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硼添加对甜橙幼苗铜耐性的调控:根系分泌物、相关代谢和基因表达的见解。

Regulation on copper-tolerance in Citrus sinensis seedlings by boron addition: Insights from root exudates, related metabolism, and gene expression.

机构信息

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

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

出版信息

J Hazard Mater. 2023 Oct 5;459:132277. doi: 10.1016/j.jhazmat.2023.132277. Epub 2023 Aug 12.

Abstract

Boron (B) can alleviate Citrus copper (Cu)-toxicity. However, the underlying mechanism by which B mitigates Cu-toxicity is unclear. 'Xuegan' (Citrus sinensis) seedlings were exposed to 0.5 (control) or 350 (Cu-toxicity) µM Cu and 2.5 or 25 µM B for 24 weeks. Thereafter, we investigated the secretion of low molecular weight compounds [LMWCs; citrate, malate, total soluble sugars (TSS), total phenolics (TP), and total free amino acids (TFAA)] by excised roots and their concentrations in roots and leaves, as well as related enzyme gene expression and activities in roots and leaves. Cu-stress stimulated root release of malate and TFAA, which might contribute to citrus Cu-tolerance. However, B-mediated-mitigation of Cu-stress could not be explained in this way, since B addition failed to further stimulate malate and TFAA secretion. Indeed, B addition decreased Cu-stimulated-secretion of malate. Further analysis suggested that Cu-induced-exudation of malate and TFAA was not regulated by their levels in roots. By contrast, B addition increased malate, citrate, and TFAA concentrations in Cu-toxic roots. Cu-toxicity increased TP concentration in 25 μM B-treated leaves, but not in 2.5 μM B-treated leaves. Our findings suggested that the internal detoxification of Cu by LMWCs played a role in B-mediated-alleviation of Cu-toxicity.

摘要

硼(B)可以减轻柑橘铜(Cu)毒性。然而,B 减轻 Cu 毒性的机制尚不清楚。将‘血柑’(Citrus sinensis)幼苗暴露于 0.5(对照)或 350(Cu 毒性)µM Cu 和 2.5 或 25 µM B 中 24 周。此后,我们研究了离体根分泌的低分子量化合物[LMWCs;柠檬酸、苹果酸、总可溶性糖(TSS)、总酚(TP)和总游离氨基酸(TFAA)]及其在根和叶中的浓度,以及根和叶中的相关酶基因表达和活性。Cu 胁迫刺激根释放苹果酸和 TFAA,这可能有助于柑橘 Cu 耐性。然而,B 介导的 Cu 胁迫缓解不能用这种方式来解释,因为 B 的添加并没有进一步刺激苹果酸和 TFAA 的分泌。事实上,B 的添加减少了 Cu 刺激的苹果酸分泌。进一步的分析表明,Cu 诱导的苹果酸和 TFAA 的分泌不受其在根中的水平调节。相比之下,B 的添加增加了 Cu 毒性根中的苹果酸、柠檬酸和 TFAA 浓度。Cu 毒性增加了 25 µM B 处理叶片中的 TP 浓度,但在 2.5 µM B 处理叶片中没有增加。我们的研究结果表明,LMWCs 对 Cu 的内部解毒在 B 介导的 Cu 毒性缓解中起作用。

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