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GmPAP4 的过表达增强了磷缺乏条件下大豆的共生固氮和种子产量。

Overexpression of GmPAP4 Enhances Symbiotic Nitrogen Fixation and Seed Yield in Soybean under Phosphorus-Deficient Condition.

机构信息

State Key Laboratory of North China Crop Improvement and Regulation, Hebei Agricultural University, Baoding 071000, China.

North China Key Laboratory for Crop Germplasm Resources of Education Ministry, College of Agronomy, Hebei Agricultural University, Baoding 071000, China.

出版信息

Int J Mol Sci. 2024 Mar 25;25(7):3649. doi: 10.3390/ijms25073649.

Abstract

Legume crops establish symbiosis with nitrogen-fixing rhizobia for biological nitrogen fixation (BNF), a process that provides a prominent natural nitrogen source in agroecosystems; and efficient nodulation and nitrogen fixation processes require a large amount of phosphorus (P). Here, a role of GmPAP4, a nodule-localized purple acid phosphatase, in BNF and seed yield was functionally characterized in whole transgenic soybean () plants under a P-limited condition. was specifically expressed in the infection zones of soybean nodules and its expression was greatly induced in low P stress. Altered expression of significantly affected soybean nodulation, BNF, and yield under the P-deficient condition. Nodule number, nodule fresh weight, nodule nitrogenase, APase activities, and nodule total P content were significantly increased in overexpression (OE) lines. Structural characteristics revealed by toluidine blue staining showed that overexpression of resulted in a larger infection area than wild-type (WT) control. Moreover, the plant biomass and N and P content of shoot and root in OE lines were also greatly improved, resulting in increased soybean yield in the P-deficient condition. Taken together, our results demonstrated that GmPAP4, a purple acid phosphatase, increased P utilization efficiency in nodules under a P-deficient condition and, subsequently, enhanced symbiotic BNF and seed yield of soybean.

摘要

豆科作物与固氮根瘤菌共生进行生物固氮(BNF),这是农业生态系统中一个重要的自然氮源;而高效的结瘤和固氮过程需要大量的磷(P)。在这里,我们对根瘤中定位的紫色酸性磷酸酶 GmPAP4 在 P 限制条件下的大豆全转基因植株中的 BNF 和种子产量功能进行了研究。 在低 P 胁迫下,其在大豆根瘤感染区特异性表达,并被强烈诱导。 表达的改变显著影响 P 缺乏条件下大豆的结瘤、BNF 和产量。在过表达(OE)系中,根瘤数量、根瘤鲜重、根瘤固氮酶、APase 活性和根瘤总 P 含量显著增加。甲苯胺蓝染色显示的结构特征表明,与野生型(WT)对照相比,过表达 导致感染面积增大。此外,OE 系的地上部和地下部的植物生物量以及 N 和 P 含量也得到了极大的提高,从而在 P 缺乏条件下提高了大豆的产量。总之,我们的结果表明,紫色酸性磷酸酶 GmPAP4 在 P 缺乏条件下提高了根瘤中 P 的利用效率,从而增强了大豆的共生 BNF 和种子产量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff09/11011270/d54c5300a92e/ijms-25-03649-g001.jpg

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