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大豆籽粒形成期14C同化物的分配和源库调节效应的研究
引用本文:傅金民 张庚灵. 大豆籽粒形成期14C同化物的分配和源库调节效应的研究[J]. 作物学报, 1999, 25(2): 169-173
作者姓名:傅金民 张庚灵
作者单位:东农业大学农学系,山东泰安,271018
摘    要:在籽粒形成期,大豆不同叶位14C-同化物的运转和分配具有明显的“局部供应性”,供应中心是本叶腋内荚粒。然而,植株不同节位叶片的14C-同化物在各器官的分配又具一定麦异,倒13叶分配到茎和英粒的14C-同化物高于倒1、4、7叶。叶片14C-同化物向其他各节位不同器官分配的量较少,并存在明显的“同侧运输性”,主要分配到同侧

关 键 词:大豆  同化物  源库调节
收稿时间:1998-02-05
修稿时间:1998-09-13

Partitioning of ~(14)C-Assimilates and Effects of Source-Sink Manipulation at Seed-Filling in Soybean
Fu Jinmin Zhang Gengling Su Fang Wang Zhenlin Dong Yan Shi Chunyu. Partitioning of ~(14)C-Assimilates and Effects of Source-Sink Manipulation at Seed-Filling in Soybean[J]. Acta Agronomica Sinica, 1999, 25(2): 169-173
Authors:Fu Jinmin Zhang Gengling Su Fang Wang Zhenlin Dong Yan Shi Chunyu
Affiliation:Shandong Agricultural University, Tai'an, 271018
Abstract:At pod-filling of soybean, translocation and partitioning of 14C-assimilates in leaves at different positions showed apparent local supplying. Leaf 14C-assimilates were mainly translocated into the seed in its axil. However, different translocation and partitioning of 14C-assimilates existed among the leaves at different positions. The 13th leaf (from upper to lower) partitioned more 14C-assimilates in its stem and seed than the 1st, 4th and 7th leaf did. Leaf partitioned little 14C-assimilates in organs at other nodal point and mainly in same lateral seed near it. However, 14C-assimilates were translocated more into lower organs than into higher organs. Markedly different range and amount of 14C-assimilates translocated into other organs occurred among leaves at different nodal points. The lower leaves had maximum range and amount of 14C-assimilates translocated into other nodal points, the middle leaves second, upper leaves third and top leaves least. Reducing partial leaves and pods decreased the partition of 14C-assimilates in retaining leaves and leaves without pods in seed of its axil and increased that in organs of same nodal point near this leaf. Also, 14C-assimilates partitioned in lower organs increased more notably than that in higher organs.
Keywords:Soybean  Assimilates  Source-sink manipulation
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