Control of Aspergillus flavus growth and aflatoxin production in transgenic maize kernels expressing a tachyplesin-derived synthetic peptide, AGM182
Tài liệu tham khảo
CAST, 2003
Wu, 2006, Mycotoxin reduction in Bt corn: potential economic, health, and regulatory impacts, Transgenic Res., 15, 277, 10.1007/s11248-005-5237-1
Mitchell, 2016, Potential economic losses to the USA corn industry from aflatoxin contamination, Food Addit. Contam.: Part A, 33, 540, 10.1080/19440049.2016.1138545
Udomkun, 2017, Innovative technologies to manage aflatoxins in foods and feeds and the profitability of application—a review, Food Control, 76, 127, 10.1016/j.foodcont.2017.01.008
Marcos, 2008, Identification and rational design of novel antimicrobial peptides for plant protection, Annu. Rev. Phytopathol., 46, 273, 10.1146/annurev.phyto.121307.094843
Rajasekaran, 2009, Aflatoxin control through transgenic approaches, Toxin Rev., 28, 89, 10.1080/15569540802469581
Rajasekaran, 2012, Strategies for controlling plant diseases and mycotoxin contamination using antimicrobial synthetic peptides, 295
Montesinos, 2007, Antimicrobial peptides and plant disease control, FEMS Microbiol. Lett., 270, 1, 10.1111/j.1574-6968.2007.00683.x
Cary, 2011, Developing resistance to aflatoxin in maize and cottonseed, Toxins (Basel), 3, 678, 10.3390/toxins3060678
Zasloff, 2002, Antimicrobial peptides of multicellular organisms, Nature, 415, 389, 10.1038/415389a
Hancock, 2006, Antimicrobial and host-defense peptides as new anti-infective therapeutic strategies, Nat. Biotechnol., 24, 1551, 10.1038/nbt1267
Ganz, 2003, Defensins: antimicrobial peptides of innate immunity, Nat. Rev. Immune, 3, 710, 10.1038/nri1180
Barr, 1995, Activity of lytic peptides against intracellular Trypanosoma cruzi amastigotes in vitro and parasitemias in mice, J. Parasitol., 81, 974, 10.2307/3284051
Edwards, 2016, Contribution of amphipathicity and hydrophobicity to the antimicrobial activity and cytotoxicity of beta-hairpin peptides, ACS Infect. Dis., 2, 442, 10.1021/acsinfecdis.6b00045
Schwab, 1999, In vitro activities of designed antimicrobial peptides against multidrug-resistant cystic fibrosis pathogens, Antimicrob. Agents Chemother., 43, 1435, 10.1128/AAC.43.6.1435
DeLucca, 1998, Fungicidal properties, sterol binding, and proteolytic resistance of the synthetic peptide D4E1, Can. J. Microbiol., 44, 514, 10.1139/w98-032
Yeaman, 2003, Mechanisms of antimicrobial peptide action and resistance, Pharmacol. Rev., 55, 27, 10.1124/pr.55.1.2
Cary, 2000, Transgenic expression of a gene encoding a synthetic antimicrobial peptide results in inhibition of fungal growth in vitro and in planta, Plant Sci., 154, 171, 10.1016/S0168-9452(00)00189-8
Rajasekaran, 2001, Broad-spectrum antimicrobial activity in vitro of the synthetic peptide D4E1, J. Agric. Food Chem., 49, 2799, 10.1021/jf010154d
Rajasekaran, 2005, Disease resistance conferred by the expression of a gene encoding a synthetic peptide in transgenic cotton (Gossypium hirsutum L.) plants, Plant Biotechnol. J., 3, 545, 10.1111/j.1467-7652.2005.00145.x
2012, 472
Stewart, 2007, Effect of antimicrobial peptides (AMPs) on mycorrhizal associations, AAES Res. Ser., 562, 163
O'Callaghan, 2004, Microbial communities of Solanum tuberosum and magainin-producing transgenic lines, Plant Soil, 266, 47, 10.1007/s11104-005-3714-1
Schubert, 2015, Thanatin confers partial resistance against aflatoxigenic fungi in maize (Zea mays), Transgenic Res., 24, 885, 10.1007/s11248-015-9888-2
Chen, 2015, Discovery and confirmation of genes/proteins associated with maize aflatoxin resistance, World Mycotox. J., 8, 211, 10.3920/WMJ2014.1732
Miyata, 1989, Antimicrobial peptides, isolated from horseshoe crab hemocytes, tachyplesin II, and polyphemusins I and II: chemical structures and biological activity, J. Biochem., 106, 663, 10.1093/oxfordjournals.jbchem.a122913
Wang, 2016, APD3: the antimicrobial peptide database as a tool for research and education, Nucleic Acids Res., 44, D1087, 10.1093/nar/gkv1278
McGinnis, 2005, Transgene induced RNA interference as a tool for plant functional genomics, Methods Enzymol., 392, 1, 10.1016/S0076-6879(04)92001-0
Rogers, 1985, Two barley alpha-amylase gene families are regulated differently in aleurone cells, J. Biol. Chem., 260, 3731, 10.1016/S0021-9258(19)83685-2
Frame, 2011, 327
Rajasekaran, 2017, Fidelity of a simple Liberty leaf-painting assay to validate transgenic maize plants expressing the selectable marker gene, bar, J. Crop Improve., 31, 628, 10.1080/15427528.2017.1327913
