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微区放射自显影定位两种双子叶 C4 植物诱导性汇叶中输入的(14)C 光合产物与韧皮部卸出的关系。

Microautoradiographic localization of imported (14)C-photosynthate in induced sink leaves of two dicotyledonous C4 plants in relation to phloem unloading.

机构信息

Institut für Forstbotanik der Universität, Büsgenweg 2, D-3400, Göttingen, Federal Republic of Germany.

出版信息

Planta. 1985 Apr;163(4):439-47. doi: 10.1007/BF00392700.

DOI:10.1007/BF00392700
PMID:24249442
Abstract

Pruned source-sink transport systems from predarkened plants of Amaranthus caudatus L. and Gomphrena globosa L. were used to study the localization of (14)C-labeled photosynthate imported into experimentally induced sink leaves by microautoradiography. During a 6-h (Amaranthus) or a 4-h (Gomphrena) transport period, (14)C-assimilates were translocated acropetally from a mature source leaf provided with (14)CO2, into a younger induced sink leaf (dark/-CO2). In addition, a young still-expanding source leaf exposed to (14)CO2 exported (14)C-assimilates basipetally into a mature induced sink leaf (dark/-CO2). Microautoradiographs showed that imported (14)C-photosynthate was strongly accumulated in the sieve element/companion cell complexes of midveins, secondary veins, and minor veins of both the mature and the expanding sink leaf. Some label was also present in the vascular parenchyma and bundlesheath cells. In petioles, (14)C-label was concentrated in the sieve element/companion cell complexes of all bundles indicating that assimilates were imported and distributed via the phloem. Moreover, a considerable amount of radioactivity unloaded from the sieve element/companion cell complexes of petiolar bundles, was densely located at sites of secondary wall thickenings of differen-tiating metaxylem vessels, and at sites of chloroplasts of the vascular parenchyma and bundle-sheath cells. These observations were more striking in petioles of Gomphrena than Amaranthus.

摘要

从遮光处理的苋菜(Amaranthus caudatus L.)和鸡冠花(Gomphrena globosa L.)植株中修剪源-库运输系统,用于通过显微放射自显影研究(14)C 标记光合作用产物输入到实验诱导的库叶中的定位。在 6 小时(苋菜)或 4 小时(鸡冠花)的运输期内,(14)C 同化产物从成熟的源叶(提供(14)CO2)沿向顶方向运入较年轻的诱导库叶(黑暗/-CO2)。此外,暴露于(14)CO2 的年轻仍在扩展的源叶也能将(14)C 同化产物沿向基方向输出到成熟的诱导库叶(黑暗/-CO2)。显微放射自显影显示,输入的(14)C 光合作用产物在成熟和扩展库叶的中脉、二级脉和小脉的筛管/伴胞复合体中强烈积累。在维管束鞘细胞和叶脉中也存在一些标记。在叶柄中,(14)C 标记集中在所有束的筛管/伴胞复合体中,表明同化产物是通过韧皮部输入和分配的。此外,从叶柄束的筛管/伴胞复合体中卸载的相当数量的放射性物质,在正在分化的木质部导管的次生壁加厚处和维管束的叶绿体及维管束鞘细胞处密集存在。这些观察结果在鸡冠花的叶柄中比苋菜更明显。

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Microautoradiographic localization of imported (14)C-photosynthate in induced sink leaves of two dicotyledonous C4 plants in relation to phloem unloading.微区放射自显影定位两种双子叶 C4 植物诱导性汇叶中输入的(14)C 光合产物与韧皮部卸出的关系。
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引用本文的文献

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Planta. 1988 Jul;175(1):1-8. doi: 10.1007/BF00402875.
2
A morphometric analysis of the phloem-unloading pathway in developing tobacco leaves.发育烟草叶片韧皮部卸出途径的形态计量分析。
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本文引用的文献

1
Biochemical and cytological relationships in C4 plants.C4 植物的生化和细胞学关系。
Planta. 1974 Dec;119(4):279-300. doi: 10.1007/BF00388331.
2
Translocation and incorporation of (14)C into the petiole from different regions within developing cottonwood leaves.在发育中的棉白杨叶片的不同区域,(14)C 的转移和掺入叶柄。
Planta. 1976 Jan;128(3):185-93. doi: 10.1007/BF00393227.
3
Leaf structure in relation to solute transport and phloem loading in Zea mays L.玉米叶片结构与溶质运输及韧皮部装载的关系
Planta. 1978 Jan;138(3):279-94. doi: 10.1007/BF00386823.
4
Translocation pathways in the petioles and stem between source and sink leaves of Populus deltoides Bartr. ex Marsh.在枫杨叶柄和茎干中的转运途径,源叶和汇叶之间。
Planta. 1982 Dec;156(4):345-58. doi: 10.1007/BF00397473.
5
Studies on the leaf of Amaranthus retroflexus (Amaranthaceae): ultrastructure, plasmodesmatal frequency, and solute concentration in relation to phloem loading.反枝苋叶片的研究:超微结构、胞间连丝频率与韧皮部装载相关的溶质浓度。
Planta. 1982 Sep;155(5):377-87. doi: 10.1007/BF00394465.
6
Phloem unloading in aerial roots of Monstera deliciosa.气生根中榕果藤的韧皮部卸出。
Planta. 1983 May;157(6):540-7. doi: 10.1007/BF00396886.
7
Microautoradiographic studies of phloem loading and transport in the leaf of Zea mays L.玉米叶片韧皮部装载和运输的显微放射自显影研究。
Planta. 1983 Nov;159(3):193-206. doi: 10.1007/BF00397525.
8
Phloem unloading following reactivation in predarkened mature maize leaves.重新激活暗期成熟玉米叶片后的韧皮部卸出。
Planta. 1984 May;161(2):113-9. doi: 10.1007/BF00395470.
9
Structural and Physiological Changes in Sugar Beet Leaves during Sink to Source Conversion.甜菜叶片从库向源转变过程中的结构和生理变化
Plant Physiol. 1974 Dec;54(6):877-85. doi: 10.1104/pp.54.6.877.
10
Translocation of Radioactive Carbon after the Application of C-Alanine and CO(2) to Sunflower Leaves.放射性碳在向向日葵叶片施加 C-丙氨酸和 CO₂ 后的转移。
Plant Physiol. 1974 Jan;53(1):21-7. doi: 10.1104/pp.53.1.21.