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对物理流洪水的响应。

Response of to Flooding with Physical Flow.

作者信息

Kaji Momoko, Katano Kazuma, Anee Taufika Islam, Nitta Hiroshi, Yamaji Ryotaro, Shimizu Rio, Shigaki Shunsuke, Suzuki Hiroyuki, Suzuki Nobuhiro

机构信息

National Institute of Technology, Ishikawa College, Tsubata 929-0392, Ishikawa, Japan.

Division of Environmental Design, Graduate School of Science and Engineering, Kanazawa University, Kanazawa 920-1192, Ishikawa, Japan.

出版信息

Plants (Basel). 2024 Dec 16;13(24):3508. doi: 10.3390/plants13243508.

Abstract

Flooding causes severe yield losses worldwide, making it urgent to enhance crop tolerance to this stress. Since natural flooding often involves physical flow, we hypothesized that the effects of submergence on plants could change when combined with physical flow. In this study, we analyzed the growth and transcriptome of exposed to submergence or flooding with physical flow. Plants exposed to flooding with physical flow had smaller rosette diameters, especially at faster flow rates. Transcriptome analysis revealed that "defense response" transcripts were highly up-regulated in response to flooding with physical flow. In addition, up-regulation of transcripts encoding ROS-producing enzymes, SA synthesis, JA synthesis, and ethylene signaling was more pronounced under flooding with physical flow when compared to submergence. Although HO accumulation changed in response to submergence or flooding with physical flow, it did not lead to lipid peroxidation, suggesting a role for ROS as signaling molecules under these conditions. Multiple regression analysis indicated possible links between rosette diameter under flooding with physical flow and the expression of s and SA synthesis transcripts. These findings suggest that pathogen defense responses, regulated by SA and ROS signaling, play crucial roles in plant responses to flooding with physical flow.

摘要

洪水在全球范围内导致严重的产量损失,因此迫切需要提高作物对这种胁迫的耐受性。由于自然洪水通常涉及水流,我们推测当与水流结合时,淹水对植物的影响可能会发生变化。在本研究中,我们分析了暴露于淹水或伴有水流的洪水条件下的植物的生长和转录组。暴露于伴有水流的洪水条件下的植物莲座直径较小,尤其是在流速较快时。转录组分析表明,“防御反应”转录本在伴有水流的洪水条件下高度上调。此外,与淹水相比,编码产生活性氧(ROS)的酶、水杨酸(SA)合成、茉莉酸(JA)合成和乙烯信号转导的转录本在伴有水流的洪水条件下上调更为明显。尽管过氧化氢(HO)积累在淹水或伴有水流的洪水条件下会发生变化,但并未导致脂质过氧化,这表明在这些条件下ROS作为信号分子发挥作用。多元回归分析表明,伴有水流的洪水条件下的莲座直径与s和SA合成转录本的表达之间可能存在联系。这些发现表明,由SA和ROS信号转导调控的病原体防御反应在植物对伴有水流的洪水的反应中起关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3578/11678080/d61c7209b25e/plants-13-03508-g001.jpg

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