BTB and TAZ domain protein BT4 positively regulates the resistance to Botrytis cinerea in Arabidopsis.

IF 2.8 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Fan Zhou, Kang Zhang, Xu Zheng, Guanyu Wang, Hongzhe Cao, Jihong Xing, Jingao Dong
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Abstract

BT4 gene was identified to play an important role in Arabidopsis resistance to pst DC3000 in preliminary studies. However, the specific function and molecular mechanism of BT4 gene in regulation of Arabidopsis resistance to Botrytis cinerea had not been described to date. In this study, we found that the expression of BT4 was induced by wounding and B. cinerea inoculation in Arabidopsis. After inoculated with B. cinerea, T-DNA insertion mutants of the BT4 gene, bt4, showed significant susceptibility symptoms, whereas no significant symptoms were found in wild-type (WT), the complemented transgenic plants (CE), and the overexpression transgenic plants (OE). After inoculated with B. cinerea, the expression levels of JAR1 and PDF1.2 genes in bt4 mutant were induced; however, the expression levels of these genes in bt4 mutant were significantly lower than those in the WT, CE, and OE. These results indicated that the BT4 positively regulate the expression of genes in JA/ET signaling pathways. Therefore, the BT4 may be involved in the regulation of JA/ET signaling pathways to affect Arabidopsis resistance to B. cinerea.

Abstract Image

Abstract Image

Abstract Image

BTB和TAZ结构域蛋白BT4正调控拟南芥对灰霉病的抗性。
初步研究发现BT4基因在拟南芥对pst DC3000的抗性中起重要作用。然而,BT4基因调控拟南芥对灰霉病抗性的具体功能和分子机制尚未见报道。在本研究中,我们发现在拟南芥中,BT4的表达受到损伤和接种灰孢杆菌的诱导。接种灰孢杆菌后,BT4基因的T-DNA插入突变体BT4表现出明显的易感症状,而野生型(WT)、转基因植株(CE)和过表达转基因植株(OE)均未发现明显的易感症状。接种灰葡萄球菌后,诱导bt4突变体中JAR1和PDF1.2基因的表达水平;然而,这些基因在bt4突变体中的表达水平明显低于WT、CE和OE。这些结果表明,BT4正调控JA/ET信号通路中基因的表达。因此,BT4可能参与调控JA/ET信号通路,影响拟南芥对灰孢杆菌的抗性。
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来源期刊
Plant Signaling & Behavior
Plant Signaling & Behavior Agricultural and Biological Sciences-Plant Science
CiteScore
6.00
自引率
3.40%
发文量
111
期刊介绍: Plant Signaling & Behavior, a multidisciplinary peer-reviewed journal published monthly online, publishes original research articles and reviews covering the latest aspects of signal perception and transduction, integrative plant physiology, and information acquisition and processing.
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