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水稻OsDof12通过激活苯丙烷途径增强对干旱胁迫的耐受性。

Rice OsDof12 enhances tolerance to drought stress by activating the phenylpropanoid pathway.

作者信息

Shim Yejin, Kim Boyeong, Choi Yumin, Cho Sung-Hwan, Kim Yeonjoon, Kim Suk-Hwan, Yim Yehyun, Kang Kiyoon, Paek Nam-Chon

机构信息

Department of Agriculture, Forestry and Bioresources, Research Institute of Agriculture and Life Sciences, Seoul National University, Seoul, Republic of Korea.

Plant Genomics and Breeding Institute, Seoul National University, Seoul, Republic of Korea.

出版信息

Plant J. 2025 Jan;121(1):e17175. doi: 10.1111/tpj.17175. Epub 2024 Nov 30.

Abstract

Drought is a major abiotic stress that severely affects cereal production worldwide. Although several genes have been identified that enhance the ability of rice to withstand drought stress, further research is needed to fully understand the molecular mechanisms underlying the response to drought stress. Our study showed that overexpression of rice DNA binding with one finger 12 (OsDof12) enhances tolerance to drought stress. Rice plants overexpressing OsDof12 (OsDof12-OE) displayed significantly higher tolerance to drought stress than the parental japonica rice "Dongjin". Transcriptome analysis revealed that many genes involved in phenylpropanoid biosynthesis were upregulated in OsDof12-OE plants, including phenylalanine ammonia-lyase 4 (OsPAL4), OsPAL6, cinnamyl alcohol dehydrogenase 6 (CAD6), and 4-coumarate-coA ligase like 6 (4CLL6). Accordingly, this transcriptional alteration led to the substantial accumulation of phenolic compounds, such as sinapic acids, in the leaves of OsDof12-OE plants, effectively lowering the levels of reactive oxygen species. Notably, OsDof12 bound to the AAAG-rich core sequence of the OsPAL4 promoter and promoted transcription. In addition, GIGANTEA (OsGI) interacts with OsDof12 in the nucleus and attenuates the transactivation activity of OsDof12 on OsPAL4. Our findings reveal a novel role for OsDof12 in promoting phenylpropanoid-mediated tolerance to drought stress.

摘要

干旱是一种主要的非生物胁迫,严重影响着全球的谷物生产。尽管已经鉴定出了几个增强水稻耐旱能力的基因,但仍需要进一步研究以充分了解干旱胁迫响应背后的分子机制。我们的研究表明,水稻单指DNA结合蛋白12(OsDof12)的过表达增强了对干旱胁迫的耐受性。过表达OsDof12的水稻植株(OsDof12-OE)对干旱胁迫的耐受性明显高于亲本粳稻“东津”。转录组分析显示,在OsDof12-OE植株中,许多参与苯丙烷生物合成的基因上调,包括苯丙氨酸解氨酶4(OsPAL4)、OsPAL6、肉桂醇脱氢酶6(CAD6)和4-香豆酸辅酶A连接酶样6(4CLL6)。因此,这种转录变化导致OsDof12-OE植株叶片中酚类化合物(如芥子酸)大量积累,有效降低了活性氧水平。值得注意的是,OsDof12与OsPAL4启动子富含AAAG的核心序列结合并促进转录。此外,巨大生物钟蛋白(OsGI)在细胞核中与OsDof12相互作用,并减弱OsDof12对OsPAL4的反式激活活性。我们的研究结果揭示了OsDof12在促进苯丙烷介导的耐旱胁迫方面的新作用。

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