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喷施多胺可抑制大豆(Glycine max)根瘤的形成。

Shoot-applied polyamines suppress nodule formation in soybean (Glycine max).

作者信息

Terakado Junko, Yoneyama Tadakatsu, Fujihara Shinsuke

机构信息

Plant Nutrition Diagnosis Laboratory, National Agricultural Research Center, Kannondai 3-1-1, Tsukuba, Ibaraki 305-8666, Japan.

出版信息

J Plant Physiol. 2006 Mar;163(5):497-505. doi: 10.1016/j.jplph.2005.05.007. Epub 2005 Aug 10.

Abstract

In legumes, the number of root nodules is controlled by a mechanism called autoregulation. Recently, we found that the foliar brassinosteroid (BR), a plant growth-regulating hormone, systemically regulates the nodule number in soybean plants. In the present study we report that such down-regulation of root nodule formation by a BR may occur through a change of the polyamine contents, with the experimental evidence as follows. The foliar contents of both spermidine (Spd) and spermine (Spm) in the super-nodulating soybean mutant, En6500, were always lower than those in its parent line, Enrei. This lower Spd and Spm content accompanied a striking accumulation of putrescine (Put) in the former plant. This finding indicates that Spd and Spm biosynthesis from their precursor Put is repressed in En6500. The foliar treatments with Spd or Spm of En6500 led to a reduction of both nodule number and root growth. On the other hand, foliar treatment with MDL74038, a specific inhibitor of Spd biosynthesis, apparently increased the root nodule number in Enrei. Foliar application of brassinolide (BL) of En6500 increased the leaf Spd level and reduced the nodule number. These results suggested that BL-induced Spd synthesis in shoots might suppress the root nodule formation.

摘要

在豆科植物中,根瘤的数量受一种称为自动调节的机制控制。最近,我们发现叶中的油菜素内酯(BR),一种植物生长调节激素,可系统地调节大豆植株的根瘤数量。在本研究中,我们报告BR对根瘤形成的这种下调可能通过多胺含量的变化而发生,实验证据如下。超结瘤大豆突变体En6500中叶中的亚精胺(Spd)和精胺(Spm)含量始终低于其亲本Enrei。在前者植株中,较低的Spd和Spm含量伴随着腐胺(Put)的显著积累。这一发现表明,在En6500中,从其前体Put合成Spd和Spm的过程受到抑制。用Spd或Spm对En6500进行叶面处理导致根瘤数量和根系生长减少。另一方面,用Spd生物合成的特异性抑制剂MDL74038进行叶面处理,明显增加了Enrei中的根瘤数量。对En6500叶面施用油菜素内酯(BL)增加了叶片Spd水平并减少了根瘤数量。这些结果表明,芽中BL诱导的Spd合成可能抑制根瘤形成。

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