Marhadour Sophie, Wu Hanxiang, Yang Wen, Marivingt-Mounir Cécile, Bonnemain Jean-Louis, Chollet Jean-François
Institut de Chimie des Milieux et des Matériaux de Poitiers, Université de Poitiers, Poitiers, France.
Laboratoire Écologie et Biologie des Interactions, Université de Poitiers, Poitiers, France.
Pest Manag Sci. 2017 Sep;73(9):1972-1982. doi: 10.1002/ps.4575. Epub 2017 May 3.
Excessive agrochemical use poses significant threats to environmental safety and human health. Reducing pesticide use without reducing yield is necessary for sustainable agriculture. Therefore, we developed a vectorisation strategy to enhance agrochemical delivery through plant amino acid carriers.
In addition to a fenpiclonil conjugate recently described, three new amino acid conjugates were synthesised by coupling fenpiclonil to an l-α-amino acid. Phloem mobility of these conjugates, which exhibit different structures of the spacer arm introduced between fenpiclonil and the α-amino acid function, was studied using the Ricinus model. Conjugate L-14, which contains a triazole ring with the shortest amino acid chain, showed the best phloem systemicity among the four conjugates. By contrast, removing the triazole ring in the spacer arm did not improve systemicity. L-14 exhibited phloem systemicity at all reported pH values (pH values from 5.0 to 6.5) of the foliar apoplast, while acidic derivatives of fenpiclonil were translocated only at pH values near 5.0.
The conjugates were recognised by a pH-dependent transporter system and translocated at distance in the phloem. They exhibited a broader phloem systemicity than fenpiclonil acidic derivatives within the pH value range of the foliar apoplast. © 2017 Society of Chemical Industry.
过度使用农用化学品对环境安全和人类健康构成重大威胁。在不降低产量的情况下减少农药使用对于可持续农业来说是必要的。因此,我们开发了一种矢量化策略,以通过植物氨基酸载体增强农用化学品的传递。
除了最近描述的咯菌腈缀合物外,通过将咯菌腈与L-α-氨基酸偶联合成了三种新的氨基酸缀合物。使用蓖麻模型研究了这些缀合物的韧皮部移动性,这些缀合物在咯菌腈和α-氨基酸官能团之间引入了不同结构的间隔臂。含有最短氨基酸链的三唑环的缀合物L-14在四种缀合物中表现出最佳的韧皮部系统性。相比之下,去除间隔臂中的三唑环并没有提高系统性。L-14在叶肉质外体所有报道的pH值(pH值为5.0至6.5)下均表现出韧皮部系统性,而咯菌腈的酸性衍生物仅在接近5.0的pH值下转运。
这些缀合物被pH依赖性转运系统识别并在韧皮部中远距离转运。在叶肉质外体的pH值范围内,它们比咯菌腈酸性衍生物表现出更广泛的韧皮部系统性。©2017化学工业协会。