The elemental defense effect of cadmium on Alternaria brassicicola in Brassica juncea

甘蓝链格孢菌 生物 芸苔属 茉莉酸 植物对草食的防御 超量积累植物 防御机制 水杨酸 植物 微生物学 基因 遗传学 植物修复 生态学 突变体 拟南芥 污染
作者
Zhe Liu,Zhenzhen Sun,Chaozhen Zeng,Xujie Dong,Mei Li,Mingli Yan
出处
期刊:BMC Plant Biology [Springer Nature]
卷期号:22 (1) 被引量:4
标识
DOI:10.1186/s12870-021-03398-4
摘要

The elemental defense hypothesis states a new defensive strategy that hyperaccumulators defense against herbivores or pathogens attacks by accumulating heavy metals. Brassica juncea has an excellent ability of cadmium (Cd) accumulation. However, the elemental defense effect and its regulation mechanism in B. juncea remain unclear.In this study, we profiled the elemental defense effect and the molecular regulatory mechanism in Cd-accumulated B. juncea after Alternaria brassicicola infection. B. juncea treated with 180 mg Kg- 1 DW CdCl2 2.5H2O exhibited obvious elemental defense effect after 72 h of infection with A. brassicicola. The expression of some defense-related genes including BjNPR1, BjPR12, BjPR2, and stress-related miRNAs (miR156, miR397, miR398a, miR398b/c, miR408, miR395a, miR395b, miR396a, and miR396b) were remarkably elevated during elemental defense in B. juncea.The results indicate that Cd-accumulated B. juncea may defend against pathogens by coordinating salicylic acid (SA) and jasmonic acid (JA) mediated systemic acquired resistance (SAR) and elemental defense in a synergistic joint effect. Furthermore, the expression of miRNAs related to heavy metal stress response and disease resistance may regulate the balance between pathogen defense and heavy metal stress-responsive in B. juncea. The findings provide experimental evidence for the elemental defense hypothesis in plants from the perspectives of phytohormones, defense-related genes, and miRNAs.
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