Heterologous expression of heat stress-responsive AtPLC9 confers heat tolerance in transgenic rice
Yuliang Liu; Xinye Liu; Xue Wang; Kang Gao; Weiwei Qi; Huimin Ren; Haorui Hu; Daye Sun · 2020 · BMC Plant Biology
WASTE classifies this as Negative / Null Result Report · AI classification, approximate
The study found no significant effect — useful as a negative control or null benchmark for your own design.
The finding, in one line
“Whereas AtPLC9 did not improve rice tolerance to salt, drought or cold, transgenic rice did exhibit greater heat tolerance than the wild type.”
Abstract
Abstract Background As global warming becomes increasingly severe, it is urgent that we enhance the heat tolerance of crops. We previously reported that Arabidopsis thaliana PHOSPHOINOSITIDE-SPECIFIC PHOSPHOLIPASE C9 (AtPLC9) promotes heat tolerance. Results In this study, we ectopically expressed AtPLC9 in 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
Abstract by Yuliang Liu; Xinye Liu; Xue Wang; Kang Gao; Weiwei Qi; Huimin Ren; Haorui Hu; Daye Sun, BMC Plant Biology (2020) — licensed CC BY 4.0.
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Metadata source: DOAJ · DOI 10.1186/s12870-020-02709-5
