Zhang Yilin, Yan Jiajun, Avellan Astrid, Gao Xiaoyu, Matyjaszewski Krzysztof, Tilton Robert D, Lowry Gregory V
ACS Nano. 2020 Sep 22;14(9):10954-10965. doi: 10.1021/acsnano.0c03140. Epub 2020 Jul 14.
Climate change is increasing the severity and length of heat waves. Heat stress limits crop productivity and can make plants more sensitive to other biotic and abiotic stresses. New methods for managing heat stress are needed. Herein, we have developed ∼30 nm diameter poly(acrylic acid)-poly(-isopropylacrylamide) (PAA--PNIPAm) star polymers with varying block ratios for temperature-programmed release of a model antimicrobial agent (crystal violet, CV) at plant-relevant pH. Hyperspectral-Enhanced Dark field Microscopy was used to investigate star polymer-leaf interactions and route of entrance. The majority of loaded star polymers entered plant leaves through cuticular and epidermis penetration when applied with the adjuvant Silwet L-77. Up to 43 wt % of star polymers (20 μL at 200 mg L polymer concentration) applied onto tomato () leaves translocated to other plant compartments (younger and older shoots, stem, and root) over 3 days. Without Silwet L-77, the star polymers penetrated the cuticle, but mainly accumulated at the epidermis cell layer. The degree of the star polymer temperature responsiveness for CV release in the range of 20 to 40 °C depends on pH and the ratio of the PAA to PNIPAm blocks. Temperature-responsive release of CV was also observed in tomato leaves. These results underline the potential for PAA--PNIPAm star polymers to provide efficient and temperature-programmed delivery of cationic agrochemicals into plants for protection against heat stress.
气候变化正在加剧热浪的严重程度和持续时间。热应激会限制作物生产力,并使植物对其他生物和非生物胁迫更加敏感。因此需要新的热应激管理方法。在此,我们制备了直径约30 nm的聚(丙烯酸)-聚(N-异丙基丙烯酰胺)(PAA-PNIPAm)星型聚合物,其嵌段比例各不相同,用于在与植物相关的pH值下对模型抗菌剂(结晶紫,CV)进行程序控温释放。利用高光谱增强暗场显微镜研究星型聚合物与叶片的相互作用及进入途径。当与助剂Silwet L-77一起使用时,大多数负载的星型聚合物通过角质层和表皮渗透进入植物叶片。在3天内,施加到番茄叶片上的高达43 wt%的星型聚合物(聚合物浓度为200 mg/L时为20 μL)转移到了植物的其他部位(幼嫩和成熟的枝条、茎和根)。没有Silwet L-77时,星型聚合物穿透角质层,但主要积聚在表皮细胞层。在20至40°C范围内,星型聚合物对CV释放的温度响应程度取决于pH值以及PAA与PNIPAm嵌段的比例。在番茄叶片中也观察到了CV的温度响应释放。这些结果强调了PAA-PNIPAm星型聚合物为保护植物免受热应激而将阳离子农用化学品高效且程序控温地递送至植物体内的潜力。