Literature DB >> 24621096

Leaf-derived cecidomyiid galls are sinks in Machilus thunbergii (Lauraceae) leaves.

Meng-Yuan Huang1, Wen-Dar Huang, Hsueh-Mei Chou, Kuan-Hung Lin, Chang-Chang Chen, Pei-Ju Chen, Yung-Ta Chang, Chi-Ming Yang.   

Abstract

Three relevant hypotheses - nutrition, environment and the enemies hypothesis - often invoked to explore source and sink relationships between galls and their host plants are still under dispute. In this research, chlorophyll fluorescence, gas exchange capacity, stomatal conductance, total carbon and nitrogen, total soluble sugars and starches, and scanning and transmission electron microscopy of two types of galls were used to investigate source-sink relationships. Compared with host leaves, these galls demonstrated slightly lower chlorophyll fluorescence; however, gas exchange capacity and stomatal conductance were not detected at all. Scanning electron micrographs demonstrated that the abaxial epidermis of host leaves contain normal amounts of stomata, whereas no stomata were observed on the exterior and interior surfaces of both types of galls. In addition, gall inner surfaces were covered with many kinds of fungal hyphae. Gall total carbon (C) and nitrogen (N) levels were lower but the C/N ratio was higher in galls than host leaves. Both types of galls accumulated higher total soluble sugars and starches than host leaves. Transmission electron micrographs also revealed that both types of galls contain plastoglobuli and giant starch granules during gall development. Results strongly indicate that leaf-derived cecidomyiid galls are sinks in Machilus thunbergii leaves. However, it is perplexing how larvae cycle and balance CO(2) and O(2) in gall growth chambers without stomata.
© 2014 Scandinavian Plant Physiology Society.

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Year:  2014        PMID: 24621096     DOI: 10.1111/ppl.12186

Source DB:  PubMed          Journal:  Physiol Plant        ISSN: 0031-9317            Impact factor:   4.500


  9 in total

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2.  Anatomical profiles validate gall morphospecies under similar morphotypes.

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Authors:  Gaku Amada; Keito Kobayashi; Ayako Izuno; Mana Mukai; Rebecca Ostertag; Kanehiro Kitayama; Yusuke Onoda
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4.  Structural, biochemical, and physiological characterization of photosynthesis in leaf-derived cup-shaped galls on Litsea acuminata.

Authors:  Meng-Yuan Huang; Wen-Dar Huang; Hsueh-Mei Chou; Chang-Chang Chen; Pei-Ju Chen; Yung-Ta Chang; Chi-Ming Yang
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Review 5.  Insect Gallers and Their Plant Hosts: From Omics Data to Systems Biology.

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6.  Sink Status and Photosynthetic Rate of the Leaflet Galls Induced by Bystracoccus mataybae (Eriococcidae) on Matayba guianensis (Sapindaceae).

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7.  Fungal Communities of Eucalyptus grandis Leaves Are Influenced by the Insect Pest Leptocybe invasa.

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8.  Morphometric analysis of young petiole galls on the narrow-leaf cottonwood, Populus angustifolia, by the sugarbeet root aphid, Pemphigus betae.

Authors:  Ryan A Richardson; Mélanie Body; Michele R Warmund; Jack C Schultz; Heidi M Appel
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9.  Transcriptome profile of cup-shaped galls in Litsea acuminata leaves.

Authors:  Tin-Han Shih; Szu-Hsien Lin; Meng-Yuan Huang; Chih-Wen Sun; Chi-Ming Yang
Journal:  PLoS One       Date:  2018-10-24       Impact factor: 3.240

  9 in total

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