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向日葵的非腺毛在叶片喷施锌的吸收和转运中具有重要作用。

Non-glandular trichomes of sunflower are important in the absorption and translocation of foliar-applied Zn.

机构信息

School of Ecology and Environment, Northwestern Polytechnical University, Xi'an, China.

School of Agriculture and Food Sciences, The University of Queensland, St Lucia, Queensland, Australia.

出版信息

J Exp Bot. 2021 Jun 22;72(13):5079-5092. doi: 10.1093/jxb/erab180.

Abstract

Trichomes are potentially important for absorption of foliar fertilizers. A study has shown that the non-glandular trichromes (NGTs) of sunflower (Helianthus annuus) accumulated high concentrations of foliar-applied zinc (Zn); however, the mechanisms of Zn accumulation in the NGTs and the fate of this Zn are unclear. Here we investigated how foliar-applied Zn accumulates in the NGTs and the subsequent translocation of this Zn. Time-resolved synchrotron-based X-ray fluorescence microscopy and transcriptional analyses were used to probe the movement of Zn in the NGTs, with the cuticle composition of the NGTs examined using confocal Raman microscopy. The accumulation of Zn in the NGTs is both an initial preferential absorption process and a subsequent translocation process. This preferred absorption is likely because the NGT base has a higher hydrophilicity, whilst the subsequent translocation is due to the presence of plasmodesmata, Zn-chelating ligands, and Zn transporters in the NGTs. Furthermore, the Zn sequestered in the NGTs was eventually translocated out of the trichome once the leaf Zn concentration had decreased, suggesting that the NGTs are also important in maintaining leaf Zn homeostasis. This study demonstrates for the first time that trichomes have a key structural and functional role in the absorption and translocation of foliar-applied Zn.

摘要

表皮毛在吸收叶面肥方面可能很重要。一项研究表明,向日葵(Helianthus annuus)的非腺表皮毛(NGTs)积累了高浓度的叶面施用锌(Zn);然而,NGTs 中 Zn 积累的机制以及这种 Zn 的命运尚不清楚。在这里,我们研究了叶面施用的 Zn 如何在 NGTs 中积累,以及随后 Zn 的转运。使用基于同步加速器的时间分辨 X 射线荧光显微镜和转录分析来探测 Zn 在 NGTs 中的运动,使用共聚焦拉曼显微镜检查 NGTs 的表皮组成。NGTs 中 Zn 的积累既是一个初始的优先吸收过程,也是随后的转运过程。这种优先吸收可能是因为 NGT 基部具有更高的亲水性,而随后的转运是由于 NGTs 中存在胞间连丝、Zn 螯合配体和 Zn 转运蛋白。此外,一旦叶片 Zn 浓度降低,NGTs 中螯合的 Zn 最终被转运出表皮毛,这表明 NGTs 对维持叶片 Zn 平衡也很重要。这项研究首次表明,表皮毛在吸收和转运叶面施用的 Zn 方面具有关键的结构和功能作用。

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