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微小RNA390调节植物对食草动物的耐受性反应。

microRNA390 modulates 's tolerance response to herbivory.

作者信息

Pradhan Maitree, Rocha Catarina, Halitschke Rayko, Baldwin Ian T, Pandey Shree P

机构信息

Department of Molecular Ecology Max Planck Institute for Chemical Ecology Jena Germany.

出版信息

Plant Direct. 2021 Sep 30;5(10):e350. doi: 10.1002/pld3.350. eCollection 2021 Oct.

Abstract

miR390 is a highly conserved miRNA in plant lineages known to function in growth and development processes, such as lateral root development, and in responses to salt and metal stress. In the ecological model species, , miR390's biological function remains unknown, which we explore here with a gain-of-function analysis with plants over-expressing (OE-) miR390 (Na-miR390) in glasshouse and natural environments. OEmiR390 plants showed normal developmental processes, including lateral root formation or reproductive output, in plants grown under standard conditions in the glasshouse. OEmiR390 plants did not have dramatically altered interactions with arbuscular mycorrhizal fungi (AMF), pathogens, or herbivores. However, Na-miR390 regulated the plant's tolerance of herbivory. Caterpillar feeding elicits the accumulation of a suite of phytohormones, including auxin and jasmonates, which further regulate host-tolerance. The increase in Na-miR390 abundance reduces the accumulation of auxin but does not influence levels of other phytohormones including jasmonates (JA, JA-Ile), salicylic acid (SA), and abscisic acid (ABA). Na-miR390 overexpression reduces reproductive output, quantified as capsule production, when plants are attacked by herbivores. Exogenous auxin treatments of herbivore-attacked plants restored capsule production to wild-type levels. During herbivory, Na-miR390 transcript abundances are increased; its overexpression reduces the abundances of auxin biosynthesizing and (mainly ) transcripts during herbivory. Furthermore, the accumulation of auxin-regulated phenolamide secondary metabolites (caffeoylputrescine, dicaffeoylspermidine) is also reduced. In , miR390 functions in modulating tolerance responses of herbivore-attacked plants.

摘要

miR390是植物谱系中一种高度保守的微小RNA,已知其在生长和发育过程中发挥作用,如侧根发育,以及在对盐和金属胁迫的响应中发挥作用。在生态模式物种中,miR390的生物学功能仍然未知,我们在此通过在温室和自然环境中对过表达(OE-)miR390(Na-miR390)的植物进行功能获得分析来探究这一问题。在温室标准条件下生长的植物中,OEmiR390植株表现出正常的发育过程,包括侧根形成或生殖产出。OEmiR390植株与丛枝菌根真菌(AMF)、病原体或食草动物的相互作用没有显著改变。然而,Na-miR390调节植物对食草动物的耐受性。毛虫取食会引发一系列植物激素的积累,包括生长素和茉莉酸酯,这些激素进一步调节宿主耐受性。Na-miR390丰度的增加会减少生长素的积累,但不影响包括茉莉酸酯(JA、JA-Ile)、水杨酸(SA)和脱落酸(ABA)在内的其他植物激素水平。当植物受到食草动物攻击时,Na-miR390的过表达会降低以荚果产量衡量的生殖产出。对受食草动物攻击的植物进行外源生长素处理可使荚果产量恢复到野生型水平。在食草过程中,Na-miR390转录本丰度增加;其过表达会降低食草过程中生长素生物合成和(主要是)转录本的丰度。此外,生长素调节的酚酰胺次生代谢产物(咖啡酰腐胺、二咖啡酰亚精胺)的积累也会减少。在中,miR390在调节受食草动物攻击的植物的耐受性反应中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb59/8482963/2dd702fbd635/PLD3-5-e350-g007.jpg

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