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高粱木素生物合成和重金属响应相关漆酶的全基因组鉴定。

Genome-Wide Identification of Switchgrass Laccases Involved in Lignin Biosynthesis and Heavy-Metal Responses.

机构信息

Shandong Provincial Key Laboratory of Energy Genetics, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao 266101, China.

College of Horticulture, South China Agricultural University, Guangzhou 510000, China.

出版信息

Int J Mol Sci. 2022 Jun 10;23(12):6530. doi: 10.3390/ijms23126530.

Abstract

Plant laccase genes belong to a multigene family, play key roles in lignin polymerization, and participate in the resistance of plants to biotic and abiotic stresses. Switchgrass is an important resource for forage and bioenergy production, yet information about the switchgrass laccase gene family is scarce. Using bioinformatic approaches, a genome-wide analysis of the laccase multigene family in switchgrass was carried out in this study. In total, 49 laccase genes ( to ) were identified; these can be divided into five subclades, and 20 of them were identified as targets of miR397. The tandem and segmental duplication of laccase genes on Chr05 and Chr08 contributed to the expansion of the laccase family. The laccase proteins shared conserved signature sequences but displayed relatively low sequence similarity, indicating the potential functional diversity of switchgrass laccases. Switchgrass laccases exhibited distinct tissue/organ expression patterns, revealing that some laccases might be involved in the lignification process during stem development. All five of the laccase isoforms selected from different subclades responded to heavy metal. The immediate response of lignin-related laccases, as well as the delayed response of low-abundance laccases, to heavy-metal treatment shed light on the multiple roles of laccase isoforms in response to heavy-metal stress.

摘要

植物漆酶基因属于多基因家族,在木质素聚合中起关键作用,并参与植物对生物和非生物胁迫的抗性。柳枝稷是饲料和生物能源生产的重要资源,但关于柳枝稷漆酶基因家族的信息却很少。本研究采用生物信息学方法对柳枝稷漆酶多基因家族进行了全基因组分析。共鉴定出 49 个漆酶基因(至),可分为 5 个亚家族,其中 20 个被鉴定为 miR397 的靶基因。Chr05 和 Chr08 上漆酶基因的串联和片段重复导致了漆酶家族的扩张。漆酶蛋白具有保守的特征序列,但序列相似性相对较低,表明柳枝稷漆酶具有潜在的功能多样性。柳枝稷漆酶表现出明显的组织/器官表达模式,表明一些漆酶可能参与茎发育过程中的木质素形成。从不同亚家族中选择的 5 种漆酶同工酶均对重金属有反应。木质素相关漆酶的即刻反应,以及低丰度漆酶的延迟反应,揭示了漆酶同工酶在应对重金属胁迫中的多种作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3288/9224244/9f7db790aefe/ijms-23-06530-g001.jpg

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