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利用磁共振成像技术可视化室外榉树木质部和韧皮部汁液流动的动态。

Dynamics of xylem and phloem sap flow in an outdoor zelkova tree visualized by magnetic resonance imaging.

机构信息

Institute of Applied Physics, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki 305-8577, Japan.

Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo 113-8657, Japan.

出版信息

Tree Physiol. 2020 Mar 11;40(3):290-304. doi: 10.1093/treephys/tpz120.

Abstract

Xylem and phloem sap flows in an intact, young Japanese zelkova tree (Zelkova serrata (Thunb.) Makino) growing outdoors were measured using magnetic resonance imaging (MRI). Two propagator-based sequences were developed for q-space imaging: pulse field gradient (PFG) with spin echo (PFG-SE) and stimulated echo (PFG-STE), which were used for xylem and phloem flow measurements, respectively. The data evaluation methods were improved to image fast xylem flow and slow phloem flow. Measurements were taken every 2-3 h for several consecutive days in August 2016, and diurnal changes in xylem and phloem sap flows in a cross-section of the trunk were quantified at a resolution of 1 mm2. During the day, apparent xylem flow volume exhibited a typical diurnal pattern following a vapor pressure deficit. The velocity mapping of xylem sap flow across the trunk cross section revealed that the greatest flow volume was found in current-year earlywood that had differentiated in April-May. The combined xylem flow in the 1- and 2-year-old annual rings also contributed to one-third of total sap flow. In the phloem, downward sap flow did not exhibit diurnal changes. This novel application of MRI in visualization of xylem and phloem sap flow by MRI is a promising tool for in vivo study of water transport in mature trees.

摘要

使用磁共振成像(MRI)测量了在户外生长的完整年轻日本榉树(Zelkova serrata (Thunb.) Makino)的木质部和韧皮部汁液流。开发了两种基于示踪剂的 q 空间成像序列:自旋回波(PFG-SE)和激发回波(PFG-STE)的脉冲梯度场(PFG),分别用于木质部和韧皮部流动测量。改进了数据评估方法,以成像快速木质部流动和缓慢韧皮部流动。2016 年 8 月,连续几天每 2-3 小时进行一次测量,并以 1mm2 的分辨率量化了树干横截面上木质部和韧皮部汁液流的日变化。白天,表观木质部流量表现出典型的日变化模式,随蒸气压亏缺而变化。木质部汁液跨树干横截面的流速图显示,最大流量出现在 4 月至 5 月分化的当年早材中。1 年和 2 年生年轮的组合木质部流量也占总汁液流量的三分之一。在韧皮部中,向下的汁液流没有表现出日变化。这项通过 MRI 可视化木质部和韧皮部汁液流的 MRI 新应用是研究成熟树木中水分运输的体内研究的有前途的工具。

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