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  4. Herbivorous insects alter the chlorophyll metabolism of galls on host plants
 
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Herbivorous insects alter the chlorophyll metabolism of galls on host plants

Journal
Journal of Asia-Pacific Entomology
Journal Volume
17
Journal Issue
3
Pages
431-434
Date Issued
2014
Author(s)
Huang M.-Y.
WEN-DAR HUANG  
Chou H.-M.
Chen C.-C.
Chang Y.-T.
Yang C.-M.
DOI
10.1016/j.aspen.2014.04.004
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/451011
URL
https://www2.scopus.com/inward/record.uri?eid=2-s2.0-84899534573&doi=10.1016%2fj.aspen.2014.04.004&partnerID=40&md5=24c830b59430e2bbd504feef5bf2e927
Abstract
Five types of insect-induced galls derived from three host plant leaves were analyzed for their carotenoid (Car), chlorophyll (Chl), and Chl biosynthesis porphyrins such as protoporphyrinogen IX (PPIX), magnesium protoporphyrin (MGPP) and protochlorophyllide (Pchlide), and Chl degradation intermediates including chlorophyllide (Chlide), pheophytin (Phe), pheophorbide (Pho), and phytylated and dephytylated pigments, and compared to ungalled portions of the same leaf. Galls contain significantly lower levels of Chl-related compounds (CRCs) than ungalled portions of host leaves. The mole percent of porphyrin and the ratios of Chlide/Phe and phytylated/dephytylated pigments are both very different between galls and host leaves. We, therefore, conclude that leaf-derived gall is a kind of non-leaf green tissue, that herbivorous insects alter gall Chl biosynthesis and degradation pathways, that Mg-chelatase, Mg-dechelatase, and chlorophyllase may be the major non-lethal enzymes in galls, and that while ungalled host leaves take Chl. →. Phe. →. Pho and Chl. →. Chlide. →. Pho as the major and minor degradation routes, respectively, all galls are in contrast with the host leaves. © 2014 Korean Society of Applied Entomology, Taiwan Entomological Society and Malaysian Plant Protection Society.
Five types of insect-induced galls derived from three host plant leaves were analyzed for their carotenoid (Car), chlorophyll (Chl), and Chl biosynthesis porphyrins such as protoporphyrinogen IX (PPIX), magnesium protoporphyrin (MGPP) and protochlorophyllide (Pchlide), and Chl degradation intermediates including chlorophyllide (Chlide), pheophytin (Phe), pheophorbide (Pho), and phytylated and dephytylated pigments, and compared to ungalled portions of the same leaf. Galls contain significantly lower levels of Chl-related compounds (CRCs) than ungalled portions of host leaves. The mole percent of porphyrin and the ratios of Chlide/Phe and phytylated/dephytylated pigments are both very different between galls and host leaves. We, therefore, conclude that leaf-derived gall is a kind of non-leaf green tissue, that herbivorous insects alter gall Chl biosynthesis and degradation pathways, that Mg-chelatase, Mg-dechelatase, and chlorophyllase may be the major non-lethal enzymes in galls, and that while ungalled host leaves take Chl. →. Phe. →. Pho and Chl. →. Chlide. →. Pho as the major and minor degradation routes, respectively, all galls are in contrast with the host leaves. © 2014 Korean Society of Applied Entomology, Taiwan Entomological Society and Malaysian Plant Protection Society.
SDGs

[SDGs]SDG15

Type
journal article

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