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MATE 型蛋白负责异黄酮在大豆种子中的运输和积累。

MATE-Type Proteins Are Responsible for Isoflavone Transportation and Accumulation in Soybean Seeds.

机构信息

Centre for Soybean Research of the State Key Laboratory of Agrobiotechnology and School of Life Sciences, The Chinese University of Hong Kong, Hong Kong, China.

Institute of Advanced Agricultural Sciences, Peking University, Beijing 100871, China.

出版信息

Int J Mol Sci. 2021 Nov 6;22(21):12017. doi: 10.3390/ijms222112017.

Abstract

Soybeans are nutritionally important as human food and animal feed. Apart from the macronutrients such as proteins and oils, soybeans are also high in health-beneficial secondary metabolites and are uniquely enriched in isoflavones among food crops. Isoflavone biosynthesis has been relatively well characterized, but the mechanism of their transportation in soybean cells is largely unknown. Using the yeast model, we showed that GmMATE1 and GmMATE2 promoted the accumulation of isoflavones, mainly in the aglycone forms. Using the tobacco BrightYellow-2 (BY-2) cell model, GmMATE1 and GmMATE2 were found to be localized in the vacuolar membrane. Such subcellular localization supports the notion that GmMATE1 and GmMATE2 function by compartmentalizing isoflavones in the vacuole. Expression analyses showed that GmMATE1 was mainly expressed in the developing soybean pod. Soybean mutants defective in GmMATE1 had significantly reduced total seed isoflavone contents, whereas the overexpression of GmMATE1 in transgenic soybean promoted the accumulation of seed isoflavones. Our results showed that GmMATE1, and possibly also GmMATE2, are isoflavone transporters that promote the accumulation of isoflavones in soybean seeds.

摘要

大豆作为人类食物和动物饲料具有重要的营养价值。除了蛋白质和油脂等大量营养素外,大豆还富含对健康有益的次生代谢物,在粮食作物中异黄酮含量尤为丰富。异黄酮的生物合成已经得到了相对较好的描述,但它们在大豆细胞中的运输机制在很大程度上尚不清楚。我们利用酵母模型表明,GmMATE1 和 GmMATE2 促进了异黄酮的积累,主要以糖苷形式存在。利用烟草 BrightYellow-2(BY-2)细胞模型,发现 GmMATE1 和 GmMATE2 定位于液泡膜上。这种亚细胞定位支持了 GmMATE1 和 GmMATE2 通过将异黄酮分隔在液泡中来发挥作用的观点。表达分析表明,GmMATE1 主要在发育中的大豆荚中表达。GmMATE1 缺陷型大豆突变体的总种子异黄酮含量显著降低,而 GmMATE1 在转基因大豆中的过表达促进了种子异黄酮的积累。我们的结果表明,GmMATE1(可能还有 GmMATE2)是异黄酮转运蛋白,可促进大豆种子中异黄酮的积累。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8c4/8585119/a3bda2217fe3/ijms-22-12017-g001.jpg

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