Comparative Transcriptome and Targeted Metabolome Profiling Unravel the Key Role of Phenylpropanoid and Glucosinolate Pathways in Defense against Alternaria brassicicola in Broccoli

苯丙素 生物 代谢组 转录组 小桶 甘蓝链格孢菌 甘蓝 植物抗病性 耕作 基因 植物 代谢组学 遗传学 基因表达 生物信息学 生物合成 拟南芥 突变体
作者
Yusen Shen,Jiansheng Wang,Ranjan K. Shaw,Xiaoguang Sheng,Huifang Yu,F. Branca,Honghui Gu
出处
期刊:Journal of Agricultural and Food Chemistry [American Chemical Society]
卷期号:71 (16): 6499-6510 被引量:13
标识
DOI:10.1021/acs.jafc.2c08486
摘要

Alternaria brassicicola (Ab) can cause a major yield and quality-limiting disease of Brassica oleracea called black spot, and the genetic resources conferring complete resistance against Ab have not been identified to date. Here, comparative transcriptome and targeted metabolome analysis were performed utilizing a newly identified resistant (R) line and a broccoli susceptible (S) line at 6, 24, and 72 h post-inoculation (hpi). Kyoto encyclopedia of genes and genomes pathway enrichment and the weighted gene co-expression network analyses showed that the phenylpropanoid pathway regulates the resistance to Ab in broccoli. One metabolite, cinnamic acid, was significantly upregulated in the Ab_inoculated R line compared with the mock treatment but no significant difference in the S line, indicating that the cinnamic acid may cause the resistance difference between R and S lines. Our results also revealed that three indolic glucosinolates of I3G, 4MI3G, and 1MI3G were significantly increased in the Ab_inoculated R line compared with the mock treatment, and some related genes were differentially expressed between the R and S lines. These results provided new insights into the mechanism of Ab defense in B. oleracea and have laid a theoretical foundation for effectively utilizing resistant germplasm resources in broccoli breeding.
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