首页> 外文OA文献 >Structure and expression of GSL1 and GSL2 genes encoding gibberellin stimulated-like proteins in diploid and highly heterozygous tetraploid potato reveals their highly conserved and essential status
【2h】

Structure and expression of GSL1 and GSL2 genes encoding gibberellin stimulated-like proteins in diploid and highly heterozygous tetraploid potato reveals their highly conserved and essential status

机译:二倍体和高度杂合四倍体马铃薯中编码赤霉素刺激样蛋白的GSL1和GSL2基因的结构和表达表明它们高度保守且必不可少的状态

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Background: GSL1 and GSL2, Gibberellin Stimulated-Like proteins (also known as Snakin-1 and Snakin-2), are cysteine-rich peptides from potato (Solanum tuberosum L.) with antimicrobial properties. Similar peptides in other species have been implicated in diverse biological processes and are hypothesised to play a role in several aspects of plant development, plant responses to biotic or abiotic stress through their participation in hormone crosstalk, and redox homeostasis. To help resolve the biological roles of GSL1 and GSL2 peptides we have undertaken an in depth analysis of the structure and expression of these genes in potato. Results: We have characterised the full length genes for both GSL1 (chromosome 4) and GSL2 (chromosome 1) from diploid and tetraploid potato using the reference genome sequence of potato, coupled with further next generation sequencing of four highly heterozygous tetraploid cultivars. The frequency of SNPs in GSL1 and GSL2 were very low with only one SNP every 67 and 53 nucleotides in exon regions of GSL1 and GSL2, respectively. Analysis of comprehensive RNA-seq data substantiated the role of specific promoter motifs in transcriptional control of gene expression. Expression analysis based on the frequency of next generation sequence reads established that GSL2 was expressed at a higher level than GSL1 in 30 out of 32 tissue and treatment libraries. Furthermore, both the GSL1 and GSL2 genes exhibited constitutive expression that was not up regulated in response to biotic or abiotic stresses, hormone treatments or wounding. Potato transformation with antisense knock-down expression cassettes failed to recover viable plants. Conclusions: The potato GSL1 and GSL2 genes are very highly conserved suggesting they contribute to an important biological function. The known antimicrobial activity of the GSL proteins, coupled with the FPKM analysis from RNA-seq data, implies that both genes contribute to the constitutive defence barriers in potatoes. The lethality of antisense knock-down expression of GSL1 and GSL2, coupled with the rare incidence of SNPs in these genes, suggests an essential role for this gene family. These features are consistent with the GSL protein family playing a role in several aspects of plant development in addition to plant defence against biotic stresses. © 2014 Meiyalaghan et al.; licensee BioMed Central Ltd.
机译:背景:GSL1和GSL2,类似赤霉素刺激蛋白(也称为Snakin-1和Snakin-2),是马铃薯(马铃薯)的富含半胱氨酸的肽,具有抗菌特性。其他物种中的类似肽也与多种生物过程有关,并被认为在植物发育,植物通过参与激素串扰对生物或非生物胁迫的反应以及氧化还原稳态等方面发挥作用。为了帮助解决GSL1和GSL2肽的生物学作用,我们对这些基因在马铃薯中的结构和表达进行了深入分析。结果:我们已经使用马铃薯的参考基因组序列表征了来自二倍体和四倍体马铃薯的GSL1(染色体4)和GSL2(染色体1)的全长基因,并进一步对四个高度杂合的四倍体品种进行了下一代测序。 GSL1和GSL2中SNP的频率非常低,分别在GSL1和GSL2的外显子区域每67和53个核苷酸只有一个SNP。全面的RNA序列数据分析证实了特定启动子基序在基因表达转录控制中的作用。基于下一代序列读取频率的表达分析确定,在32个组织和治疗文库中的30个中,GSL2的表达水平高于GSL1。此外,GSL1和GSL2基因均显示出组成型表达,该组成型表达不响应生物或非生物胁迫,激素治疗或创伤而被上调。用反义敲低表达盒进行的马铃薯转化未能恢复有活力的植物。结论:马铃薯的GSL1和GSL2基因非常保守,表明它们有助于重要的生物学功能。 GSL蛋白的已知抗菌活性,再加上RNA-seq数据中的FPKM分析,表明这两个基因都对马铃薯的组成型防御屏障有贡献。 GSL1和GSL2的反义敲低表达的致死性,再加上这些基因中SNP的罕见发生,提示了该基因家族的重要作用。这些特征与GSL蛋白家族在植物抵抗生物胁迫的防御作用之外,还在植物发育的多个方面发挥作用相一致。 ©2014 Meiyalaghan等;被许可人BioMed Central Ltd.

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号