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