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介导甘薯贮藏根抗甘薯小象甲的羟基肉桂酸酯类物质的分离

Segregation of Hydroxycinnamic Acid Esters Mediating Sweetpotato Weevil Resistance in Storage Roots of Sweetpotato.

作者信息

Anyanga Milton O, Yada Benard, Yencho G C, Ssemakula Gorrettie N, Alajo Agnes, Farman Dudley I, Mwanga Robert O M, Stevenson Philip C

机构信息

National Crops Resources Research Institute, National Agricultural Research OrganizationKampala, Uganda.

Department of Agriculture Health and Environment, Natural Resources Institute, University of GreenwichChatham, United Kingdom.

出版信息

Front Plant Sci. 2017 Jun 13;8:1011. doi: 10.3389/fpls.2017.01011. eCollection 2017.

Abstract

Resistance to sweetpotato weevils ( spp.) has been identified in several sweetpotato () landraces from East Africa and shown to be conferred by hydroxycinnamic acids that occur on the surface of storage roots. The segregation of resistance in this crop is unknown and could be monitored using these chemical traits as markers for resistance in F offspring from breeding programs. For the first time in a segregating population, we quantified the plant chemicals that confer resistance and evaluated levels of insect colonization of the same progeny in field and laboratory studies. We used a bi-parental mapping population of 287 progenies from a cross between 'New Kawogo,' a weevil resistant Ugandan landrace and 'Beauregard' a North American orange-fleshed and weevil susceptible cultivar. The progenies were evaluated for resistance to sweetpotato weevil, at three field locations that varied climatically and across two seasons to determine how environment and location influenced resistance. To augment our field open-choice resistance screening, each clone was also evaluated in a no choice experiment with weevils reared in the laboratory. Chemical analysis was used to determine whether differences in resistance to weevils were associated with plant compounds previously identified as conferring resistance. We established linkage between field and laboratory resistance to spp. and sweetpotato root chemistry. The data also showed that resistance in sweetpotato was mediated by root chemicals in most but not all cases. Multi-location trials especially from Serere data provided evidence that the hydroxycinnamic acid esters are produced constitutively within the plants in different clonal genotypes and that the ecological interaction of these chemicals in sweetpotato with weevils confers resistance. Our data suggest that these chemical traits are controlled quantitatively and that ultimately a knowledge of the genetics of resistance will facilitate management of these traits, enhance our understanding of the mechanistic basis of resistance and speed the development of new sweetpotato varieties with resistance to sweetpotato weevil.

摘要

在来自东非的几个甘薯地方品种中已鉴定出对甘薯象甲(甘薯小象虫属)的抗性,并且表明这种抗性是由贮藏根表面存在的羟基肉桂酸赋予的。这种作物中抗性的分离情况尚不清楚,可以利用这些化学性状作为育种计划中F代抗性的标记来进行监测。在一个分离群体中,我们首次对赋予抗性的植物化学物质进行了定量,并在田间和实验室研究中评估了同一后代的昆虫定殖水平。我们使用了一个由287个后代组成的双亲作图群体,该群体来自‘New Kawogo’(一个抗象甲的乌干达地方品种)与‘Beauregard’(一个北美橙色果肉且易感象甲的品种)的杂交。在三个气候条件不同的田间地点以及两个季节对这些后代进行了甘薯象甲抗性评估,以确定环境和地点如何影响抗性。为了加强我们的田间开放式选择抗性筛选,每个克隆还在一个无选择实验中进行了评估,该实验使用在实验室饲养的象甲。化学分析用于确定对象甲抗性的差异是否与先前鉴定为赋予抗性的植物化合物有关。我们建立了田间和实验室对甘薯小象虫属的抗性与甘薯根化学之间的联系。数据还表明,在大多数但并非所有情况下,甘薯的抗性是由根化学物质介导的。多地点试验,特别是来自Serere的数据提供了证据,表明羟基肉桂酸酯在不同克隆基因型的植物中组成性产生,并且这些化学物质在甘薯中与象甲的生态相互作用赋予了抗性。我们的数据表明,这些化学性状受数量性状控制,最终对抗性遗传学的了解将有助于这些性状的管理,增强我们对抗性机制基础的理解,并加快培育抗甘薯象甲的新甘薯品种的进程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5045/5468429/0b20bd173d75/fpls-08-01011-g001.jpg

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