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近期发表论文

Natural variation in the promoter of rice calcineurin B‐like protein10 (OsCBL10) affects flooding tolerance during seed germination among rice subspecies

NengHui Ye, FengZhu Wang, Lu Shi, MoXian Chen, YunYing Cao, FuYuan Zhu, YiZhen Wu, LiJuan Xie, TieYuan Liu, ZeZhuo Su, Shi Xiao, Hao Zhang, Jianchang Yang, HaiYong Gu, XuanXuan Hou, QiJuan Hu, HuiJuan Yi, ChangXiang Zhu, Jianhua Zhang, YingGao Liu 

The Rlant Journal; https://doi.org/10.1111/tpj.13881; First published: 01 March 2018;

Summary

Rice (Oryza sativa L.) has two ecotypes, upland and lowland rice, that have been observed to show different tolerance levels under flooding stress. In this study, two rice cultivars, upland (Up221, floodingintolerant) and lowland (Low88, floodingtolerant), were initially used to study their molecular mechanisms in response to flooding germination. We observed that variations in the OsCBL10 promoter sequences in these two cultivars might contribute to this divergence in flooding tolerance. Further analysis using another eight rice cultivars revealed that the OsCBL10 promoter could be classified as either a floodingtolerant type (Ttype) or a floodingintolerant type (Itype). The OsCBL10 Ttype promoter only existed in japonica lowland cultivars, whereas the OsCBL10 Itype promoter existed in japonica upland, indica upland and indica lowland cultivars. Floodingtolerant rice cultivars containing the OsCBL10 Ttype promoter have shown lower Ca2+ flow and higher αamylase activities in comparison to those in floodingintolerant cultivars. Furthermore, the OsCBL10 overexpression lines were sensitive to both flooding and hypoxic treatments during rice germination with enhanced Ca2+ flow in comparison to wildtype. Subsequent findings also indicate that OsCBL10 may affect OsCIPK15 protein abundance and its downstream pathways. In summary, our results suggest that the adaptation to flooding stress during rice germination is associated with two different OsCBL10 promoters, which in turn affect OsCBL10 expression in different cultivars and negatively affect OsCIPK15 protein accumulation and its downstream cascade.

全文链接:https://onlinelibrary.wiley.com/doi/10.1111/tpj.13881


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