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Ethylene Contributes to maize insect resistance1-Mediated Maize Defense against the Phloem Sap-Sucking Corn Leaf Aphid.
- Source :
-
Plant physiology [Plant Physiol] 2015 Sep; Vol. 169 (1), pp. 313-24. Date of Electronic Publication: 2015 Aug 07. - Publication Year :
- 2015
-
Abstract
- Signaling networks among multiple phytohormones fine-tune plant defense responses to insect herbivore attack. Previously, it was reported that the synergistic combination of ethylene (ET) and jasmonic acid (JA) was required for accumulation of the maize insect resistance1 (mir1) gene product, a cysteine (Cys) proteinase that is a key defensive protein against chewing insect pests in maize (Zea mays). However, this study suggests that mir1-mediated resistance to corn leaf aphid (CLA; Rhopalosiphum maidis), a phloem sap-sucking insect pest, is independent of JA but regulated by the ET-signaling pathway. Feeding by CLA triggers the rapid accumulation of mir1 transcripts in the resistant maize genotype, Mp708. Furthermore, Mp708 provided elevated levels of antibiosis (limits aphid population)- and antixenosis (deters aphid settling)-mediated resistance to CLA compared with B73 and Tx601 maize susceptible inbred lines. Synthetic diet aphid feeding trial bioassays with recombinant Mir1-Cys Protease demonstrates that Mir1-Cys Protease provides direct toxicity to CLA. Furthermore, foliar feeding by CLA rapidly sends defensive signal(s) to the roots that trigger belowground accumulation of the mir1, signifying a potential role of long-distance signaling in maize defense against the phloem-feeding insects. Collectively, our data indicate that ET-regulated mir1 transcript accumulation, uncoupled from JA, contributed to heightened resistance to CLA in maize. In addition, our results underscore the significance of ET acting as a central node in regulating mir1 expression to different feeding guilds of insect herbivores.<br /> (© 2015 American Society of Plant Biologists. All Rights Reserved.)
- Subjects :
- Animals
Aphids drug effects
Cyclopentanes pharmacology
Gene Expression Regulation, Plant drug effects
Herbivory drug effects
Inbreeding
Models, Biological
Oxylipins pharmacology
Phloem drug effects
Plant Exudates metabolism
Plant Leaves drug effects
Plant Proteins genetics
Salicylic Acid pharmacology
Signal Transduction drug effects
Zea mays drug effects
Zea mays genetics
Aphids physiology
Ethylenes pharmacology
Phloem parasitology
Plant Leaves parasitology
Plant Proteins metabolism
Zea mays immunology
Zea mays parasitology
Subjects
Details
- Language :
- English
- ISSN :
- 1532-2548
- Volume :
- 169
- Issue :
- 1
- Database :
- MEDLINE
- Journal :
- Plant physiology
- Publication Type :
- Academic Journal
- Accession number :
- 26253737
- Full Text :
- https://doi.org/10.1104/pp.15.00958