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烟草腺毛分泌物Z-毕西醇及其与烟草对烟草疫霉抗性的关系。

The Tobacco Trichome Exudate Z-abienol and Its Relationship With Plant Resistance to Phytophthora nicotianae.

作者信息

Steede William T, Ma Justin M, Eickholt David P, Drake-Stowe Katherine E, Kernodle Sheri P, Shew H David, Danehower David A, Lewis Ramsey S

机构信息

Crop and Soil Science Department, North Carolina State University, Raleigh.

Department of Plant Pathology, North Carolina State University, Raleigh.

出版信息

Plant Dis. 2017 Jul;101(7):1214-1221. doi: 10.1094/PDIS-10-16-1512-RE. Epub 2017 Apr 21.

DOI:10.1094/PDIS-10-16-1512-RE
PMID:30682971
Abstract

In previous research, we discovered a favorable quantitative trait locus (QTL) in cigar tobacco cultivar 'Beinhart 1000' designated as Phn15.1, which provides a high level of partial resistance to the black shank disease caused by Phytophthora nicotianae. A very close genetic association was also found between Phn15.1 and the ability to biosynthesize Z-abienol, a labdanoid diterpene exuded by the trichomes onto above-ground plant parts, and that imparts flavor and aroma characteristics to Oriental and some cigar tobacco types. Because accumulation of Z-abienol is considered to be undesirable for cultivars of other tobacco types, we herein describe a series of experiments to gain insight on whether this close association is due to genetic linkage or pleiotropy. First, in an in vitro bioassay, we observed Z-abienol and related diterpenes to inhibit hyphal growth of P. nicotianae at concentrations between 0.01 and 100 ppm. Secondly, we field-tested transgenic versions of Beinhart 1000 carrying RNAi constructs for downregulating NtCPS2 or NtABS, two genes involved in the biosynthesis of Z-abienol. Thirdly, we also field tested a recombinant inbred line population segregating for a truncation mutation in NtCPS2 leading to an interrupted Z-abienol pathway. We observed no correlation between field resistance to P. nicotianae and the ability to accumulate Z-abienol in either the transgenic materials or the mapping population. Results suggest that, although Z-abienol may affect P. nicotianae when applied at high concentrations in in vitro assays, the compound has little effect on black shank disease development under natural field conditions. Thus, it should be possible to disassociate Phn15.1-mediated black shank resistance identified in cigar tobacco cultivar Beinhart 1000 from the ability to accumulate Z-abienol, an undesirable secondary metabolite for burley and flue-cured tobacco cultivars.

摘要

在先前的研究中,我们在雪茄烟草品种“Beinhart 1000”中发现了一个有利的数量性状基因座(QTL),命名为Phn15.1,它对烟草疫霉引起的黑胫病具有高水平的部分抗性。还发现Phn15.1与生物合成Z-阿比诺醇的能力之间存在非常紧密的遗传关联,Z-阿比诺醇是一种由腺毛分泌到地上植物部分的半日花烷二萜,赋予东方烟草和一些雪茄烟草类型风味和香气特征。由于Z-阿比诺醇的积累被认为对其他烟草类型的品种不利,我们在此描述了一系列实验,以深入了解这种紧密关联是由于遗传连锁还是基因多效性。首先,在体外生物测定中,我们观察到Z-阿比诺醇和相关二萜在0.01至100 ppm的浓度下抑制烟草疫霉的菌丝生长。其次,我们对携带RNAi构建体的Beinhart 1000转基因版本进行了田间试验,该构建体用于下调参与Z-阿比诺醇生物合成的两个基因NtCPS2或NtABS。第三,我们还对一个重组自交系群体进行了田间试验,该群体因NtCPS2中的截短突变而分离,导致Z-阿比诺醇途径中断。我们在转基因材料或作图群体中均未观察到对烟草疫霉的田间抗性与积累Z-阿比诺醇的能力之间存在相关性。结果表明,尽管在体外测定中高浓度施用时Z-阿比诺醇可能会影响烟草疫霉,但该化合物在自然田间条件下对黑胫病的发展影响很小。因此,应该有可能将在雪茄烟草品种Beinhart 1000中鉴定出的Phn15.1介导的黑胫病抗性与积累Z-阿比诺醇的能力分开,Z-阿比诺醇是白肋烟和烤烟品种中不需要的次生代谢产物。

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