Division of Soil and Water Management, KU Leuven, Kasteelpark Arenberg 20, 3001 Heverlee, Belgium.
Division of Soil and Water Management, KU Leuven, Kasteelpark Arenberg 20, 3001 Heverlee, Belgium; Université Grenoble Alpes, Université Savoie Mont Blanc, CNRS, IRD, IFSTTAR, ISTERRE, Grenoble, France.
Sci Total Environ. 2023 Apr 15;869:161816. doi: 10.1016/j.scitotenv.2023.161816. Epub 2023 Jan 26.
The pathways through which cadmium (Cd) is taken up and loaded into cacao beans (nibs) are yet to be revealed. Previous work suggested that Cd loading into cacao nibs may occur via direct xylem uptake rather than phloem-mediated redistribution from the leaves. A stable isotope (Cd) pulse-chase experiment was set up to identify the pathways of Cd loading into cacao nibs. The topsoil beneath two mature cacao trees in the field was enriched in Cd via surface irrigation with a spiked solution. The increase in Cd isotopic abundance (IA) in the plant tissues was followed up for 548 days after spiking. The Cd IA in the plant tissues increased from natural abundance (0.89 %) to 7.0 % (tree A) and 10.1 % (tree B) at equilibrium. The tracer was taken up in the plant tissues in the order immature leaves > mature leaves > nibs in both trees, while tracer uptake in flowers and cherelles was less consistent between the trees. Half of the equilibrium Cd IA was reached in the nibs at 191 days after spiking, significantly later than corresponding values for mature (151 days) and immature leaves (117 days). Pod maturation from flower stage takes about 6 months with most Cd entering the nibs at the last stage of development. The rather slow rise in the Cd IA in the nibs compared to the leaves hence suggests that Cd in cacao nibs likely originates from phloem-redistribution from the stem, branches or mature leaves and not from direct root-to-nib transport via the xylem.
镉(Cd)进入可可豆(豆粒)并在其中积累的途径尚未揭示。先前的研究表明,Cd 可能通过直接木质部吸收进入可可豆,而不是通过韧皮部从叶片重新分配。我们进行了一项稳定同位素(Cd)脉冲追踪实验,以确定 Cd 进入可可豆的途径。通过在田间的两棵成熟可可树的表土上进行带标记溶液的表面灌溉,使表土中的 Cd 得到富集。在标记后 548 天内,持续监测植物组织中 Cd 同位素丰度(IA)的增加情况。植物组织中的 Cd IA 从自然丰度(0.89%)增加到 7.0%(树 A)和 10.1%(树 B),达到平衡。在这两棵树中,示踪剂在植物组织中的吸收顺序为未成熟叶片>成熟叶片>豆粒,而示踪剂在花和胚珠中的吸收在两棵树之间并不一致。在标记后 191 天,豆粒中达到了平衡 Cd IA 的一半,显著晚于成熟叶片(151 天)和未成熟叶片(117 天)的相应值。从花阶段到豆荚成熟大约需要 6 个月,大部分 Cd 在发育的最后阶段进入豆粒。与叶片相比,豆粒中 Cd IA 的上升速度较慢,这表明可可豆中的 Cd 可能来自韧皮部从茎、枝条或成熟叶片的重新分配,而不是通过木质部从根部直接运输到豆粒。