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亏缺恢复:杂种杨树叶和茎中的系统铜的优先化和分区化。

Recovery after deficiency: systemic copper prioritization and partitioning in the leaves and stems of hybrid poplar.

机构信息

Department of Biology, Colorado State University, Fort Collins, CO 80523, USA.

Water Management and Systems Research Unit, USDA-ARS, Fort Collins, CO, USA.

出版信息

Tree Physiol. 2022 Sep 8;42(9):1776-1785. doi: 10.1093/treephys/tpac038.

Abstract

Copper (Cu) is important for many aspects of plant function including photosynthesis. It has been suggested that photosynthesis, especially in young leaves, is prioritized for Cu delivery after deficiency in hybrid poplar. To determine relative Cu delivery prioritization, we enriched hydroponic plant growth media of Cu-deficient poplar with 98% 65Cu and tracked Cu delivery after deficiency to young leaves, mature leaves and stems. Young leaves acquired ~58% more 65Cu on Day 1 and ~65% more 65Cu by Day 3 compared with mature leaves. Additionally, stomatal conductance (gs) was measured on leaves for 6 weeks and during a 3-day 65Cu pulse resupply period. During deficiency, mature leaves maintained a higher gs than younger leaves but 3 days after Cu resupply the younger leaves that had recovered showed the highest gs. In conclusion, these results provide a quantitative understanding of how Cu is systemically transported and distributed to photosynthetic and stem tissues.

摘要

铜(Cu)对于植物功能的许多方面都很重要,包括光合作用。有人提出,在杂交杨中出现铜缺乏后,优先向光合作用输送铜,特别是在幼叶中。为了确定相对的铜输送优先级,我们用 98%的 65Cu 来丰富缺铜的水培杨树植物生长介质,并在缺乏后追踪铜向幼叶、成熟叶和茎的输送情况。与成熟叶相比,幼叶在第 1 天获得了约 58%的 65Cu,在第 3 天获得了约 65%的 65Cu。此外,还在 6 周的时间内测量了叶片的气孔导度(gs),并在为期 3 天的 65Cu 脉冲补给期内进行了测量。在缺乏期,成熟叶的 gs 保持高于幼叶,但在 Cu 补给后的第 3 天,恢复的幼叶表现出最高的 gs。总之,这些结果提供了对铜如何系统运输和分配到光合和茎组织的定量理解。

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