Miao Jianqiang, Dong Xue, Lin Dong, Wang Qiushi, Liu Pengfei, Chen Furu, Du Yixin, Liu Xili
Department of Plant Pathology, China Agricultural University, Beijing, China.
Institute of Plant Protection, Fujian Academy of Agricultural Sciences, Fujian, China.
Pest Manag Sci. 2016 Aug;72(8):1572-7. doi: 10.1002/ps.4189. Epub 2015 Dec 21.
Oxathiapiprolin was the first of the piperidinyl thiazole isoxazoline class of fungicides to be discovered and developed by DuPont in 2007. Although oxathiapiprolin has been reported to have high activity against plant-pathogenic oomycetes, such as Peronospora belbahrii, Phytophthora nicotianae and Ph. capsici, little is known about its effectiveness against other plant-pathogenic oomycetes and its protective and curative properties.
Oxathiapiprolin exhibited substantial inhibitory activity against all of the plant-pathogenic oomycetes tested, with EC90 values ranging from 0.14 to 3.36 × 10(-3) µg mL(-1) , except the Pythium species Py. aphanidermatum and Py. deliense. Furthermore, doses as low as 10 µg mL(-1) were found to inhibit zoospore release and motility in Ph. capsici, while the mycelial development and sporangial production of Pseudoperonospora cubensis were restrained by an EC50 of 3.10 × 10(-4) and 5.17 × 10(-4) µg mL(-1) respectively. It was also found that oxathiapiprolin exhibited both protective and curative activity against the development of Ph. capsici infection in pepper plants under greenhouse conditions and in field tests.
The present study demonstrated that the novel fungicide oxathiapiprolin exhibits strong inhibitory activity against a range of agriculturally important plant-pathogenic oomycetes, including Phytophthora spp., Peronophythora litchii, Plasmopara viticola, Pe. parasitica, Ps. cubensis and Py. ultimum. © 2015 Society of Chemical Industry.
恶唑菌酮是杜邦公司于2007年发现并开发的哌啶基噻唑异恶唑啉类杀菌剂中的首个品种。尽管据报道恶唑菌酮对植物致病卵菌具有高活性,如对蚕豆单轴霉、烟草疫霉和辣椒疫霉,但对于其对其他植物致病卵菌的有效性及其保护和治疗特性知之甚少。
恶唑菌酮对所有测试的植物致病卵菌均表现出显著的抑制活性,除瓜果腐霉和德氏腐霉外,其EC90值范围为0.14至3.36×10⁻³ μg mL⁻¹。此外,发现低至10 μg mL⁻¹的剂量可抑制辣椒疫霉游动孢子的释放和游动性,而瓜类假霜霉的菌丝体发育和孢子囊产生分别受到3.10×10⁻⁴和5.17×10⁻⁴ μg mL⁻¹的EC50抑制。还发现恶唑菌酮在温室条件和田间试验中对辣椒植株上辣椒疫霉感染的发生均表现出保护和治疗活性。
本研究表明,新型杀菌剂恶唑菌酮对一系列农业上重要的植物致病卵菌具有强烈的抑制活性,包括疫霉属、荔枝霜霉疫霉、葡萄生单轴霉、寄生霜霉、瓜类假霜霉和终极腐霉。© 2015化学工业协会。