Edgar M. Suárez-González , Paola A. Palmeros Suárez , José M. Cruz-Rubio , Norma A. Martínez-Gallardo , Ismael Cisneros Hernández , John P. Délano-Frier , Juan F. Gómez-Leyva
{"title":"蔗糖或胁迫相关激发子诱导龙舌兰植株不同程度的果聚糖积累及果聚糖生物合成、转化酶和防御基因的表达","authors":"Edgar M. Suárez-González , Paola A. Palmeros Suárez , José M. Cruz-Rubio , Norma A. Martínez-Gallardo , Ismael Cisneros Hernández , John P. Délano-Frier , Juan F. Gómez-Leyva","doi":"10.1016/j.aggene.2016.09.003","DOIUrl":null,"url":null,"abstract":"<div><p><span>The effect of short-term treatments with non-toxic concentrations of chemical elicitors of carbon mobilization and/or defense responses on fructan accumulation and complexity was analyzed in </span><span><em>Agave tequilana</em></span><span><span> plantlets<span><span>. These included sucrose (ExSuc), salicylic acid (SA), and methyl jasmonate (MeJA). Methyl viologen (MV), an </span>oxidative-stress<span> elicitor, was also tested. Stems of ExSuc- and SA-treated </span></span></span>agaves accumulated fructan with contrasting degree of polymerization (DP), being higher (DP12) in the ExSuc treatment. The difference agreed with 1-SST, 6G-FFT and 6-fructan exohydrolase (FEH) gene expression patterns. Thus, a strong, 6G-FFT expression detected 6</span> <span><span>days after treatment (DAT), coupled to a systematic repression of FEH genes occurred in Ex-Suc treated agaves. Conversely, SA treatment induced maximum 6G-FFT expression and a transitory induction of FEH genes 2 DAT. MV also induced an accumulation of low-DP fructans 6 DAT. Additionally, it stimulated the highest fructan accumulation in leaves. Contrariwise, MeJA led to a depletion of soluble non-structural carbohydrates (NSCs) and fructan, particularly in leaves. An inverse relationship between high invertase and FEH </span>gene expression levels<span> and minimal NSCs and fructan reserves was observed in response to MeJA. Low DP fructan accumulation by MV could not be attributed to a measurable oxidative stress. Still, high antioxidant enzyme activity, indirectly manifesting oxidative stress, coincided with fructan accumulation in MV-treated agaves. High invertase and FEH expression levels induced by MeJA in leaves, and to a lesser degree by SA and MV, coincided with transcript accumulation of defense-related genes, and were, to a certain extent, in accordance with the “sweet immunity” concept, linking sugar and defense signaling.</span></span></p></div>","PeriodicalId":37751,"journal":{"name":"Agri Gene","volume":"2 ","pages":"Pages 17-28"},"PeriodicalIF":0.0000,"publicationDate":"2016-12-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://sci-hub-pdf.com/10.1016/j.aggene.2016.09.003","citationCount":"9","resultStr":"{\"title\":\"Differential fructan accumulation and expression of fructan biosynthesis, invertase and defense genes is induced in Agave tequilana plantlets by sucrose or stress-related elicitors\",\"authors\":\"Edgar M. Suárez-González , Paola A. Palmeros Suárez , José M. Cruz-Rubio , Norma A. Martínez-Gallardo , Ismael Cisneros Hernández , John P. Délano-Frier , Juan F. Gómez-Leyva\",\"doi\":\"10.1016/j.aggene.2016.09.003\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><p><span>The effect of short-term treatments with non-toxic concentrations of chemical elicitors of carbon mobilization and/or defense responses on fructan accumulation and complexity was analyzed in </span><span><em>Agave tequilana</em></span><span><span> plantlets<span><span>. These included sucrose (ExSuc), salicylic acid (SA), and methyl jasmonate (MeJA). Methyl viologen (MV), an </span>oxidative-stress<span> elicitor, was also tested. Stems of ExSuc- and SA-treated </span></span></span>agaves accumulated fructan with contrasting degree of polymerization (DP), being higher (DP12) in the ExSuc treatment. The difference agreed with 1-SST, 6G-FFT and 6-fructan exohydrolase (FEH) gene expression patterns. Thus, a strong, 6G-FFT expression detected 6</span> <span><span>days after treatment (DAT), coupled to a systematic repression of FEH genes occurred in Ex-Suc treated agaves. Conversely, SA treatment induced maximum 6G-FFT expression and a transitory induction of FEH genes 2 DAT. MV also induced an accumulation of low-DP fructans 6 DAT. Additionally, it stimulated the highest fructan accumulation in leaves. Contrariwise, MeJA led to a depletion of soluble non-structural carbohydrates (NSCs) and fructan, particularly in leaves. An inverse relationship between high invertase and FEH </span>gene expression levels<span> and minimal NSCs and fructan reserves was observed in response to MeJA. Low DP fructan accumulation by MV could not be attributed to a measurable oxidative stress. Still, high antioxidant enzyme activity, indirectly manifesting oxidative stress, coincided with fructan accumulation in MV-treated agaves. High invertase and FEH expression levels induced by MeJA in leaves, and to a lesser degree by SA and MV, coincided with transcript accumulation of defense-related genes, and were, to a certain extent, in accordance with the “sweet immunity” concept, linking sugar and defense signaling.