Literature DB >> 34530166

Decreasing nitrogen assimilation under drought stress by suppressing DST-mediated activation of Nitrate Reductase 1.2 in rice.

Mei-Ling Han1, Qiao-Yan Lv2, Jing Zhang2, Tao Wang2, Chao-Xing Zhang3, Ru-Jiao Tan4, Ya-Ling Wang1, Li-Yuan Zhong2, Yi-Qun Gao1, Zhen-Fei Chao2, Qian-Qian Li2, Gen-Yun Chen1, Zai Shi1, Hong-Xuan Lin1, Dai-Yin Chao5.   

Abstract

Nitrogen is an essential nutrient for plant growth and development, and plays vital roles in crop yield. Assimilation of nitrogen is thus fine-tuned in response to heterogeneous environments. However, the regulatory mechanism underlying this essential process remains largely unknown. Here, we report that a zinc-finger transcription factor, drought and salt tolerance (DST), controls nitrate assimilation in rice by regulating the expression of OsNR1.2. We found that loss of function of DST results in a significant decrease of nitrogen use efficiency (NUE) in the presence of nitrate. Further study revealed that DST is required for full nitrate reductase activity in rice and directly regulates the expression of OsNR1.2, a gene showing sequence similarity to nitrate reductase. Reverse genetics and biochemistry studies revealed that OsNR1.2 encodes an NADH-dependent nitrate reductase that is required for high NUE of rice. Interestingly, the DST-OsNR1.2 regulatory module is involved in the suppression of nitrate assimilation under drought stress, which contributes to drought tolerance. Considering the negative role of DST in stomata closure, as revealed previously, the positive role of DST in nitrogen assimilation suggests a mechanism coupling nitrogen metabolism and stomata movement. The discovery of this coupling mechanism will aid the engineering of drought-tolerant crops with high NUE in the future.
Copyright © 2021 The Author. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  OsNR1.2; drought tolerance; nitrogen use efficiency; rice

Mesh:

Substances:

Year:  2021        PMID: 34530166     DOI: 10.1016/j.molp.2021.09.005

Source DB:  PubMed          Journal:  Mol Plant        ISSN: 1674-2052            Impact factor:   13.164


  8 in total

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Authors:  Nkulu Rolly Kabange; So-Myeong Lee; Dongjin Shin; Ji-Yoon Lee; Youngho Kwon; Ju-Won Kang; Jin-Kyung Cha; Hyeonjin Park; Simon Alibu; Jong-Hee Lee
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  8 in total

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