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尿素衍生物MTU通过促进围绕光系统I的循环电子传递来提高小麦的胁迫耐受性和产量。

Urea derivative MTU improves stress tolerance and yield in wheat by promoting cyclic electron flow around PSI.

作者信息

Nisler Jaroslav, Kučerová Zuzana, Koprna Radoslav, Sobotka Roman, Slivková Jana, Rossall Stephen, Špundová Martina, Husičková Alexandra, Pilný Jan, Tarkowská Danuše, Novák Ondřej, Škrabišová Mária, Strnad Miroslav

机构信息

Isotope Laboratory, Institute of Experimental Botany, Czech Academy of Sciences, Prague, Czechia.

Department of Biophysics, Faculty of Science, Palacký University, Olomouc, Czechia.

出版信息

Front Plant Sci. 2023 Mar 7;14:1131326. doi: 10.3389/fpls.2023.1131326. eCollection 2023.

Abstract

Increasing crop productivity under optimal conditions and mitigating yield losses under stressful conditions is a major challenge in contemporary agriculture. We have recently identified an effective anti-senescence compound (MTU, [1-(2-methoxyethyl)-3-(1,2,3-thiadiazol-5yl)urea]) in studies. Here, we show that MTU delayed both age- and stress-induced senescence of wheat plants ( L.) by enhancing the abundance of PSI supercomplex with LHCa antennae (PSI-LHCa) and promoting the cyclic electron flow (CEF) around PSI. We suppose that this rarely-observed phenomenon blocks the disintegration of photosynthetic apparatus and maintains its activity as was reflected by the faster growth rate of wheat in optimal conditions and under drought and heat stress. Our multiyear field trial analysis further shows that the treatment with 0.4 g ha of MTU enhanced average grain yields of field-grown wheat and barley ( L.) by 5-8%. Interestingly, the analysis of gene expression and hormone profiling confirms that MTU acts without the involvement of cytokinins or other phytohormones. Moreover, MTU appears to be the only chemical reported to date to affect PSI stability and activity. Our results indicate a central role of PSI and CEF in the onset of senescence with implications in yield management at least for cereal species.

摘要

在最佳条件下提高作物产量并在胁迫条件下减轻产量损失是当代农业面临的一项重大挑战。我们最近在研究中发现了一种有效的抗衰老化合物(MTU,[1-(2-甲氧基乙基)-3-(1,2,3-噻二唑-5-基)脲])。在此,我们表明MTU通过提高带有LHCa天线的PSI超复合体(PSI-LHCa)的丰度并促进围绕PSI的循环电子流(CEF),延缓了小麦植株(L.)的年龄和胁迫诱导的衰老。我们推测这种罕见的现象阻止了光合装置的解体并维持了其活性,这在最佳条件下以及干旱和热胁迫下小麦更快的生长速度中得到了体现。我们多年的田间试验分析进一步表明,用0.4 g/ha的MTU处理可使田间种植的小麦和大麦(L.)的平均籽粒产量提高5-8%。有趣的是,基因表达分析和激素谱分析证实MTU的作用不涉及细胞分裂素或其他植物激素。此外,MTU似乎是迄今为止报道的唯一一种影响PSI稳定性和活性的化学物质。我们的结果表明PSI和CEF在衰老起始中起核心作用,至少对谷类作物的产量管理有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e5c4/10028069/559ab1e0afec/fpls-14-1131326-g001.jpg

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