</span></span></p></div>\",\"PeriodicalId\":37751,\"journal\":{\"name\":\"Agri Gene\",\"volume\":\"2 \",\"pages\":\"Pages 17-28\"},\"PeriodicalIF\":0.0000,\"publicationDate\":\"2016-12-01\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"https://sci-hub-pdf.com/10.1016/j.aggene.2016.09.003\",\"citationCount\":\"9\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"Agri Gene\",\"FirstCategoryId\":\"1085\",\"ListUrlMain\":\"https://www.sciencedirect.com/science/article/pii/S2352215116300277\",\"RegionNum\":0,\"RegionCategory\":null,\"ArticlePicture\":[],\"TitleCN\":null,\"AbstractTextCN\":null,\"PMCID\":null,\"EPubDate\":\"\",\"PubModel\":\"\",\"JCR\":\"Q1\",\"JCRName\":\"Agricultural and Biological Sciences\",\"Score\":null,\"Total\":0}","platform":"Semanticscholar","paperid":null,"PeriodicalName":"Agri Gene","FirstCategoryId":"1085","ListUrlMain":"https://www.sciencedirect.com/science/article/pii/S2352215116300277","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q1","JCRName":"Agricultural and Biological Sciences","Score":null,"Total":0}
Differential fructan accumulation and expression of fructan biosynthesis, invertase and defense genes is induced in Agave tequilana plantlets by sucrose or stress-related elicitors
The effect of short-term treatments with non-toxic concentrations of chemical elicitors of carbon mobilization and/or defense responses on fructan accumulation and complexity was analyzed in Agave tequilana plantlets. These included sucrose (ExSuc), salicylic acid (SA), and methyl jasmonate (MeJA). Methyl viologen (MV), an oxidative-stress elicitor, was also tested. Stems of ExSuc- and SA-treated agaves accumulated fructan with contrasting degree of polymerization (DP), being higher (DP12) in the ExSuc treatment. The difference agreed with 1-SST, 6G-FFT and 6-fructan exohydrolase (FEH) gene expression patterns. Thus, a strong, 6G-FFT expression detected 6days after treatment (DAT), coupled to a systematic repression of FEH genes occurred in Ex-Suc treated agaves. Conversely, SA treatment induced maximum 6G-FFT expression and a transitory induction of FEH genes 2 DAT. MV also induced an accumulation of low-DP fructans 6 DAT. Additionally, it stimulated the highest fructan accumulation in leaves. Contrariwise, MeJA led to a depletion of soluble non-structural carbohydrates (NSCs) and fructan, particularly in leaves. An inverse relationship between high invertase and FEH gene expression levels and minimal NSCs and fructan reserves was observed in response to MeJA. Low DP fructan accumulation by MV could not be attributed to a measurable oxidative stress. Still, high antioxidant enzyme activity, indirectly manifesting oxidative stress, coincided with fructan accumulation in MV-treated agaves. High invertase and FEH expression levels induced by MeJA in leaves, and to a lesser degree by SA and MV, coincided with transcript accumulation of defense-related genes, and were, to a certain extent, in accordance with the “sweet immunity” concept, linking sugar and defense signaling.
Agri GeneAgricultural and Biological Sciences-Agricultural and Biological Sciences (miscellaneous)
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Agri Gene publishes papers that focus on the regulation, expression, function and evolution of genes in crop plants, farm animals, and agriculturally important insects and microorganisms. Agri Gene strives to be a diverse journal and topics in multiple fields will be considered for publication so long as their main focus is on agriculturally important organisms (plants, animals, insects, or microorganisms). Although not limited to the following, some examples of potential topics include: Gene discovery and characterization. Genetic markers to guide traditional breeding. Genetic effects of transposable elements. Evolutionary genetics, molecular evolution, population genetics, and phylogenetics. Profiling of gene expression and genetic variation. Biotechnology and crop or livestock improvement. Genetic improvement of biological control microorganisms. Genetic control of secondary metabolic pathways and metabolic enzymes of crop pathogens. Transcription analysis of beneficial or pest insect developmental stages Agri Gene encourages submission of novel manuscripts that present a reasonable level of analysis, functional relevance and/or mechanistic insight. Agri Gene also welcomes papers that have predominantly a descriptive component but improve the essential basis of knowledge for subsequent functional studies, or which provide important confirmation of recently published discoveries provided that the information is new.