硫代葡萄糖苷
生物
戒毒(替代医学)
硫酸酯酶
芥子酶
分泌物
生物测定
植物对草食的防御
十字花科植物
突变体
生物化学
植物
酶
基因
生态学
医学
病理
替代医学
芸苔属
作者
Wei Chen,Hafiz Sohaib Ahmed Saqib,Xuejiao Xu,Yuhong Dong,Ling Zheng,Yingfang Lai,Xiaodong Jing,Zhanjun Lu,Linyang Sun,Minsheng You,Weiyi He
标识
DOI:10.1021/acs.jafc.2c03929
摘要
Numerous herbivores orally secrete defense compounds to detoxify plant toxins. However, little is known about the role of orally secreted enzymes by a specialized pest, Plutella xylostella, in the detoxification of plant defense compounds. Three glucosinolate sulfatases (GSSs) or two sulfatase-modifying factors (SUMF1s) mutant strains were established on the basis of CRISPR/Cas9 technology to validate the existence of a species-specific GSSs-SUMF1s system. In comparison to the bioassay data from mutant strains of GSS1/GSS2 or SUMF1a/SUMF1b, GSS3 had a minimal role because no significant change was found in GSS3-/- under different feeding contexts. Antibody-based technologies were used to examine GSSs-related deficient strains, and the results showed that the GSS1 protein was primarily released through larval oral secretion. On the basis of high-performance liquid chromatography, we found that GSS1 was secreted to pre-desulfate the typical plant defensive glucosinolates known as 4-(methylsulfinyl)butyl glucosinolate (4MSOB-GL) to suppress the production of the toxic substance, which is referred to as pre-detoxification strategy. These findings highlighted that the GSSs-SUMF1s system is the key factor for counteradaptation of P. xylostella to cruciferous plants, which strengthens the concept that herbivores deploy pre-detoxification strategies to disrupt the plant chemical defenses to facilitate the colonization process.
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