木聚糖
细胞壁
拟南芥
半纤维素
化学
细胞生物学
生物化学
下调和上调
亚细胞定位
基因沉默
生物
空泡化
转录因子
植物细胞
细胞
生物物理学
延伸率
果胶
细胞生长
拟南芥
抄写(语言学)
次生细胞壁
基因
细胞膜
基因表达
单糖
作者
T Liu,Heng Yang,Ling Yang,Gui Wang,Sai Liu,Shulin Deng
出处
期刊:Plant Journal
[Wiley]
日期:2026-06-01
卷期号:126 (6): e70988-e70988
摘要
SUMMARY Acidic soils trigger a surge of soluble aluminum (Al), thereby causing Al 3+ toxicity that inhibits plant growth and limits crop yields. Rhodomyrtus tomentosa , a shrub distributed in tropical and subtropical regions with acid soil, is an important genetic source for exploring the mechanism of Al tolerance. The xyloglucan endotransglucosylase/hydrolase (XTH) cleaves and rejoins xyloglucan polymers, which is important for plants to adapt to Al 3+ stress. In the present study, a total of 29 RtXTHs were identified in R. tomentosa . These RtXTHs showed distinct tissue‐specific expression patterns. Al 3+ stress significantly upregulated several RtXTH genes in the roots, among which RtXTH2 showed the most prominent responsiveness. The subcellular localization assay determined that RtXTH2 encoded a cell wall‐localized XTH protein. Overexpression of RtXTH2 enhanced Al tolerance in Arabidopsis by reducing hemicellulose and pectin contents in the cell wall. RtERF1, an Al 3+ ‐induced AP2/ERF transcription factor, directly activated RtXTH2 by binding to the CRT elements in its promoter. Silencing either RtXTH2 or RtERF1 reduced Al tolerance in R. tomentosa seedlings, as evidenced by increased Al accumulation, enhanced membrane damage, and more severe inhibition of root elongation under Al 3+ stress. In summary, our results indicate that RtERF1 activates RtXTH2 to modify cell wall composition, thereby enhancing Al tolerance in R. tomentosa .
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