Literature DB >> 28778044

Role of phenolic compounds during antioxidative responses of winter triticale to aphid and beetle attack.

Paweł Czerniewicz1, Hubert Sytykiewicz1, Roma Durak2, Beata Borowiak-Sobkowiak3, Grzegorz Chrzanowski4.   

Abstract

One of the earliest responses of plants to insects' attack is generation of reactive oxygen species. However, the elevated level of ROS can elicit oxidative burst within plant tissues, and plants employ antioxidant systems against these radicals. Due to their chemical structures, polyphenols are able to diminish the level of ROS. Thus, we investigated the role of phenolic compounds in oxidative stress within winter triticale caused by Sitobion avenae and Oulema melanopus. It was found, that infestation by insects induced a high increase in the content of hydrogen peroxide and superoxide anion radical within resistant Lamberto cv. 24 hpi, whereas in sensitive Marko cv., an increase in H2O2 content was found within two days of aphid feeding. Moreover, resistant plants showed earlier and much greater induction of l-phenylalanine and l-tyrosine ammonia lyases and chalcone synthase activities, as well as accumulation of phenolic compounds in response to insect feeding than susceptible Marko. On the other hand, strong positive influence of hydrogen peroxide and superoxide radical contents on chalcone synthase activity and furthermore flavonoid biosynthesis was detected in the susceptible cultivar. Negative relationships between level of o-coumaric acid or flavonoid compounds and content of hydrogen peroxide or superoxide radical suggest their antioxidant capacity. Luteolin and o-coumaric acid may attend in scavenging of hydrogen peroxide, whereas quercetin, apigenin and (+)-catechin probably participate in reduction of superoxide anion radical content.
Copyright © 2017 Elsevier Masson SAS. All rights reserved.

Entities:  

Keywords:  Cereal leaf beetle; Flavonoids; Grain aphid; Hydroxycinnamic acids; Oulema melanopus; Reactive oxygen species; Sitobion avenae

Mesh:

Substances:

Year:  2017        PMID: 28778044     DOI: 10.1016/j.plaphy.2017.07.024

Source DB:  PubMed          Journal:  Plant Physiol Biochem        ISSN: 0981-9428            Impact factor:   4.270


  8 in total

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7.  Changes in Aphid-Plant Interactions under Increased Temperature.

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  8 in total

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