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Plant latent defense response to microbial non-pathogenic factors antagonizes compatibility.

Yu YangShenglan ChenXiaoxuan WuLi PengJuan I VílchezRicha KaushalXiaomin LiuSunil Kumar SinghDanxia HeFengtong YuanSuhui LvRafael J L MorcilloWei WangWeichang HuangMingguang LeiJian-Kang ZhuPaul W ParéHuiming Zhang
Published in: National science review (2022)
Unlike microbe-associated molecular patterns (MAMPs) that are readily targeted by host immunity, microbial non-pathogenic factors (NPFs) appear negligible as they do not elicit defense. Little is known about whether and how NPFs may be monitored by hosts to control compatibility. Herein, a forward genetic screening isolated an Arabidopsis mutant with a loss of plant-rhizobacteria mutualism, leading to the disclosure of a plant latent defense response (LDR) to NPFs. The activation of LDR in the mutant, named rol1 for regulator of LDR 1 , is triggered by several non-pathogenic volatile organic compounds and antagonizes plant compatibility with the beneficial bacterium Bacillus amyloliquefaciens GB03. The activation of LDR in rol1 is mediated through the prokaryotic pathway of chloroplastic lipid biosynthesis. The rol1 root microbiome showed a reduced proportion of the Bacillaceae family. We propose that, parallel to the forefront immunity to MAMPs, LDR to certain NPFs provides a hidden layer of defense for controlling compatibility with commensal or beneficial microbes.
Keyphrases
  • cell wall
  • plant growth
  • innate immune
  • microbial community
  • transcription factor
  • genome wide
  • gene expression
  • wild type
  • drug delivery