Defense-related gene expression and enzyme activities in transgenic cotton plants expressing an endochitinase gene from Trichoderma virens in response to interaction with Rhizoctonia solani.

IF 3.6 3区 生物学 Q1 PLANT SCIENCES Planta Pub Date : 2009-07-01 Epub Date: 2009-05-15 DOI:10.1007/s00425-009-0937-z
Vinod Kumar, Vilas Parkhi, Charles M Kenerley, Keerti S Rathore
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引用次数: 94

Abstract

There are many reports on obtaining disease-resistance trait in plants by overexpressing genes from diverse organisms that encode chitinolytic enzymes. Current study represents an attempt to dissect the mechanism underlying the resistance to Rhizoctonia solani in cotton plants expressing an endochitinase gene from Trichoderma virens. Several assays were developed that provided a powerful demonstration of the disease protection obtained in the transgenic cotton plants. Transgene-dependent endochitinase activity was confirmed in various tissues and in the medium surrounding the roots of transformants. Biochemical and molecular analyses conducted on the transgenic plants showed rapid/greater induction of ROS, expression of several defense-related genes, and activation of some PR enzymes and the terpenoid pathway. Interestingly, even in the absence of a challenge from the pathogen, the basal activities of some of the defense-related genes and enzymes were higher in the endochitinase-expressing cotton plants. This elevated defensive state of the transformants may act synergistically with the potent, transgene-encoded endochitinase activity to confer a strong resistance to R. solani infection.

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表达绿木霉内生几丁质酶基因的转基因棉花与枯丝核菌互作的防御相关基因表达和酶活性研究
有许多报道通过过表达来自不同生物的编码几丁质分解酶的基因在植物中获得抗病性状。本研究旨在揭示表达木霉内生几丁质酶基因的棉花对茄枯丝核菌的抗性机制。一些实验结果有力地证明了转基因棉花的抗病作用。转基因依赖的几丁质酶活性在各种组织和转化体根部周围的培养基中得到证实。对转基因植株进行的生化和分子分析表明,转基因植株的活性氧被快速或更强地诱导,一些防御相关基因得到表达,一些PR酶和萜类途径被激活。有趣的是,即使在没有病原体挑战的情况下,表达内质酶的棉花植株中一些防御相关基因和酶的基础活性也更高。这种升高的防御状态可能与转基因编码的内生几丁质酶活性协同作用,赋予对茄枯菌感染的强大抗性。
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来源期刊
Planta
Planta 生物-植物科学
CiteScore
7.20
自引率
2.30%
发文量
217
审稿时长
2.3 months
期刊介绍: Planta publishes timely and substantial articles on all aspects of plant biology. We welcome original research papers on any plant species. Areas of interest include biochemistry, bioenergy, biotechnology, cell biology, development, ecological and environmental physiology, growth, metabolism, morphogenesis, molecular biology, new methods, physiology, plant-microbe interactions, structural biology, and systems biology.
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