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铁硫簇组装 1(IscA1)在褐飞虱中的分子特征、时空表达和磁响应模式。

Molecular characterization, spatial-temporal expression and magnetic response patterns of iron-sulfur cluster assembly1 (IscA1) in the rice planthopper, Nilaparvata lugens.

机构信息

Beijing Key Laboratory of Bioelectromagnetics, Institute of Electrical Engineering, Chinese Academy of Sciences, Beijing, China.

University of Chinese Academy of Sciences, Beijing, China.

出版信息

Insect Sci. 2019 Jun;26(3):413-423. doi: 10.1111/1744-7917.12546. Epub 2017 Dec 14.

DOI:10.1111/1744-7917.12546
PMID:29063672
Abstract

The mechanisms of magnetoreception have been proposed as the magnetite-based, the chemical radical-pair and biocompass model, in which magnetite particles, the cryptochrome (Cry) or iron-sulfur cluster assembly 1 (IscA1) may be involved. However, little is known about the association among the molecules. Here we investigated the molecular characterization and the mRNA expression of IscA1 in different developmental stages, tissues and magnetic fields in the migratory brown planthopper (BPH), Nilaparvata lugens. NlIscA1 contains an open reading frame of 390 bp, encoding amino acids of 129, with the predicted molecular weight of 14.0 kDa and the isoelectric point of 9.10. Well-conserved Fe-S cluster binding sites were observed in the predicted protein. Phylogenetic analysis demonstrated NlIscA1 to be clustered into the insect's IscA1. NlIscA1 showed up-regulated mRNA expression during the period of migration. The mRNA expression of NlIscA1 could be detected in all the three tissues of head, thorax and abdomen, with the highest expression level in the abdomen. For the macropterous migratory Nilaparvata lugens, mRNA expression of NlIscA1 and N. lugens cryptochrome1 (Nlcry1) were up-regulated under the magnetic fields of 5 Gauss and 10 Gauss in strength (vs. local geomagnetic field), while N. lugens cryptochrome2 (Nlcry2) remained stable. For the brachyterous non-migratory Nilaparvata lugens, no significant changes were found in mRNA expression of NlIscA1, Nlcry1 and Nlcry2 among different magnetic fields. These findings preliminarily reveal that the expression of NlIscA1 and Nlcry1 exhibited coordinated responses to the magnetic field. It suggests some potential associations among the putative magneto-sensitive molecules of cryptochrome and iron-sulfur cluster assembly.

摘要

磁受体的作用机制被提出有基于磁铁矿的、化学自由基对和生物罗盘模型,其中磁铁矿颗粒、隐花色素 (Cry) 或铁硫簇组装体 1 (IscA1) 可能涉及其中。然而,关于这些分子之间的联系知之甚少。在这里,我们研究了不同发育阶段、组织和磁场中迁徙褐飞虱(BPH)Nilaparvata lugens 中 IscA1 的分子特征和 mRNA 表达。NlIscA1 含有 390 bp 的开放阅读框,编码 129 个氨基酸,预测的分子量为 14.0 kDa,等电点为 9.10。在预测的蛋白中观察到了保守的 Fe-S 簇结合位点。系统发育分析表明 NlIscA1 聚类为昆虫的 IscA1。NlIscA1 在迁徙期间表现出上调的 mRNA 表达。NlIscA1 的 mRNA 表达可在头部、胸部和腹部的三个组织中检测到,在腹部中的表达水平最高。对于长翅迁徙型 Nilaparvata lugens,NlIscA1 和 Nilaparvata lugens cryptochrome1 (Nlcry1) 的 mRNA 表达在强度为 5 Gauss 和 10 Gauss 的磁场下上调(与当地地磁场相比),而 N. lugens cryptochrome2 (Nlcry2) 则保持稳定。对于短翅非迁徙型 Nilaparvata lugens,NlIscA1、Nlcry1 和 Nlcry2 的 mRNA 表达在不同磁场中没有明显变化。这些发现初步揭示了 NlIscA1 和 Nlcry1 的表达对磁场表现出协调的反应。这表明隐花色素和铁硫簇组装体的潜在磁敏分子之间存在一些潜在的关联。

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Removal or component reversal of local geomagnetic field affects foraging orientation preference in migratory insect brown planthopper .
去除或反转局部地磁场会影响迁飞性昆虫褐飞虱的觅食方向偏好。
PeerJ. 2021 Oct 26;9:e12351. doi: 10.7717/peerj.12351. eCollection 2021.
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