Article
Population-level exploration of alternative splicing and its unique role in controlling agronomic traits of rice.
The Plant cell - 3 Oct 2024
Zhang Hong, Chen Wu, Zhu De, Zhang Bintao, Xu Qiang, Shi Chuanlin, He Huiying, Dai Xiaofan, Li Yilin, He Wenchuang, Lv Yang, Yang Longbo, Cao Xinglan, Cui Yan, Leng Yue, Wei Hua, Liu Xiangpei, Zhang Bin, Wang Xianmeng, Guo Mingliang, Zhang Zhipeng, Li Xiaoxia, Liu Congcong, Yuan Qiaoling, Wang Tianyi, Yu Xiaoman, Qian Hongge, Zhang Qianqian, Chen Dandan, Hu Guanjing, Qian Qian, Shang Lianguang
Abstract excerpt
Alternative splicing (AS) plays crucial roles in regulating various biological processes in plants. However, the genetic mechanisms underlying AS and its role in controlling important agronomic traits in rice (Oryza sativa) remain poorly understood. In this study, we explored AS in rice leaves and panicles using the rice minicore collection. Our analysis revealed a high level of transcript isoform diversity, with...
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