殖民地化
哈茨木霉
扩张素
细胞壁
菌丝
生物
甘露聚糖
植物
微生物学
根际
细胞生物学
自溶(生物学)
凝集素
苗木
纤维素
寄主(生物学)
形态发生
岩藻糖
真菌蛋白
甲壳素
繁殖体
细胞
作者
Chen Chen,Xiaoteng Shi,Zhu Han,Tao Wang,Bozheng Lin,Yajing Gu,Haiyang Guo,Yanxia Ru,Jiahao He,Ruisuhua Liang,Linhua Cao,Tuo Li,Waseem Raza,Yaowang Li,Dongyang Liu,Qirong Shen
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2026-08-28
卷期号:12 (35): eaef7536-eaef7536
标识
DOI:10.1126/sciadv.aef7536
摘要
Expansins and lectins facilitate microbial colonization, but their collaborative mechanisms across different colonization stages remain unclear, and fungal root attachment via these proteins requires further exploration. This study proposes a fungal early colonization hypothesis: Trichoderma harzianum uses the Th SWO- Th FFSL complex to promote hyphal attachment to rice roots. The results show that Th SWO loosens rice cell wall cellulose and forms biomolecular condensates via its intrinsically disordered region (IDR) and extensive O-glycosylation. These condensates specifically recruit the fungal fucose-binding lectin Th FFSL through fucose residues, and both colocalize in root surface cell wall crevices. After localization, Th FFSL guides hyphal growth and enhances adhesion, promoting fungal attachment within the crevices. Postattachment, T. harzianum secretes an O-glycosidase to deglycosylate Th SWO, dissociating the complex and mitigating root cell wall damage. Colonization assays confirm that Th SWO- Th FFSL synergy is crucial for efficient colonization. This study reveals an early attachment phase in fungal colonization driven by protein condensates and glycosylation modifications.
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