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橡胶树金属硫蛋白家族的特性表明其在减轻与生理应激相关的活性氧物质的影响方面发挥作用。

Characterization of the rubber tree metallothionein family reveals a role in mitigating the effects of reactive oxygen species associated with physiological stress.

机构信息

Institute of Tropical Agriculture and Forestry, Hainan University, Haikou, Hainan 570228, PR China.

Rubber Research Institute, Chinese Academy of Tropical Agricultural Sciences, Danzhou, Hainan 571737, PR China.

出版信息

Tree Physiol. 2018 Jun 1;38(6):911-924. doi: 10.1093/treephys/tpy003.

DOI:10.1093/treephys/tpy003
PMID:29425342
Abstract

Metallothioneins (MTs) as reactive oxygen species (ROS) scavengers play important roles in stress response and heavy metal homeostasis. In Hevea brasiliensis (the para rubber tree that is the source of commercial natural rubber) and in other trees, the functions of MTs are not well understood. Latex exudes when the rubber tree is tapped. The flow of latex and its regeneration can be enhanced by tapping, wounding and ethylene treatment, all of which produce ROS as a by-product. Here, we show the presence of four MT genes in H. brasiliensis, comprising three Type 2 (HbMT2, -2a and -2b) and one Type 3 (HbMT3L) isoforms, representing one of the smallest MT gene families among angiosperms. The four HbMTs exhibited distinct tissue expression patterns: HbMT2 and HbMT3L mainly in leaves, HbMT2a specifically in flowers and HbMT2b in diverse tissues. The expression of HbMT2b, an isoform present in latex, decreased significantly in the latex following the stress-inducing treatments of tapping, wounding and ethephon (an ethylene generator). The expressions of the leaf-abundant isoforms, HbMT2 and -3L were up-regulated following pathogenic fungus infection and high-temperature stress, but down-regulated by low-temperature stress. These reactions were consistent with multiple defense- and hormone-responsive cis-acting elements in the HbMT promoters. Nine transcription factors were shown to implicate in the high-temperature responsiveness of HbMT2 and -3L in leaves. Overexpression of HbMT2 in Escherichia coli enhanced the bacterium's tolerance to heavy metals and ROS, consistent with its predicted role as an ROS scavenger. Taken together, our results, along with other relevant studies, suggest an important role of HbMTs in latex regeneration as well as species adaptation via the regulation of ROS homeostasis.

摘要

金属硫蛋白(MTs)作为活性氧(ROS)清除剂,在应激反应和重金属稳态中发挥重要作用。在巴西橡胶树(商业天然橡胶的来源,是一种产胶植物)和其他树木中,MTs 的功能尚不清楚。橡胶树被割开时会分泌乳液。割胶、创伤和乙烯处理都可以促进乳液的流动和再生,所有这些过程都会产生 ROS 作为副产物。在这里,我们在巴西橡胶树中发现了 4 个 MT 基因,包括 3 个 Type 2(HbMT2、-2a 和 -2b)和 1 个 Type 3(HbMT3L)同工型,这代表了开花植物中最小的 MT 基因家族之一。这四个 HbMTs 表现出不同的组织表达模式:HbMT2 和 HbMT3L 主要在叶片中,HbMT2a 特异性存在于花朵中,HbMT2b 存在于多种组织中。在乳胶中存在的同工型 HbMT2b 的表达在割胶、创伤和乙烯利(乙烯生成剂)等诱导应激处理后在乳胶中显著降低。叶中丰富的同工型 HbMT2 和 -3L 的表达在病原真菌感染和高温胁迫下上调,但在低温胁迫下下调。这些反应与 HbMT 启动子中的多个防御和激素响应顺式作用元件一致。有 9 种转录因子被证明参与叶片中 HbMT2 和 -3L 的高温响应。在大肠杆菌中过表达 HbMT2 增强了细菌对重金属和 ROS 的耐受性,这与它作为 ROS 清除剂的预期作用一致。综上所述,我们的研究结果以及其他相关研究表明,HbMTs 在乳胶再生以及通过调节 ROS 稳态实现物种适应方面发挥着重要作用。

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