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新型独脚金内酯类似物调节. 的光合作用和生物量积累

Novel Strigolactone Mimics That Modulate Photosynthesis and Biomass Accumulation in .

机构信息

Bioproducts Team, Bioresources Department, National Institute for Research & Development in Chemistry and Petrochemistry-ICECHIM, Splaiul Independenței Nr. 202, Sector 6, 060021 Bucharest, Romania.

Faculty of Biotechnologies, University of Agronomic Sciences and Veterinary Medicine of Bucharest, Bd. Mărăști Nr. 59, Sector 1, 011464 Bucharest, Romania.

出版信息

Molecules. 2023 Oct 12;28(20):7059. doi: 10.3390/molecules28207059.

Abstract

In terrestrial plants, strigolactones act as multifunctional endo- and exo-signals. On microalgae, the strigolactones determine akin effects: induce symbiosis formation with fungi and bacteria and enhance photosynthesis efficiency and accumulation of biomass. This work aims to synthesize and identify strigolactone mimics that promote photosynthesis and biomass accumulation in microalgae with biotechnological potential. Novel strigolactone mimics easily accessible in significant amounts were prepared and fully characterized. The first two novel compounds contain 3,5-disubstituted aryloxy moieties connected to the bioactive furan-2-one ring. In the second group of compounds, a benzothiazole ring is connected directly through the cyclic nitrogen atom to the bioactive furan-2-one ring. The novel strigolactone mimics were tested on NIVA-CHL 176. All tested strigolactones increased the accumulation of chlorophyll in microalgae biomass. The SL-F3 mimic, 3-(4-methyl-5-oxo-2,5-dihydrofuran-2-yl)-3-benzothiazol-2-one (), proved the most efficient. This compound, applied at a concentration of 10 M, determined a significant biomass accumulation, higher by more than 15% compared to untreated control, and improved the quantum yield efficiency of photosystem II. SL-F2 mimic, 5-(3,5-dibromophenoxy)-3-methyl-5-furan-2-one (), applied at a concentration of 10 M, improved protein production and slightly stimulated biomass accumulation. Potential utilization of the new strigolactone mimics as microalgae biostimulants is discussed.

摘要

在陆生植物中,独脚金内酯作为多功能内源性和外源性信号分子发挥作用。在微藻中,独脚金内酯具有类似的作用:诱导与真菌和细菌的共生形成,并提高光合作用效率和生物量积累。本工作旨在合成并鉴定能够促进具有生物技术潜力的微藻光合作用和生物量积累的独脚金内酯类似物。我们制备并充分表征了新型独脚金内酯类似物,这些类似物容易大量获得。前两种新型化合物含有连接到生物活性呋喃-2-酮环的 3,5-二取代芳氧基部分。在第二组化合物中,苯并噻唑环通过环氮原子直接连接到生物活性呋喃-2-酮环。新型独脚金内酯类似物在 NIVA-CHL 176 上进行了测试。所有测试的独脚金内酯都增加了微藻生物量中叶绿素的积累。SL-F3 类似物 3-(4-甲基-5-氧代-2,5-二氢呋喃-2-基)-3-苯并噻唑-2-酮 () 证明最有效。该化合物在 10 M 的浓度下应用,确定了显著的生物量积累,比未处理的对照高 15%以上,并提高了光合作用系统 II 的量子产率效率。在 10 M 的浓度下应用 SL-F2 类似物 5-(3,5-二溴苯氧基)-3-甲基-5-呋喃-2-酮 (),可提高蛋白质产量并略微刺激生物量积累。讨论了新型独脚金内酯类似物作为微藻生物刺激剂的潜在利用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6452/10609326/be70957758f0/molecules-28-07059-g001.jpg

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