Glucosinolate Sulfatases–Sulfatase-Modifying Factors System Enables a Crucifer-Specialized Moth To Pre-detoxify Defensive Glucosinolate of the Host Plant

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 基因 生态学 医学 替代医学 病理 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
出处
期刊:Journal of Agricultural and Food Chemistry [American Chemical Society]
卷期号:70 (36): 11179-11191 被引量:19
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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