Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Defensive Compounds Involved in the Invasiveness of Tithonia diversifolia

View through CrossRef
Tithonia diversifolia (Hemsl.) A. Gray forms high-density impenetrable monospecific stands as an invasive plant species. Its life history traits, such as high adaptability with high genetic variation under different environmental conditions, and high growth and reproductive capacity, may contribute to its success in invading and increasing its population in the introduced ranges. Evidence has accumulated in the literature for the activity of compounds involved in the invasive characteristics of Tithonia diversifolia against natural enemies such as herbivorous insects and mammals, pathogenic nematodes, fungi, and viruses, and of allelochemicals against neighboring competitive plant species. Tagitinin A, tagitinin C, 1β-methoxydiversifolin, phytol, phytol acetate, α-pinene, bicyclo[3.1.0]hexane,4-methylene-1-(1-methylethyl), hispidulin, dihydro-p-coumaric acid, and methyl linoleate are toxic to herbivorous insects, and tagitinin C and 5-O-(E)-caffeoylquinic acid are harmful to herbivorous mammals. Tirotundin has nematocidal activity. α-Pinene, camphor, eucalyptol, and α-terpineol have fungicidal activity. Tagitinin A, tagitinin C, and 1β-methoxydiversifolin-3-O-methyl ether have antiviral activity. Tagitinin A, tagitinin C, 1β-methoxydiversifolin, and hispidulin act as allelochemicals that inhibit the growth of neighboring competing plant species. The ability to outcompete natural enemies and competing plant species is one of the essential factors for infestation and increase in the population and distribution of Tithonia diversifolia in new habitats. Therefore, these compounds may be involved in the invasive characteristics of Tithonia diversifolia. This is the first review article focusing on the compounds involved in the invasive characteristics of Tithonia diversifolia.
Title: Defensive Compounds Involved in the Invasiveness of Tithonia diversifolia
Description:
Tithonia diversifolia (Hemsl.
) A.
Gray forms high-density impenetrable monospecific stands as an invasive plant species.
Its life history traits, such as high adaptability with high genetic variation under different environmental conditions, and high growth and reproductive capacity, may contribute to its success in invading and increasing its population in the introduced ranges.
Evidence has accumulated in the literature for the activity of compounds involved in the invasive characteristics of Tithonia diversifolia against natural enemies such as herbivorous insects and mammals, pathogenic nematodes, fungi, and viruses, and of allelochemicals against neighboring competitive plant species.
Tagitinin A, tagitinin C, 1β-methoxydiversifolin, phytol, phytol acetate, α-pinene, bicyclo[3.
1.
0]hexane,4-methylene-1-(1-methylethyl), hispidulin, dihydro-p-coumaric acid, and methyl linoleate are toxic to herbivorous insects, and tagitinin C and 5-O-(E)-caffeoylquinic acid are harmful to herbivorous mammals.
Tirotundin has nematocidal activity.
α-Pinene, camphor, eucalyptol, and α-terpineol have fungicidal activity.
Tagitinin A, tagitinin C, and 1β-methoxydiversifolin-3-O-methyl ether have antiviral activity.
Tagitinin A, tagitinin C, 1β-methoxydiversifolin, and hispidulin act as allelochemicals that inhibit the growth of neighboring competing plant species.
The ability to outcompete natural enemies and competing plant species is one of the essential factors for infestation and increase in the population and distribution of Tithonia diversifolia in new habitats.
Therefore, these compounds may be involved in the invasive characteristics of Tithonia diversifolia.
This is the first review article focusing on the compounds involved in the invasive characteristics of Tithonia diversifolia.

Related Results

Effects of NPK Fertilizer application and plant density on forage yield and chemical composition of wild sunflower (Tithonia diversifolia)
Effects of NPK Fertilizer application and plant density on forage yield and chemical composition of wild sunflower (Tithonia diversifolia)
A study was conducted in 2017 and 2018, in the Forest Zone of southwestern Nigeria, to evaluate the yield and chemical composition of wild sunflower (Tithonia diversifolia) fertili...
Desempeño agronómico y valor nutricional en Tithonia diversifolia (Hemsl.) A Gray bajo un sistema de corte
Desempeño agronómico y valor nutricional en Tithonia diversifolia (Hemsl.) A Gray bajo un sistema de corte
Se evaluaron las características morfoagronómica, rendimiento de producción, composición bromatológica y la digestibilidad in vitro aparente de cuatro edades de corte en Tithonia d...
Degradación ruminal in vitro en Tithonia diversifolia
Degradación ruminal in vitro en Tithonia diversifolia
Introduction. The Mocache canton (Ecuador) is a humid tropical zone, with a dry season of six months, which affects the availability and quality of forage, a situation that reduces...
Ecological Consequences of Invasive Weeds: Zimbabwean Experience: A Review
Ecological Consequences of Invasive Weeds: Zimbabwean Experience: A Review
Invasive weeds may be defined as troublesome or unsightly plants growing in abundance in both upland and aquatic situations where they are not wanted. The establishment of invasive...
Phytochemical Compositions, Microencapsulation, and Antioxidant Activity of Aqueous Extract from Tithonia diversifolia Leaves
Phytochemical Compositions, Microencapsulation, and Antioxidant Activity of Aqueous Extract from Tithonia diversifolia Leaves
Tithonia diversifolia is a flowering plant from the Asteraceae family widely used in traditional medicine in Indonesia. This study aimed to evaluate the phytochemical composition o...

Back to Top