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生长素通过增加液泡区隔化和减少镉的长距离转运来缓解镉毒害。

Auxin alleviates cadmium toxicity by increasing vacuolar compartmentalization and decreasing long-distance translocation of cadmium in Poa pratensis.

机构信息

College of Pratacultural Science, Gansu Agricultural University, Key Laboratory of Grassland Ecosystem, Ministry of Education, Pratacultural Engineering Laboratory of Gansu Province, Sino-U.S. Center for Grazingland Ecosystem Sustainability, Lanzhou, Gansu, 730070, China.

College of Pratacultural Science, Gansu Agricultural University, Key Laboratory of Grassland Ecosystem, Ministry of Education, Pratacultural Engineering Laboratory of Gansu Province, Sino-U.S. Center for Grazingland Ecosystem Sustainability, Lanzhou, Gansu, 730070, China.

出版信息

J Plant Physiol. 2023 Mar;282:153919. doi: 10.1016/j.jplph.2023.153919. Epub 2023 Jan 13.

Abstract

Kentucky bluegrass (Poa pratensis L.) hyperaccumulates cadmium (Cd) and exhibits a hypertolerance. Thus, it has potential for the phytoremediation of Cd-containing soil. Auxin signaling is involved in the response to Cd stress. However, the mechanisms of auxin-mediated detoxification and Cd translocation in plants remain unclear. This study aimed to investigate the effects of exogenous application of indole-3-acetic acid (IAA) on the Cd translocation, subcellular Cd distribution, chemical forms of Cd, and transcriptional regulation of Kentucky bluegrass. The results showed that the exogenous application of IAA increased the amount of organelle-bound Cd and vacuole-compartmentalized Cd in root cells, reduced the Cd concentration in the leaf tissues (epidermis, mesophyll, and vascular bundle) and root tissues (rhizodermis and cortex) but increased in the stele, and alleviate Cd-induced leaf chlorosis and growth inhibition. The expression of genes associated with Cd transporters (ABCs, ZIPs, NASs, OPTs, and YSLs), phosphatases, oxalate decarboxylases and lignin biosynthesis were significantly regulated by exogenous IAA under Cd stress. A positive regulation of phosphatases and oxalate decarboxylases genes related to an increase in phosphate- and oxalate-bound Cd, as well as a decrease in pectate- and protein-bound Cd and inorganic Cd, thereby contributing to a decrease in Cd phytotoxicity. The significant regulation of Cd transporters associated with decreasing the long-distance translocation of Cd, and the activation of lignin biosynthesis may contribute to the development of root endodermal barriers and increase the deposition of undissolved Cd phosphates and oxalate-bound Cd in the stele. These results revealed the important role of auxin in Cd detoxification and translocation in Kentucky bluegrass and they provide a theoretical basis for the phytoremediation of Cd-containing soil.

摘要

肯塔基蓝草(Poa pratensis L.)超积累镉(Cd)并表现出超耐性。因此,它具有修复含镉土壤的潜力。生长素信号参与了对 Cd 胁迫的响应。然而,生长素介导的植物解毒和 Cd 转运的机制仍不清楚。本研究旨在探讨外源吲哚-3-乙酸(IAA)对 Cd 转运、亚细胞 Cd 分布、Cd 化学形态和肯塔基蓝草转录调控的影响。结果表明,外源 IAA 的应用增加了细胞器结合 Cd 和液泡区隔 Cd 在根细胞中的含量,降低了叶片组织(表皮、叶肉和维管束)和根组织(根皮层和皮层)中 Cd 的浓度,但在中柱中增加,减轻了 Cd 诱导的叶片黄化和生长抑制。Cd 胁迫下,外源 IAA 显著调节与 Cd 转运体(ABCs、ZIPs、NASs、OPT 和 YSLs)、磷酸酶、草酸脱羧酶和木质素生物合成相关的基因的表达。与磷酸盐和草酸结合 Cd 增加以及果胶和蛋白结合 Cd 和无机 Cd 减少相关的磷酸酶和草酸脱羧酶基因的正向调节,从而有助于降低 Cd 的植物毒性。与减少 Cd 远距离转运相关的 Cd 转运体的显著调控,以及木质素生物合成的激活,可能有助于根内皮层屏障的发育,并增加未溶解的 Cd 磷酸盐和草酸结合 Cd 在中柱中的沉积。这些结果揭示了生长素在肯塔基蓝草 Cd 解毒和转运中的重要作用,为含 Cd 土壤的植物修复提供了理论依据。

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