Rajasekaran, 2013, Evaluation of resistance to aflatoxin contamination in kernels of maize genotypes using a GFP-expressing Aspergillus flavus strain, World Mycotox. J., 6, 151, 10.3920/WMJ2012.1497
Shu, 2015, Tissue-specific gene expression in maize seeds during colonization by Aspergillus flavus and Fusarium verticillioides, Mol. Plant Pathol., 16, 662, 10.1111/mpp.12224
Rajasekaran, 2008, Development of a GFP-expressing Aspergillus flavus strain to study fungal invasion, colonization, and resistance in cottonseed, Mycopathologia, 165, 89, 10.1007/s11046-007-9085-9
Brown, 1993, Living maize embryo influences accumulation of aflatoxin in maize kernels, J. Food Protect., 56, 967, 10.4315/0362-028X-56.11.967
Rajasekaran, 2009, Transgenic expression of lytic peptides in food and feed crops to control phytopathogens and preharvest mycotoxin contamination, 119
Owens, 1997, A single amino acid substitution in the antimicrobial defense protein cecropin b is associated with diminished degradation by leaf intercellular fluid, Mol. Plant-Microbe Interact., 10, 525, 10.1094/MPMI.1997.10.4.525
Liu, 2001, Response of transgenic Royal Gala apple (Malus x domestica Borkh.) shoots carrying a modified cecropin MB39 gene, to Erwinia amylovora, Plant Cell Rep., 20, 306, 10.1007/s002990100333
Chakrabarti, 2003, MSI-99, a magainin analogue, imparts enhanced disease resistance in transgenic tobacco and banana, Planta, 216, 587, 10.1007/s00425-002-0918-y
Kamo, 2015, Expression of a synthetic antimicrobial peptide D4E1, in Gladiolus plants for resistance to Fusarium oxysporum f. sp. gladioli, Plant Cell Tiss Organ Cult., 121, 459, 10.1007/s11240-015-0716-4
Mejía, 2012, Expression of designed antimicrobial peptides in Theobroma cacao L. trees reduces leaf necrosis caused by Phytophthora spp, 379
Jaynes, 2012, Structure/Function link between cytokine domains and natural and designed lytic peptides: medical promise, 21
Dekruijff, 1990, Cholesterol as target for toxins, Biosci. Rep., 10, 127, 10.1007/BF01116571
Blondelle, 1991, Hemolytic and antimicrobial activities of the twenty-four individual omission analogues of melittin, Biochemistry, 30, 4671, 10.1021/bi00233a006
Hale, 2007, Alternative mechanisms of action of cationic antimicrobial peptides on bacteria, Expert Rev. Anti Infect. Ther., 5, 951, 10.1586/14787210.5.6.951
Rahnamaeian, 2014, Antimicrobial peptides, Plant Signal. Behav., 6, 1325, 10.4161/psb.6.9.16319
Mentag, 2003, Bacterial disease resistance of transgenic hybrid poplar expressing the synthetic antimicrobial peptide D4E1, Tree Physiol., 23, 405, 10.1093/treephys/23.6.405
DeGray, 2001, Expression of an antimicrobial peptide via the chloroplast genome to control phytopathogenic bacteria and fungi, Plant Physiol., 127, 852, 10.1104/pp.010233
Koch, 2012, The antimicrobial peptide thanatin reduces fungal infections in Arabidopsis, J. Phytopathol., 160, 606, 10.1111/j.1439-0434.2012.01946.x
Bedre, 2015, Genome-wide transcriptome analysis of cotton Gossypium hirsutum L.) identifies candidate gene signatures in response to aflatoxin producing fungus Aspergillus flavus, PLoS One, 10, e0138025, 10.1371/journal.pone.0138025
Williams, 2015, Identifying and developing maize germplasm with resistance to accumulation of aflatoxins, World Mycotox. J., 8, 193, 10.3920/WMJ2014.1751
Anonymous, 2017
Gressel, 2018, Suppressing aflatoxin biosynthesis is not a breakthrough if not useful—a perspective, Pest Manage. Sci., 74, 17, 10.1002/ps.4694
Masanga, 2015, Downregulation of transcription factor aflR in Aspergillus flavus confers reduction to aflatoxin accumulation in transgenic maize with alteration of host plant architecture, Plant Cell Rep., 34, 1379, 10.1007/s00299-015-1794-9
Majumdar, 2017, RNA Interference (RNAi) as a potential tool for control of mycotoxin contamination in crop plants: concepts and considerations, Front. Plant Sci., 8, 10.3389/fpls.2017.00200
Thakare, 2017, Aflatoxin-free transgenic maize using host-induced gene silencing, Sci. Adv., 3, 1, 10.1126/sciadv.1602382
Bhatnagar-Mathur, 2015, Biotechnological advances for combating Aspergillus flavus and aflatoxin contamination in crops, Plant Sci., 234, 119, 10.1016/j.plantsci.2015.02.009
Cotty, 1994
Munkvold, 2003, Cultural and genetic approaches to managing mycotoxins in maize, Annu. Rev. Phytopathol., 41, 99, 10.1146/annurev.phyto.41.052002.095510