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大豆根中大豆皂苷的分泌动态及其对细菌组成的影响

Secretion dynamics of soyasaponins in soybean roots and effects to modify the bacterial composition.

作者信息

Fujimatsu Teruhisa, Endo Keiji, Yazaki Kazufumi, Sugiyama Akifumi

机构信息

Biological Science Research Kao Corporation Tochigi Japan.

Laboratory of Plant Gene Expression Research Institute for Sustainable Humanosphere Kyoto University Uji Japan.

出版信息

Plant Direct. 2020 Sep 6;4(9):e00259. doi: 10.1002/pld3.259. eCollection 2020 Sep.

Abstract

Soyasaponins are triterpenoid saponins widely found in legume plants. These compounds have drawn considerable attention because they have various activities beneficial for human health, and their biosynthesis has been actively studied. In our previous study, we found that legume plants including soybean secrete soyasaponins from the roots in hydroponic culture throughout the growth period, but the physiological roles of soyasaponins in the rhizosphere and their fate in soil after exudation have remained unknown. This study demonstrates that soyasaponins are secreted from the roots of field-grown soybean, and soyasaponin Bb is the major soyasaponin detected in the rhizosphere. In vitro analysis of the distribution coefficient suggested that soyasaponin Bb can diffuse over longer distances in the soil in comparison with daidzein, which is a typical isoflavone secreted from soybean roots. The degradation rate of soyasaponin Bb in soil was slightly faster than that of daidzein, whereas no soyasaponin Bb degradation was observed in autoclaved soil, suggesting that microbes utilize soyasaponins in the rhizosphere. Bacterial community composition was clearly influenced by soyasaponin Bb, and potential plant growth-promoting rhizobacteria such as were significantly enriched in both soyasaponin Bb-treated soil and the soybean rhizosphere. These results strongly suggest that soyasaponin Bb plays an important role in the enrichment of certain microbes in the soybean rhizosphere.

摘要

大豆皂苷是广泛存在于豆科植物中的三萜皂苷。这些化合物因其对人体健康具有多种有益活性而备受关注,其生物合成也一直是研究热点。在我们之前的研究中,我们发现包括大豆在内的豆科植物在水培过程中整个生长周期都会从根部分泌大豆皂苷,但大豆皂苷在根际的生理作用及其渗出后在土壤中的归宿仍不清楚。本研究表明,田间种植的大豆根部会分泌大豆皂苷,大豆皂苷Bb是在根际检测到的主要大豆皂苷。分布系数的体外分析表明,与大豆根部分泌的典型异黄酮大豆苷元相比,大豆皂苷Bb在土壤中能扩散更远的距离。大豆皂苷Bb在土壤中的降解速率略快于大豆苷元,而在灭菌土壤中未观察到大豆皂苷Bb的降解,这表明微生物利用了根际中的大豆皂苷。细菌群落组成明显受到大豆皂苷Bb的影响,在大豆皂苷Bb处理的土壤和大豆根际中,潜在的促生根际细菌如 显著富集。这些结果有力地表明,大豆皂苷Bb在大豆根际某些微生物的富集过程中起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ec7/7503093/468152a5d579/PLD3-4-e00259-g001.jpg

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