Induced Tomato Resistance Against Bemisia tabaci Triggered by Salicylic Acid, β-Aminobutyric Acid, and Trichoderma
Author:
Publisher
Springer Science and Business Media LLC
Subject
Insect Science
Link
https://link.springer.com/content/pdf/10.1007/s13744-020-00771-0.pdf
Reference63 articles.
1. Alkooranee JT, Aledan TR, Xiang J, Lu G, Li M (2015) Induced systemic resistance in two genotypes of B. napus and R. alboglabra (RRCC) by Trichoderma isolates against S. sclerotiorum. Am J Plant Sci 6:1662–1674
2. Alkooranee JT, Aledan TR, Ali AK, Lu G, Zhang X, Wu J, Fu C, Li M (2017) Detecting the hormonal pathways in oilseed rape behind induced systemic resistance by Trichoderma harzianum TH12 to Sclerotinia sclerotiorum. PLoS One 12:e0168850
3. Arimura GI, Matsui K, Takabayashi J (2009) Chemical and molecular ecology of herbivore-induced plant volatiles: proximate factors and their ultimate functions. Plant Cell Physiol 50:911–923
4. Baccelli I, Mauch-Mani B (2016) Beta-aminobutyric acid priming of plant defense: the role of ABA and other hormones. Plant Mol Biol 91:703–711
5. Battaglia D, Bossi S, Cascone P, Digilio MC, Prieto JD, Fanti P, Guerrier E, Iodice L, Lingua G, Lorito M, Maffei ME, Massa N, Ruocco M, Sasso R, Trotta V (2013) Tomato below ground-above ground interactions: Trichoderma longibrachiatum affects the performance of Macrosiphum euphorbiae and its natural antagonists. Mol Plant-Microbe Interact 26:1249–1256
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