利用放射自显影和荧光示踪成像技术测定大豆光合产物韧皮部运输途径和目的地。

IF 3.6
Plant signaling & behavior Pub Date : 2025-12-31 Epub Date: 2025-08-29 DOI:10.1080/15592324.2025.2552897
Ai Kaiho-Soma, Yuko Kurita, Natsuko I Kobayashi, Tomoko M Nakanishi, Keitaro Tanoi
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引用次数: 0

摘要

维管组织在植物中运输水分和营养物质,韧皮部将光合产物从源头分配到汇。韧皮部运输的方向是由源汇位置关系和维管连接决定的。虽然已经研究了韧皮部运输的各个方面,但仍然缺乏全面的认识。在这里,我们使用大豆作为模型系统,利用¹⁴c标记蔗糖的放射自显影和羧基荧光素(CF)的荧光成像(一种已知的韧皮部示踪剂)来研究光合产物的转运途径和目的地。大豆表现出简单的叶分结构,交替的三叶状叶片沿茎相对排列。将c -蔗糖施用于成熟叶片表明,正在发育的幼嫩叶片从茎两侧的源叶片接收光合作用。为了可视化途径,¹⁴c -蔗糖和羧基荧光素二乙酸酯(CFDA)应用于顺序源叶片。来自茎维管束中C和CF的信号没有重叠,表明不同的运输途径。此外,当将¹⁴c -蔗糖分别施用于单片成熟叶片的左右两侧时,则将其施用于汇叶的相应侧面。这些发现表明,光合产物是通过多个分区良好的韧皮部途径输送到下沉组织的,为韧皮部运输的空间组织提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determination of the phloem transport pathways and destination of photosynthates in soybean using autoradiography and fluorescent tracer imaging.

Vascular tissues transport water and nutrients in plants, with the phloem distributing photosynthates from source to sink. The direction of phloem transport is determined by the positional relationship between sources and sinks and by vascular connections. Although aspects of phloem transport have been studied, a comprehensive understanding remains lacking. Here, we used soybean as a model system to investigate the translocation pathways and destinations of photosynthates using autoradiography with ¹⁴C-labeled sucrose and fluorescent imaging with carboxyfluorescein (CF), a known phloem tracer. Soybean exhibits simple phyllotaxy, with alternate trifoliate leaves arranged oppositely along the stem. Applying ¹⁴C-sucrose to mature leaves revealed that young developing leaves received photosynthates from source leaves on both sides of the stem. To visualize pathways, ¹⁴C-sucrose and carboxyfluorescein diacetate (CFDA) were applied to sequential source leaves. Signals from ¹⁴C and CF in the stem's vascular bundles showed no overlap, indicating distinct transport pathways. Additionally, when ¹⁴C-sucrose was applied separately to the left and right halves of a single mature leaf, it was followed corresponding sides to the sink leaves. These findings demonstrate that photosynthates are delivered to sink tissues via multiple, well-compartmentalized phloem pathways, providing new insight into the spatial organization of phloem transport.

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