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豆象产卵介导的豇豆荚防御反应。

Bruchid beetle ovipositioning mediated defense responses in black gram pods.

机构信息

Department of Agricultural Biotechnology, Assam Agricultural University, Jorhat, Assam, India.

Office of the ICAR-National Professor (Norman Borlaug Chair) and DBT-AAU Centre, Assam Agricultural University, Jorhat, 785013, India.

出版信息

BMC Plant Biol. 2021 Jan 11;21(1):38. doi: 10.1186/s12870-020-02796-4.

Abstract

BACKGROUND

Black gram [Vigna mungo (L)] seeds are a rich source of digestible protein and dietary fibre, both for human and animal consumption. However, the quality and quantity of the Vigna seeds are severely affected by bruchid beetles during storage. Therefore, analyses of the expression of the bruchid induced transcript dynamics in black gram pods would be helpful to understand the underlying defense mechanism against bruchid oviposition.

RESULTS

We used the RNAseq approach to survey the changes in transcript profile in the developing seeds of a moderately resistant cultivar IC-8219 against bruchid oviposition using a susceptible cultivar T-9 as a control. A total of 96,084,600 and 99,532,488 clean reads were generated from eight (4 each) samples of IC-8219 and T-9 cultivar, respectively. Based on the BLASTX search against the NR database, 32,584 CDSs were generated of which 31,817 CDSs were significantly similar to Vigna radiata, a close relative of Vigna mungo. The IC-8219 cultivar had 630 significantly differentially expressed genes (DEGs) of which 304 and 326 genes up and down-regulated, respectively. However, in the T-9 cultivar, only 168 DEGs were identified of which 142 and 26 genes up and down-regulated, respectively. The expression analyses of 10 DEGs by qPCR confirmed the accuracy of the RNA-Seq data. Gene Ontology and KEGG pathway analyses helped us to better understand the role of these DEGs in oviposition mediated defense response of black gram. In both the cultivars, the most significant transcriptomic changes in response to the oviposition were related to the induction of defense response genes, transcription factors, secondary metabolites, enzyme inhibitors, and signal transduction pathways. It appears that the bruchid ovipositioning mediated defense response in black gram is induced by SA signaling pathways and defense genes such as defensin, genes for secondary metabolites, and enzyme inhibitors could be potential candidates for resistance to bruchids.

CONCLUSION

We generated a transcript profile of immature black gram pods upon bruchid ovipositioning by de novo assembly and studied the underlying defense mechanism of a moderately resistant cultivar.

摘要

背景

绿豆[Vigna mungo(L)]种子是人类和动物可消化蛋白质和膳食纤维的丰富来源。 然而,在储存过程中,豆象甲虫会严重影响绿豆种子的质量和数量。 因此,分析绿豆荚中受豆象诱导的转录动态表达将有助于了解其对豆象产卵的潜在防御机制。

结果

我们使用 RNAseq 方法,以中度抗性品种 IC-8219 为对照,以敏感品种 T-9 为对照,研究了抗豆象产卵的发育种子的转录谱变化。 分别从 IC-8219 和 T-9 品种的 8 个(每个 4 个)样本中生成了 96084600 和 99532488 个清洁读数。 根据与 NR 数据库的 BLASTX 搜索,生成了 32584 个 CDS,其中 31817 个 CDS 与 Vigna radiata 显着相似,Vigna radiata 是 Vigna mungo 的近亲。 IC-8219 品种有 630 个显着差异表达基因(DEGs),其中 304 个和 326 个基因分别上调和下调。 然而,在 T-9 品种中,仅鉴定出 168 个 DEGs,其中 142 个和 26 个基因分别上调和下调。 通过 qPCR 对 10 个 DEG 的表达分析证实了 RNA-Seq 数据的准确性。 基因本体论和 KEGG 途径分析帮助我们更好地理解这些 DEG 在绿豆产卵介导的防御反应中的作用。 在这两个品种中,对产卵的最显着转录组变化与防御反应基因、转录因子、次生代谢物、酶抑制剂和信号转导途径的诱导有关。 似乎绿豆象产卵介导的防御反应是由 SA 信号通路诱导的,防御基因如防御素、次生代谢物基因和酶抑制剂可能是抗豆象的潜在候选基因。

结论

我们通过从头组装生成了绿豆荚受豆象产卵影响的转录谱,并研究了中度抗性品种的潜在防御机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e38d/7802178/4636ec2e8a0b/12870_2020_2796_Fig1_HTML.jpg

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