Heterologous expression of heat stress-responsive AtPLC9 confers heat tolerance in transgenic rice.
Heterologous expression of heat stress-responsive AtPLC9 confers heat tolerance in transgenic rice.
复制标题
热应激响应AtPLC9的异源表达赋予转基因水稻耐热性
DOI:
10.1186/s12870-020-02709-5
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发表时间:
2020-11-11
影响因子:
5.3
通讯作者:
Zheng S
中科院分区:
文献类型:
--
作者:
Liu Y;Liu X;Wang X;Gao K;Qi W;Ren H;Hu H;Sun D;Bai J;Zheng S
BackgroundAs global warming becomes increasingly severe, it is urgent that we enhance the heat tolerance of crops. We previously reported thatArabidopsis thalianaPHOSPHOINOSITIDE-SPECIFIC PHOSPHOLIPASE C9 (AtPLC9) promotes heat tolerance.ResultsIn this study, we ectopically expressedAtPLC9in rice to examine its potential to improve heat tolerance in this important crop. Whereas AtPLC9 did not improve rice tolerance to salt, drought or cold, transgenic rice did exhibit greater heat tolerance than the wild type. High-throughput RNA-seq revealed extensive and dynamic transcriptome reprofiling in transgenic plants after heat stress. Moreover, the expression of some transcription factors and calcium ion-related genes showed specific upregulation in transgenic rice after heat stress, which might contribute to the enhanced heat tolerance.ConclusionsThis study provides preliminary guidance for using AtPLC9 to improve heat tolerance in cereal crops and, more broadly, highlights that heterologous transformation can assist with molecular breeding.