植物素诱导的玉米植株间信号通过aco31依赖的乙烯积累,促进了exp - a20驱动的对玉米螟的抗性。

IF 6.2 1区 生物学 Q1 PLANT SCIENCES The Plant Journal Pub Date : 2024-12-08 DOI:10.1111/tpj.17186
Raufa Batool, Muhammad Jawad Umer, Yongjun Zhang, Jingfei Guo, Zhenying Wang
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引用次数: 0

摘要

植物已经进化出复杂的防御机制来对抗食草昆虫,包括通过木质素生物合成来强化细胞壁。昆虫的攻击启动了植物的系统获得性抗性,使它们对随后的昆虫攻击做出更迅速、更有力的反应。本研究发现,暴露于球孢白僵菌(Beauveria bassiana)的玉米植株在受到果夜蛾(Spodoptera frugiperda)侵染后可以释放叶绿醇,诱导植物间(PTP)的预警信号传递给邻近植株,并揭示了扩张蛋白expa - a20作为一个关键节点,通过刺激乙烯(ET)的合成和木素的产生,介导玉米对破坏性害虫玉米螟(Ostrinia furnacalis)的防御反应。通过病毒诱导的基因沉默,我们发现EXP-A20对玉米抗性至关重要,同时下调ET和木质素途径。重要的是,通过荧光素酶互补和酵母双杂交实验确定的蛋白-蛋白相互作用表明,EXP-A20结合并可能激活et形成酶基因ACO31,启动防御信号级联反应,代表了扩展蛋白的一种新的信号传导方式。用植物挥发性叶绿醇处理具有已知的杀虫/引物活性,但我们发现其有效性需要EXP-A20。这一发现强调了激素-细胞壁串扰上游EXP-A20在挥发物防御激活中的重要性。总的来说,我们对EXP-A20的多方面解剖揭示了诱导玉米对食草动物免疫的关键分子交叉点。此外,我们提供的功能证据表明,广泛的细胞生长过程直接刺激植物的防御程序。我们的工作为通过使用挥发性有机化合物和PTP相互作用增强玉米持久、广谱的害虫抗性开辟了新的途径。
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Phytol-induced interplant signaling in maize facilitates EXP-A20-driven resistance through ACO31-dependent ethylene accumulation against Ostrinia furnacalis

Plants have evolved sophisticated defense mechanisms against insect herbivores, including cell wall fortification through lignin biosynthesis. Insect attack primes systemic acquired resistance in plants, preparing them to respond more swiftly and vigorously to subsequent insect assaults. Here, we found that Beauveria bassiana-exposed maize plants can emit phytol upon infestation by Spodoptera frugiperda, inducing plant-to-plant (PTP) communication of alert signals for neighboring plants, and revealed the expansin protein EXP-A20 as a pivotal node mediating maize defense responses in neighboring plants against the destructive pest Ostrinia furnacalis via stimulation of ethylene (ET) synthesis and lignin production. Through virus-induced gene silencing, we showed that EXP-A20 is essential for maize resistance, while downregulating ET and lignin pathways. Critically, protein–protein interactions determined via luciferase complementation and yeast two-hybrid assays demonstrated that EXP-A20 binds to and likely activates the ET-forming enzyme gene ACO31 to initiate defense signaling cascades, representing a novel signaling modality for expansins. Treatment with the plant volatile phytol has known insecticidal/priming activity, but we found that its effectiveness requires EXP-A20. This finding highlights the importance of EXP-A20 upstream of hormone-cell wall crosstalk in defense activation by volatiles. Overall, our multifaceted dissection of EXP-A20 revealed key molecular intersections underlying inducible maize immunity against herbivores. Furthermore, we provide functional evidence that extensive cell growth processes directly stimulate defense programs in plants. Our work opens new avenues for enhancing durable, broad-spectrum pest resistance in maize through the use of volatile organic compounds and PTP interactions.

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来源期刊
The Plant Journal
The Plant Journal 生物-植物科学
CiteScore
13.10
自引率
4.20%
发文量
415
审稿时长
2.3 months
期刊介绍: Publishing the best original research papers in all key areas of modern plant biology from the world"s leading laboratories, The Plant Journal provides a dynamic forum for this ever growing international research community. Plant science research is now at the forefront of research in the biological sciences, with breakthroughs in our understanding of fundamental processes in plants matching those in other organisms. The impact of molecular genetics and the availability of model and crop species can be seen in all aspects of plant biology. For publication in The Plant Journal the research must provide a highly significant new contribution to our understanding of plants and be of general interest to the plant science community.
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