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Journal ArticleDOI

Feeding and Other Gall Facets: Patterns and Determinants in Gall Structure

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TLDR
The animal-induced galls have a striking anatomical diversity, concerning several patterns, which were reunited herein, and culminates in extant gall structural diversity.
Abstract
Galls are neoformed structures induced by specific animals, fungi, bacteria, virus or some parasitic plants on their host plant organs. Developmental processes are well known in Agrobacterium tumefasciens galls, but the animal-induced galls have a striking anatomical diversity, concerning several patterns, which were reunited herein. Anatomical traits observed in animal-induced galls involve manipulation of plant morphogenesis in convergent ways. Nematode, mite and insect galls usually contain homogeneous storage parenchyma and develop due to hyperplasia and cell hypertrophy. The development of typical nutritive tissues, giant cells, or hypertrophied vascular bundles may occur. Some other anatomical features may be usually restricted to galls induced by specific taxa, but they may eventually be related to the developmental potentialities of the host plants. The combination of distinct morphogenetic peculiarities in each gall system culminates in extant gall structural diversity. Convergent anatomical traits are observed according to the feeding mode of the gall inducers, representing potentiation or inhibition of similar events of host plant morphogenesis and cell redifferentiation, independent of gall-inducing taxa.

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Citations
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Histopathogenesis of the galls induced by Nothanguina phyllobia in Solanum elaeagnifolium [Silver-leaf nightshade, perennial weeds, biological control agents]

TL;DR: The histopathogenesis of the foliar galls induced by Nothanguina phyllobia Thorne in Solanum elaeagnilolium Cav. was examined via serial sections prepared from plant shoots at 11 time intervals (0.5-30 days) following inoculation as mentioned in this paper.
Journal ArticleDOI

Cytological attributes of storage tissues in nematode and eriophyid galls: pectin and hemicellulose functional insights

TL;DR: Despite their analogous functionalities, the protoplast and cell wall features of TNT cells of nematode galls and of the feeding cells of the Eriophyidae galls are distinct, and work out through different strategies toward keeping gall developmental site active.
Journal ArticleDOI

Enzyme‐mediated metabolism in nutritive tissues of galls induced by Ditylenchus gallaeformans (Nematoda: Anguinidae)

TL;DR: Reducing sugars in the TNT are important for the production of new cell walls during the indeterminate growth of the galls, which have increased levels of water-soluble polysaccharides that corroborate such hypothesis.
Journal ArticleDOI

Hemicelluloses and associated compounds determine gall functional traits

TL;DR: Although cell wall dynamics is peculiar to each gall morphotype in Inga ingoides, the role of xyloglucans as carbohydrate reserve to the gall inducers constitutes a functional trait common the three morphotypes.
Journal ArticleDOI

Interactions Between Figs and Gall-Inducing Fig Wasps: Adaptations, Constraints, and Unanswered Questions

TL;DR: A review of current knowledge on gall induction by fig wasps and exposes the many lacunae in this area can be found in this paper, which makes connections between fig and gall-inducing wasp traits, and suggests relatively unexplored research avenues.
References
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Book

Plant Galls and Gall Inducers

Jean Meyer
Journal ArticleDOI

The ultrastructure and histochemistry of a nematode-induced giant cell

TL;DR: The development of giant cells induced by the nematode Meloidogyne in tomato roots has been followed under controlled growth conditions and the ultrastructure and histochemistry of these structures have been examined.
Journal Article

A molecular phylogeny of Hexapoda

TL;DR: A supermatrix approach to the phylogeny of Insecta that stemmed from a talk given at the 2 Dresden Meeting on Insect Phylogeny (2005) is presented, suggesting that the elucidation of relationships between non-holometabolous neopteran orders is far from resolved.
Journal ArticleDOI

GALLING APHIDS: Specialization, Biological Complexity, and Variation

TL;DR: In this article I review the specialized characteristics of galling aphids, as well as their complex and diverse life histories, as reported in the past 20 years.
Journal ArticleDOI

Manipulation of host plant cells and tissues by gall-inducing insects and adaptive strategies used by different feeding guilds.

TL;DR: It is predicted that reactive oxygen species (ROS) play a role in gall induction, development and histochemical gradient formation and activity of carbohydrate-related enzymes across diverse galls corroborates this hypothesis.
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