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温度响应性瓶刷聚合物递送一种应激调节剂以长期减轻植物热应激

Temperature-Responsive Bottlebrush Polymers Deliver a Stress-Regulating Agent for Prolonged Plant Heat Stress Mitigation.

作者信息

Zhang Yilin, Fu Liye, Martinez Michael R, Sun Hui, Nava Valeria, Yan Jiajun, Ristroph Kurt, Averick Saadyah E, Marelli Benedetto, Giraldo Juan Pablo, Matyjaszewski Krzysztof, Tilton Robert D, Lowry Gregory V

机构信息

Department of Civil and Environmental Engineering, Center for Environmental Implications of Nano Technology (CEINT), Department of Chemistry, Department of Chemical Engineering, Department of Biomedical Engineering, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213, United States.

Department of Civil and Environmental Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States.

出版信息

ACS Sustain Chem Eng. 2023 Feb 14;11(8):3346-3358. doi: 10.1021/acssuschemeng.2c06461. eCollection 2023 Feb 27.

Abstract

Anticipated increases in the frequency and intensity of extreme temperatures will damage crops. Methods that efficiently deliver stress-regulating agents to crops can mitigate these effects. Here, we describe high aspect ratio polymer bottlebrushes for temperature-controlled agent delivery in plants. The foliar-applied bottlebrush polymers had near complete uptake into the leaf and resided in both the apoplastic regions of the leaf mesophyll and in cells surrounding the vasculature. Elevated temperature enhanced the release of spermidine (a stress-regulating agent) from the bottlebrushes, promoting tomato plant () photosynthesis under heat and light stress. The bottlebrushes continued to provide protection against heat stress for at least 15 days after foliar application, whereas free spermidine did not. About 30% of the ∼80 nm short and ∼300 nm long bottlebrushes entered the phloem and moved to other plant organs, enabling heat-activated release of plant protection agents in phloem. These results indicate the ability of the polymer bottlebrushes to release encapsulated stress relief agents when triggered by heat to provide long-term protection to plants and the potential to manage plant phloem pathogens. Overall, this temperature-responsive delivery platform provides a new tool for protecting plants against climate-induced damage and yield loss.

摘要

预计极端温度发生频率和强度的增加将损害作物。能够有效地将应激调节剂输送到作物的方法可以减轻这些影响。在此,我们描述了用于在植物中进行温度控制剂递送的高纵横比聚合物瓶刷。叶面施用的瓶刷聚合物几乎完全被叶片吸收,并存在于叶肉的质外体区域和脉管系统周围的细胞中。温度升高增强了亚精胺(一种应激调节剂)从瓶刷中的释放,促进了番茄植株在热胁迫和光照胁迫下的光合作用。叶面施用后,瓶刷持续提供至少15天的热胁迫防护,而游离亚精胺则不能。约30%的80 nm短和300 nm长的瓶刷进入韧皮部并转移到其他植物器官,从而在韧皮部实现热激活的植物保护剂释放。这些结果表明,聚合物瓶刷能够在受热触发时释放封装的应激缓解剂,从而为植物提供长期保护,并且具有管理植物韧皮部病原体的潜力。总体而言,这种温度响应递送平台为保护植物免受气候引起的损害和产量损失提供了一种新工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4dfa/9976702/7dbb9c088828/sc2c06461_0001.jpg

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