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铜诱导柑橘根系渗出物的特性及其在铜耐性中的可能作用。

Characterization of copper-induced-release of exudates by Citrus sinensis roots and their possible roles in copper-tolerance.

机构信息

College of Resources and Environment, Fujian Agriculture and Forestry University, Fuzhou, 350002, China.

出版信息

Chemosphere. 2022 Dec;308(Pt 2):136348. doi: 10.1016/j.chemosphere.2022.136348. Epub 2022 Sep 7.

Abstract

Copper (Cu) excess is often observed in old Citrus orchards. Little information is available on the characterization of Cu-induced-release of root exudates and their possible roles in plant Cu-tolerance. Using sweet orange [Citrus sinensis (L.) Osbeck cv. Xuegan] seedlings as materials, we investigated the impacts of 0, 0.5, 25, 150, 350, 550, 1000, 2000 or 5000 μM CuCl (pH 4.8) on Cu uptake, root exudates [malate, citrate, total phenolics (TP), total soluble sugars (TSS) and total free amino acids (TFAA)], electrolyte leakage and malondialdehyde, and solution pH under hydroponic conditions; the time-course of root exudates and solution pH in response to Cu; and the impacts of protein synthesis and anion-channel inhibitors, and temperature on Cu-induced-secretion of root exudates and solution pH. About 70% of Cu was accumulated in 0 and 0.5 μM Cu-exposed roots, while over 97% of Cu was accumulated in ≥25 μM Cu-exposed roots. Without Cu, the seedlings could alkalize the solution pH from 4.8 to above 6.0. Cu-stimulated-secretion of root exudates elevated with the increment of Cu concentration from 0 to 1000 μM, then decreased or remained unchanged with the further increment of Cu concentration, while root electrolyte leakage and malondialdehyde (root-induced alkalization) increased (lessened) with the increment of Cu concentration from 0 to 5000 μM. Further analysis indicated that Cu-stimulated-secretion of root exudates was an energy-dependent process and could repressed by inhibitors, and that there was no discernible delay between the onset of exudate release and the addition of Cu. To conclude, both root-induced alkalization and Cu-stimulated-release of root exudates played a key role in sweet orange Cu-tolerance via increasing root Cu accumulation and reducing Cu uptake and phytotoxicity.

摘要

铜(Cu)过剩在老柑橘园经常出现。关于 Cu 诱导根系分泌物释放的特征及其在植物耐 Cu 性中的可能作用的信息很少。本研究以甜橙[Citrus sinensis (L.) Osbeck cv. Xuegan]幼苗为材料,研究了 0、0.5、25、150、350、550、1000、2000 或 5000 μM CuCl(pH 4.8)对 Cu 吸收、根系分泌物[苹果酸、柠檬酸、总酚(TP)、总可溶性糖(TSS)和总游离氨基酸(TFAA)]、电解质渗漏和丙二醛以及溶液 pH 的影响;根系分泌物和溶液 pH 对 Cu 的时程响应;以及蛋白质合成和阴离子通道抑制剂以及温度对 Cu 诱导根系分泌物和溶液 pH 分泌的影响。在 0 和 0.5 μM Cu 暴露的根系中,约 70%的 Cu 被积累,而在≥25 μM Cu 暴露的根系中,超过 97%的 Cu 被积累。在没有 Cu 的情况下,幼苗可以将溶液 pH 从 4.8 碱化到 6.0 以上。随着 Cu 浓度从 0 到 1000 μM 的增加,Cu 刺激的根系分泌物分泌增加,然后随着 Cu 浓度的进一步增加而减少或保持不变,而根电解质渗漏和丙二醛(根诱导碱化)随着 Cu 浓度从 0 到 5000 μM 的增加而增加(减少)。进一步分析表明,Cu 刺激的根系分泌物分泌是一个依赖能量的过程,可以被抑制剂抑制,并且在分泌物释放和添加 Cu 之间没有明显的延迟。总之,根诱导的碱化和 Cu 刺激的根系分泌物释放通过增加根 Cu 积累和减少 Cu 吸收和植物毒性,在甜橙耐 Cu 性中起关键作用。

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