息

U.S. Department of Agriculture, Agricultural Research Service (USDA-ARS), Edward T. Schafer Agricultural Research Center, Fargo, ND, United States.

Departamento de Agronomia, Universidade Federal de Viҫosa, Viҫosa, Brazil.

出版信息

Front Plant Sci. 2023 Jan 6;13:1070247. doi: 10.3389/fpls.2022.1070247. eCollection 2022.

Abstract

Injuries sustained by sugarbeet ( L.) roots during harvest and postharvest operations seriously reduce the yield of white sugar produced from stored roots. Although wound healing is critically important to reduce losses, knowledge of these processes is limited for this crop as well as for roots in other species. To better understand the metabolic signals and changes that occur in wounded roots, dynamic changes in gene expression were determined by RNA sequencing and the activity of products from key genes identified in this analysis were determined in the 0.25 to 24 h following injury. Nearly five thousand differentially expressed genes that contribute to a wide range of cellular and molecular functions were identified in wounded roots. Highly upregulated genes included transcription factor genes, as well as genes involved in ethylene and jasmonic acid (JA) biosynthesis and signaling and phenolic compound biosynthesis and polymerization. Enzyme activities for key genes in ethylene and phenolic compound biosynthesis and polymerization also increased due to wounding. Results indicate that wounding causes a major reallocation of metabolism in sugarbeet taproots. Although both ethylene and JA are likely involved in triggering wound responses, the greater and more sustained upregulation of ethylene biosynthesis and signaling genes relative to those of JA, suggest a preeminence of ethylene signaling in wounded sugarbeet roots. Changes in gene expression and enzymes involved in phenolic compound metabolism additionally indicate that barriers synthesized to seal off wounds, such as suberin or lignin, are initiated within the first 24 h after injury.

摘要

甜菜(Beta vulgaris L.)根在收获及采后操作过程中受到的损伤会严重降低贮藏根生产白砂糖的产量。尽管伤口愈合对于减少损失至关重要,但对于这种作物以及其他物种的根而言,对这些过程的了解仍然有限。为了更好地理解受伤根中发生的代谢信号和变化,通过RNA测序确定了基因表达的动态变化,并在受伤后的0.25至24小时内测定了该分析中鉴定出的关键基因产物的活性。在受伤的根中鉴定出了近5000个差异表达基因,这些基因参与了广泛的细胞和分子功能。高度上调的基因包括转录因子基因,以及参与乙烯和茉莉酸(JA)生物合成及信号传导、酚类化合物生物合成及聚合的基因。乙烯和酚类化合物生物合成及聚合过程中关键基因的酶活性也因受伤而增加。结果表明,受伤导致甜菜主根代谢发生重大重新分配。尽管乙烯和JA可能都参与触发伤口反应,但相对于JA基因,乙烯生物合成及信号传导基因的上调幅度更大且更持久,这表明乙烯信号在受伤甜菜根中占主导地位。酚类化合物代谢相关基因表达和酶的变化还表明,受伤后24小时内会启动诸如木栓质或木质素等用于封闭伤口的屏障的合成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74e1/9853395/5ba8b46fb773/fpls-13-1070247-g001.jpg

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