Scollr summary
What this paper is about
Findings elucidate the evolutionary processes and regulatory mechanisms of AMTs, laying a foundation for enhancing nitrogen utilization efficiency in B. napus and other crops.
Full abstract
Read the full abstract
Brassica napus L. is one of the most important oil crops in the world, and improving its nitrogen efficiency is a key strategy for enhancing low-nitrogen tolerance and increasing yield. Ammonium transporters (AMTs) play critical roles in NH4+ transport in plants and significantly influence nitrogen use efficiency and yield. To identify promising candidate AMT genes for rapeseed improvement, this study systematically analyzed the evolution and expression of AMT genes across the Archaeplastida plants, especially in Brassica species of the U’s triangle. A total of 368 AMT genes were identified from 35 Archaeplastida species, including 180 AMT1 and 188 AMT2 homologs. Gene duplication analysis revealed that small-scale duplication (SSD) was the primary mechanism driving gene expansion from aquatic algae to angiosperms in both AMT1 and AMT2 families, which were under the influence of purifying selection. In the U’s triangle, allopolyploidization, particularly whole-genome duplication (WGD), was the primary mechanism for AMT expansion, accompanied by gene loss. Expression profiling indicated that most BnAMTs respond to hormonal and low-nitrogen signals and exhibit tissue-specific expression patterns. Notably, four candidate genes (BnAMT1;5, BnAMT1;12, BnAMT2;2, BnAMT2;4) exhibited high expression levels and responsiveness to low-nitrogen stress. Haplotype analysis further linked specific polymorphisms in BnAMT1;5 and BnAMT2;2 to variations in plant height and yield. Collectively, these findings elucidate the evolutionary processes and regulatory mechanisms of AMTs, laying a foundation for enhancing nitrogen utilization efficiency in B. napus and other crops.
Direct answer
What can I do from this paper page?
Use this page to scan "Origin and Evolution of Ammonium Transporters (AMTs) in Plants and Systematic Expression Studies in Brassica napus" quickly: start with the summary and abstract, then check the authors, source, topics, and related papers. From here, open Scollr to follow Plant nutrient uptake and metabolism research, save the paper, or map adjacent work.
Research areas
Follow related topics
Citation
BibTeX
@article{Chen2026Origin,
title = {Origin and Evolution of Ammonium Transporters (AMTs) in Plants and Systematic Expression Studies in Brassica napus},
author = {Mingming Chen and Li Zhang and Yixuan Zhang and Xingzhi Qian and Qingyang Yang and Zhuo Chen and Huiyan Zhao and Nengwen Yin and Ti Zhang and Cunmin Qu and Jing Wen and Hai Du and Daixiang Xu},
journal = {Plants},
year = {2026},
doi = {10.3390/plants15152334},
url = {https://doi.org/10.3390/plants15152334}
}
FAQ
Using this paper in a discovery workflow
How do I find related work for this paper?
Use the related papers and topic links on this page as starting points. In Scollr, you can also open the paper and build a literature map around its references, citing papers, and related work.
How can I keep up with new Plant nutrient uptake and metabolism research papers?
Follow Plant nutrient uptake and metabolism research in Scollr. New papers from the topic flow into a personalized feed, and you can save useful studies to revisit later.
Can I cite this paper from this page?
This page includes a static BibTeX block for Origin and Evolution of Ammonium Transporters (AMTs) in Plants and Systematic Expression Studies in Brassica napus. Always verify the DOI, source, and publication details against the publisher record before submitting a manuscript.
Follow this research in Scollr
Follow the topics and authors behind this paper, save useful studies, and build a literature map when you are ready to go deeper.
Get the app