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对弱烟草中内源性胰蛋白酶蛋白酶抑制剂产生的调控表明了它们作为抗食草动物防御机制的功能。

Manipulation of endogenous trypsin proteinase inhibitor production in Nicotiana attenuata demonstrates their function as antiherbivore defenses.

作者信息

Zavala Jorge A, Patankar Aparna G, Gase Klaus, Hui Dequan, Baldwin Ian T

机构信息

Department of Molecular Ecology, Max Planck Institute for Chemical Ecology, Jena 07745, Germany.

出版信息

Plant Physiol. 2004 Mar;134(3):1181-90. doi: 10.1104/pp.103.035634. Epub 2004 Feb 19.

Abstract

Evidence for the in planta defensive function of trypsin protease inhibitors (TPIs) comes from observations of enhanced herbivore resistance after heterologous TPI expression or the manipulation of signal cascades that activate numerous defense responses, including TPI production; no studies have altered the expression of an endogenous pi gene to examine defensive function. We isolated two genes with seven- and six-repeat TPI domains from Nicotiana attenuata from the potato (Solanum tuberosum) PI-II family. To determine whether endogenous TPIs in N. attenuata function defensively against the native herbivores, hornworm (Manduca sexta) and mirids (Tupiocoris notatus), we expressed 175 bp of the seven-domain pi from N. attenuata in an antisense orientation in a TPI-producing genotype to reduce TPI expression and expressed the full-length seven-domain pi in a sense orientation under control of a constitutive promoter to restore TPI activity in a natural genotype from Arizona unable to produce TPIs. Constitutive and inducible TPI production in two antisense lines were diminished by 80% to 90% and 33% to 52%, respectively, and sense expression restored 67% of the activity found in the TPI-producing genotype after caterpillar attack in the TPI-deficient A genotype. Hornworm larvae fed on genotypes with low or no TPI activity grew faster, had higher survivorship, and produced heavier pupae than those that fed on genotypes with high TPI activity. T. notatus showed higher preference for genotypes with low or no TPI activity than for genotypes with high TPI levels. We conclude that endogenous TPIs are an effective defense against these native herbivores.

摘要

胰蛋白酶蛋白酶抑制剂(TPI)在植物体内的防御功能证据来自于以下观察结果:在异源TPI表达或激活包括TPI产生在内的多种防御反应的信号级联被操纵后,食草动物抗性增强;尚无研究改变内源性pi基因的表达来检验防御功能。我们从烟草中分离出两个来自马铃薯(Solanum tuberosum)PI-II家族的具有七重复和六重复TPI结构域的基因。为了确定烟草中的内源性TPI是否对本地食草动物烟草天蛾(Manduca sexta)和盲蝽(Tupiocoris notatus)具有防御功能,我们在一个产生TPI的基因型中以反义方向表达了175 bp的来自烟草的七结构域pi,以降低TPI表达,并在组成型启动子的控制下以正义方向表达全长七结构域pi,以恢复来自亚利桑那州的无法产生TPI的自然基因型中的TPI活性。两个反义品系中组成型和诱导型TPI的产生分别减少了80%至90%和33%至52%,在缺乏TPI的A基因型中,正义表达恢复了毛虫攻击后在产生TPI的基因型中发现的67%的活性。以低TPI活性或无TPI活性的基因型为食的烟草天蛾幼虫比以高TPI活性的基因型为食的幼虫生长得更快、存活率更高且蛹更重。与高TPI水平的基因型相比,盲蝽对低TPI活性或无TPI活性的基因型表现出更高的偏好。我们得出结论,内源性TPI是对这些本地食草动物的有效防御。

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