Rubber tree (Hevea brasiliensis) is the primary source of natural rubber and economically important. We present the haplotype-resolved, telomere-to-telomere, gap-free genome assembly of the cultivar CATAS 7-33-97, with both haplotypes containing complete telomeric and centromeric regions. Structural variations, including a 32.71âMb inversion on chromosome 8, are identified. The fully assembled 36 chromosomes enable comprehensive identification of rubber biosynthesis genes and their allele-specific expression. By integrating transcriptomic and metabolomic data, we reconstruct the rubber biosynthesis pathway and confirm the mevalonate (MVA) pathway as the major carbon source for rapid latex regeneration during tapping. Jasmonic acid (JA) plays a key role in promoting rubber yield by enhancing biosynthetic activity in response to mechanical wounding. We propose a model where JA-induced myelocytomatosis proteins 2 activate mevalonate kinase 1 expression, boosting MVA synthesis and rubber production. These findings provide insights into rubber tree genomics and its molecular response to tapping.
The haplotype-resolved telomere-to-telomere genome and OMICS analyses reveal genetic responses to tapping in rubber tree.
单倍型解析的端粒到端粒基因组和组学分析揭示了橡胶树割胶的遗传反应
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作者:Li Chaochao, Yuan Yuan, Nie Zhiyi, Wu Tingkai, Wang Zhiyuan, Qiao Jiangxia, Deng Zhi, Wang Xiaobo, Xu Dong, Wang Xu, Cao Shuo, Li Bingqin, An Zewei, Wu Wenguan, Jin Zhongxin, Huang Huasun, Hu Wei, Zhou Yongfeng, Cheng Han
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2025 | 起止号: | 2025 Jul 7; 16(1):6255 |
| doi: | 10.1038/s41467-025-61527-1 | ||
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