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硝酸盐的施加或磷缺乏通过根瘤转录组的相似变化来诱导蒺藜苜蓿氮固定的下降。

Nitrate application or P deficiency induce a decline in Medicago truncatula N-fixation by similar changes in the nodule transcriptome.

机构信息

Department of Crop Science, Section for Plant Nutrition and Crop Physiology, Faculty of Agriculture, University of Goettingen, Carl-Sprengel-Weg 1, 37075 Goettingen, Germany.

Departmento de Producción Agrícola, Facultad de Ciencias Agrarias, Universidad de Talca, Casilla 747, Talca, Chile.

出版信息

Sci Rep. 2017 Apr 10;7:46264. doi: 10.1038/srep46264.

Abstract

Nitrogen fixation of Medicago truncatula is regulated by the nitrogen status of leaves through inducing a repeatedly occurring 24-h nodule activity rhythm that reduces per day nitrogen fixation. The hypotheses of the present study were that (1) long-term moderate whole-plant P deficiency in Medicago truncatula induces an according daily rhythm in nitrogenase activity comparable to that induced by nitrate application and (2), the changes in the nodule transcriptome that go along with a strong nitrogenase activity decline during the afternoon would be similar under P deficiency or after nitrate supply. The nodules of plants in a low P treatment developed a rhythmic pattern of activity that resembled the pattern following nitrate application. A comprehensive, RNAseq-based comparative transcriptome profiling of nodules during a repeated part of the rhythm revealed similarities between P deficiency versus nitrate supply. Under both treatments, the formation of nitrogenase was targeted by a reduction in the expression of genes for nodule-specific cysteine-rich peptides (NCR), and possibly also by a disturbance of the inner cell iron allocation. A strong reduction in the expression of leghemoglobin is likely to have restricted the supply of oxygen for respiration.

摘要

蒺藜苜蓿的氮固定受叶片氮素状况的调节,通过诱导反复出现的 24 小时根瘤活性节律,减少每天的氮固定。本研究的假设是:(1)蒺藜苜蓿的长期中度全株磷缺乏会诱导与硝酸盐处理相似的氮酶活性日节律;(2)在下午氮酶活性急剧下降时,与氮酶活性下降相关的根瘤转录组的变化在磷缺乏或硝酸盐供应后会相似。低磷处理的根瘤会形成一种与硝酸盐处理相似的活性节律。对节律的重复部分进行基于 RNAseq 的综合比较转录组分析表明,磷缺乏与硝酸盐供应之间存在相似性。在这两种处理下,氮酶的形成都受到根瘤特异性半胱氨酸丰富肽(NCR)基因表达减少的靶向调控,可能还受到细胞内铁分配的干扰。类球蛋白的大量减少可能限制了呼吸所需的氧气供应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c56/5385875/2056dbbb199e/srep46264-f1.jpg

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