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Disease Resistance Mechanisms in Plants.植物中的抗病机制
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Genetics-based methods for agricultural insect pest management.基于遗传学的农业害虫治理方法。
Agric For Entomol. 2018 May;20(2):131-140. doi: 10.1111/afe.12241. Epub 2017 Jun 21.
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Flavonoid Profile of the Cotton Plant, Gossypium hirsutum: A Review.棉花(陆地棉)的类黄酮概况:综述
Plants (Basel). 2017 Sep 25;6(4):43. doi: 10.3390/plants6040043.
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Next-Generation Plant Metabolic Engineering, Inspired by an Ancient Chinese Irrigation System.受中国古代灌溉系统启发的下一代植物代谢工程
Mol Plant. 2018 Jan 8;11(1):47-57. doi: 10.1016/j.molp.2017.09.002. Epub 2017 Sep 8.
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Enhancing Integrated Pest Management in GM Cotton Systems Using Host Plant Resistance.利用寄主植物抗性加强转基因棉花系统中的综合虫害管理。
Front Plant Sci. 2016 Apr 22;7:500. doi: 10.3389/fpls.2016.00500. eCollection 2016.
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New Technologies for Insect-Resistant and Herbicide-Tolerant Plants.抗虫和耐除草剂植物的新技术。
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Biologically Based Methods for Pest Management in Agriculture under Changing Climates: Challenges and Future Directions.气候变化下农业害虫管理的生物防治方法:挑战与未来方向
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Mechanisms and ecological consequences of plant defence induction and suppression in herbivore communities.食草动物群落中植物防御诱导与抑制的机制及生态后果
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10
Growth-defense tradeoffs in plants: a balancing act to optimize fitness.植物中的生长 - 防御权衡:优化适合度的平衡行为
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不同棉花品种中酚类和苯丙烷途径基因对咀嚼性害虫的防御活性存在明显差异。

Distinct defensive activity of phenolics and phenylpropanoid pathway genes in different cotton varieties toward chewing pests.

机构信息

Molecular Biology and Biotechnology, CSIR-National Botanical Research Institute, (Council of Scientific and Industrial Research), Rana Pratap Marg, Lucknow, India.

Academy of Scientific and Innovative Research (AcSIR), New Delhi, India.

出版信息

Plant Signal Behav. 2020 May 3;15(5):1747689. doi: 10.1080/15592324.2020.1747689. Epub 2020 Apr 14.

DOI:10.1080/15592324.2020.1747689
PMID:32290756
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7238874/
Abstract

Identifying the maximum level of inherent defense against harmful insects in natural variation among wild lineages of crop plants may result in high yield tolerant varieties and reducing use of chemical insecticides. However, knowledge of natural cotton genotypes with high insect-resistance is still indistinguishable at the biochemical or molecular level. In the present study, different cultivated varieties were evaluated for their inherent insect-tolerance against two major cottons chewing pests. The insect bio-assay identified two tolerant and one susceptible cotton varieties. The study demonstrates difference in phenolic acids, proanthocyanidin and tannin accumulation in tolerant and susceptible varieties. The post-infestation of chewing pests increases transcript level of the phenylpropanoid pathway genes were detected in tolerant varieties as compared to the susceptible varieties. Altogether, chewing pest-tolerance level in cotton varieties is the cumulative effect of enhanced phenylpropanoid pathway genes expression and secondary metabolite leading to defense responses to conventional host plant.

摘要

确定作物野生种系中天然变异对有害昆虫的固有防御能力的最高水平,可能会产生高产耐虫害品种,并减少化学杀虫剂的使用。然而,在生化或分子水平上,仍然无法区分具有高抗虫性的天然棉花基因型。在本研究中,评估了不同的栽培品种对两种主要棉花咀嚼害虫的内在耐虫性。昆虫生物测定鉴定了两种耐虫和一种易感棉花品种。研究表明,在耐虫和易感品种中,酚酸、原花青素和单宁的积累存在差异。与易感品种相比,咀嚼害虫侵害后,苯丙烷途径基因的转录水平在耐虫品种中增加。总的来说,棉花品种的咀嚼害虫耐受力是增强苯丙烷途径基因表达和次生代谢物的累积效应,导致对常规寄主植物的防御反应。