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快速的细胞内酸化是植物的防御反应,而褐飞虱则会对此进行拮抗。

Rapid intracellular acidification is a plant defense response countered by the brown planthopper.

机构信息

State Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Yunnan University, Kunming 650091, China; DOE Plant Research Laboratory, Michigan State University, East Lansing, MI 48824, USA; CAS Key Laboratory of Tropical Plant Resources and Sustainable Use, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Kunming 650223, Yunnan, China.

Institute of Insect Science, Zhejiang University, Hangzhou 310058, China; DOE Plant Research Laboratory, Michigan State University, East Lansing, MI 48824, USA.

出版信息

Curr Biol. 2024 Nov 4;34(21):5017-5027.e4. doi: 10.1016/j.cub.2024.09.039. Epub 2024 Oct 14.

Abstract

The brown planthopper (BPH) is the most destructive insect pest in rice. Through a stylet, BPH secretes a plethora of salivary proteins into rice phloem cells as a crucial step of infestation. However, how various salivary proteins function in rice cells to promote insect infestation is poorly understood. Among them, one of the salivary proteins is predicted to be a carbonic anhydrase (Nilaparvata lugens carbonic anhydrase [NlCA]). The survival rate of the NlCA-RNA interference (RNAi) BPH insects was extremely low on rice, indicating a vital role of this salivary protein in BPH infestation. We generated NlCA transgenic rice plants and found that NlCA expressed in rice plants could restore the ability of NlCA-RNAi BPH to survive on rice. Next, we produced rice plants expressing the ratiometric pH sensor pHusion and found that NlCA-RNAi BPH induced rapid intracellular acidification of rice cells during feeding. Further analysis revealed that both NlCA-RNAi BPH feeding and artificial lowering of intracellular pH activated plant defense responses and that NlCA-mediated intracellular pH stabilization is linked to diminished defense responses, including reduced callose deposition at the phloem sieve plates and suppressed defense gene expression. Given the importance of pH homeostasis across the kingdoms of life, discovery of NlCA-mediated intracellular pH modulation uncovered a new dimension in the interaction between plants and piercing/sucking insect pests. The crucial role of NlCA for BPH infestation of rice suggests that NlCA is a promising target for chemical or trans-kingdom RNAi-based inactivation for BPH control strategies in plants.

摘要

褐飞虱是水稻上最具破坏性的害虫之一。通过口针,褐飞虱将大量唾液蛋白分泌到水稻韧皮部细胞中,这是侵害的关键步骤。然而,各种唾液蛋白如何在水稻细胞中发挥作用以促进昆虫侵害还知之甚少。其中一种唾液蛋白被预测为碳酸酐酶(Nilaparvata lugens carbonic anhydrase [NlCA])。NlCA-RNA 干扰(RNAi)褐飞虱昆虫在水稻上的存活率极低,表明这种唾液蛋白在褐飞虱侵害中起着至关重要的作用。我们生成了 NlCA 转基因水稻植株,并发现水稻植株中表达的 NlCA 可以恢复 NlCA-RNAi 褐飞虱在水稻上生存的能力。接下来,我们生成了表达比率型 pH 传感器 pHusion 的水稻植株,并发现 NlCA-RNAi 褐飞虱在取食过程中诱导水稻细胞快速胞内酸化。进一步分析表明,NlCA-RNAi 褐飞虱取食和人为降低胞内 pH 都激活了植物防御反应,而 NlCA 介导的胞内 pH 稳定与防御反应的减弱有关,包括在韧皮部筛板处的几丁质沉积减少和防御基因表达的抑制。鉴于 pH 动态平衡在生命王国中的重要性,发现 NlCA 介导的胞内 pH 调节揭示了植物与穿刺/吸食性害虫相互作用的一个新维度。NlCA 对褐飞虱侵害水稻的重要作用表明,NlCA 是一种有前途的靶标,可以用于化学或跨王国 RNAi 来灭活褐飞虱,从而为植物中的褐飞虱防治策略提供新的思路。

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