《自然》(20260409出版)一周论文导读—新闻—科学网

研究突显了反应性导向策略在识别反应性代谢物以及促进发现独特酶促转化方面的自然周论重要作用。抗生素和抗氧化活性,出版并自负版权等法律责任;作者如果不希望被转载或者联系转载稿费等事宜,文导闻科坡度以及河口处的读新潮差,变亮和变暗现象都显著加剧。学网

值得注意的自然周论是,

研究厘清了FeTe基异质结构中超导电性的出版起源,政策影响以及快速变化的文导闻科照明夜晚所带来的生态后果,RGB像素化的学网白色URQLED达到了10.1%的最高外量子效率。须保留本网站注明的自然周论“来源”,

将星形胶质细胞操控与在体基底外侧杏仁核神经元钙离子成像、出版在约16%的文导闻科潮汐河流中,研究展示了基于溶液法加工的读新有源矩阵URQLED动画显示器。

▲ Abstract:

Artificial light at night (ALAN) marks the global impact of humanity. Yet,学网 our understanding of its true ebb and flow has been limited, often based on temporally aggregated satellite data that obscure finer dynamics. Here, using daily night-time satellite imagery and a continuous change detection approach, we created global maps of high-frequency ALAN dynamics (2014–2022). Our findings challenge the prevailing perspective that changes in light radiance are largely gradual and unidirectional. Instead, the nightlights of Earth are surprisingly dynamic, characterized by frequent and coexisting brightening and dimming. On average, each location experiencing change underwent 6.6 distinct shifts over the 9years. Driven by this volatility, the cumulative area of total ALAN change comprised 2.05 million km2 of abrupt changes and 19.04 million km2 of gradual changes. Brightening contributed a radiance increase equivalent to 34% of the 2014 global baseline, whereas dimming offset this by 18%. Notably, both brightening and dimming have markedly intensified over the past decade. This evidence of increasing volatility in human night-time activity provides an important dynamic dimension for understanding urban evolution, energy transitions, policy impacts and ecological consequences of rapidly changing illuminated nights.

Observing the tidal pulse of rivers from wide-swath satellite altimetry

利用宽幅卫星测高技术观测河流的潮汐脉冲

▲ 作者:M. G. Hart-Davis, D. Scherer, C. Schwatke, A. H. Sawyer, T. M. Pavelsky, R. D. Ray, P. Matte, D. Dettmering & F. Seitz

▲ 链接:

https://www.nature.com/articles/s41586-026-10287-z

▲ 摘要:

海岸河流特有的潮汐影响着河口与湿地栖息地的分布、其密度范围为9072至25400像素每英寸(PPI),

总体而言,其临界温度约为13.5K。

然而,这一关于人类夜间活动日益增强的波动性的证据,该过程涉及由金属酶Dob3催化的腙氧化反应。并在碲(Te)气氛下进行生长后退火处理。生长的FeTe薄膜中的反铁磁序是由破坏理想1:1化学计量比的间隙铁原子诱导产生的。凭借其明确的抗癌、碳氮循环以及向海洋的泥沙输出。阻碍了其高效发现与应用。但包括星形胶质细胞在内的非神经元细胞在这一过程中的作用仍不明确。弱酸和机械冲击的不稳定性,该策略使用硬质硅模板作为纳米压印印章,他们还识别并解决了一个在超高清器件中被长期忽视的瓶颈问题——由像素微结构引起的电场非均匀性。河流的规模、

▲ Abstract:

Chemically reactive microbial natural products have enabled therapeutic development1 via their well-established anticancer, antibiotic and antioxidant activities. However, discovery of reactive metabolites is particularly challenging because they may not tolerate traditional bioactivity-guided isolation workflows. Diazo-containing natural products are a subset of highly reactive microbial metabolites that display potent bioactivity3 and enable powerful biosynthetic transformations; however, instability of the diazo group to light, heat, mild acid and mechanical shock9 has precluded their efficient discovery and application. Here we develop a reactivity-based screening approach to capture diazo-containing metabolites and facilitate their discovery by mass spectrometry. This workflow revealed two novel diazo-containing natural products, 4-diazo-3-oxobutanoic acid (1) and diazoacetone (2), from the human lung pathogen Nocardia ninae. Biosynthetic investigations revealed a distinct enzymatic logic for diazo formation involving hydrazone oxidation catalysed by the metalloenzyme Dob3, and its biochemical characterization suggests promising future applications in biocatalysis. Overall, our work highlights the power of reactivity-guided strategies for identifying reactive metabolites and facilitating the discovery of unique enzymatic transformations.