Silencing of the calcium-dependent protein kinase TaCDPK27 improves wheat resistance to powdery mildew.

IF 4.3 2区 生物学 Q1 PLANT SCIENCES BMC Plant Biology Pub Date : 2023-03-08 DOI:10.1186/s12870-023-04140-y
Jie-Yu Yue, Jin-Lan Jiao, Wen-Wen Wang, Xin-Rui Jie, Hua-Zhong Wang
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Abstract

Background: Calcium ions (Ca2+), secondary messengers, are crucial for the signal transduction process of the interaction between plants and pathogens. Ca2+ signaling also regulates autophagy. As plant calcium signal-decoding proteins, calcium-dependent protein kinases (CDPKs) have been found to be involved in biotic and abiotic stress responses. However, information on their functions in response to powdery mildew attack in wheat crops is limited.

Result: In the present study, the expression levels of TaCDPK27, four essential autophagy-related genes (ATGs) (TaATG5, TaATG7, TaATG8, and TaATG10), and two major metacaspase genes, namely, TaMCA1 and TaMCA9, were increased by powdery mildew (Blumeria graminis f. sp. tritici, Bgt) infection in wheat seedling leaves. Silencing TaCDPK27 improves wheat seedling resistance to powdery mildew, with fewer Bgt hyphae occurring on TaCDPK27-silenced wheat seedling leaves than on normal seedlings. In wheat seedling leaves under powdery mildew infection, silencing TaCDPK27 induced excess contents of reactive oxygen species (ROS); decreased the activities of superoxide dismutase (SOD), peroxidase (POD) and catalase (CAT); and led to an increase in programmed cell death (PCD). Silencing TaCDPK27 also inhibited autophagy in wheat seedling leaves, and silencing TaATG7 also enhanced wheat seedling resistance to powdery mildew infection. TaCDPK27-mCherry and GFP-TaATG8h colocalized in wheat protoplasts. Overexpressed TaCDPK27-mCherry fusions required enhanced autophagy activity in wheat protoplast under carbon starvation.

Conclusion: These results suggested that TaCDPK27 negatively regulates wheat resistance to PW infection, and functionally links with autophagy in wheat.

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钙依赖性蛋白激酶TaCDPK27的沉默提高了小麦对白粉病的抗性。
背景:钙离子(Ca2+)作为次生信使,在植物与病原体相互作用的信号转导过程中起着至关重要的作用。Ca2+信号也调节自噬。作为植物钙信号解码蛋白,钙依赖性蛋白激酶(CDPKs)已被发现参与生物和非生物胁迫反应。然而,关于它们在小麦作物中应对白粉病侵袭的功能的信息有限。结果:本研究中,小麦幼苗叶片受白粉病(Blumeria graminis f. sp. tritici, Bgt)侵染后,TaCDPK27、4个自噬相关基因(ATGs) (TaATG5、TaATG7、TaATG8和TaATG10)以及2个主要的metacaspase基因TaMCA1和TaMCA9的表达水平升高。沉默TaCDPK27提高了小麦幼苗对白粉病的抗性,沉默TaCDPK27的小麦幼苗叶片上出现的Bgt菌丝比正常幼苗少。在白粉病感染的小麦幼苗叶片中,沉默TaCDPK27诱导活性氧(ROS)含量超标;超氧化物歧化酶(SOD)、过氧化物酶(POD)和过氧化氢酶(CAT)活性降低;并导致程序性细胞死亡(PCD)增加。沉默TaCDPK27也能抑制小麦幼苗叶片的自噬,沉默TaATG7也能增强小麦幼苗对白粉病的抗性。TaCDPK27-mCherry和GFP-TaATG8h在小麦原生质体中定位。过表达的TaCDPK27-mCherry融合体在碳饥饿条件下需要增强小麦原生质体的自噬活性。结论:上述结果提示TaCDPK27负调控小麦对PW的抗性,并与小麦自噬有功能联系。
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BMC Plant Biology
BMC Plant Biology 生物-植物科学
CiteScore
8.40
自引率
3.80%
发文量
539
审稿时长
3.8 months
期刊介绍: BMC Plant Biology is an open access, peer-reviewed journal that considers articles on all aspects of plant biology, including molecular, cellular, tissue, organ and whole organism research.
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