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大豆隐秘的异戊二烯排放。

Cryptic isoprene emission of soybeans.

作者信息

Mostofa Mohammad Golam, Sahu Abira, Xu Yuan, Basrai Insiya, Doron Lior, Lefrancois Violet, Sharkey Thomas D

机构信息

Department of Energy Plant Research Laboratory, Michigan State University, East Lansing, MI 48824.

Department of Biochemistry and Molecular Biology, Michigan State University, East Lansing, MI 48824.

出版信息

Proc Natl Acad Sci U S A. 2025 Jun 17;122(24):e2502360122. doi: 10.1073/pnas.2502360122. Epub 2025 Jun 12.

Abstract

Isoprene is the most abundant nonmethane biogenic hydrocarbon emitted by some plants, mostly trees. It plays critical roles in atmospheric chemistry by contributing to ozone and aerosol formation. Isoprene also benefits plants, particularly under stress, through its signaling roles. Legume crops like soybean were thought to have evolutionarily lost isoprene synthase (ISPS) and are typically considered nonemitters. Here, we report that damage to soybean leaves by wounding or burning triggered a burst of isoprene emission from the undamaged part of the leaves. In silico analysis identified intact genes in the soybean genome, with features similar to known ISPSs. Protein made from these gene sequences catalyzed isoprene production in the presence of dimethylallyl diphosphate. Isoprene emission in soybeans was linked to reduced photosynthesis rates and stomatal conductance. Metabolomic analysis showed that leaf damage caused a surge in glyceraldehyde 3-phosphate and pyruvate levels, leading to an increase of most of the methylerythritol 4-phosphate pathway metabolites.

摘要

异戊二烯是一些植物(主要是树木)排放的最丰富的非甲烷生物源碳氢化合物。它通过促进臭氧和气溶胶的形成,在大气化学中发挥着关键作用。异戊二烯还通过其信号传导作用使植物受益,特别是在胁迫条件下。像大豆这样的豆科作物被认为在进化过程中失去了异戊二烯合酶(ISPS),通常被视为不排放异戊二烯的植物。在此,我们报告,通过切割或灼烧对大豆叶片造成损伤,会引发叶片未受损部分的异戊二烯排放激增。计算机分析在大豆基因组中鉴定出完整的基因,其特征与已知的异戊二烯合酶相似。由这些基因序列产生的蛋白质在存在二甲基烯丙基二磷酸的情况下催化异戊二烯的产生。大豆中的异戊二烯排放与光合作用速率和气孔导度的降低有关。代谢组学分析表明,叶片损伤导致3-磷酸甘油醛和丙酮酸水平激增,导致甲基赤藓糖醇4-磷酸途径的大多数代谢物增加。

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