首页> 外文期刊>The New Phytologist >Poplar defense against insects: genome analysis, full-length cDNA cloning, and transcriptome and protein analysis of the poplar Kunitz-type protease inhibitor family
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Poplar defense against insects: genome analysis, full-length cDNA cloning, and transcriptome and protein analysis of the poplar Kunitz-type protease inhibitor family

机译:杨树对昆虫的防御:杨树Kunitz型蛋白酶抑制剂家族的基因组分析,全长cDNA克隆以及转录组和蛋白质分析

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摘要

Kunitz protease inhibitors (KPIs) feature prominently in poplar defense responses against insects. The increasing availability of genomics resources enabled a comprehensive analysis of the poplar (p)KPI family. Using genome analysis, expressed sequence tag (EST) mining and full-length (FL)cDNA cloning we established an inventory and phylogeny of pKPIs. Microarray and real-time PCR analyses were used to profile pKPI gene expression following real or simulated insect attack. Proteomics of insect midgut content was used to monitor stability of pKPI protein. We identified 31 pKPIs in the genome and validated gene models by EST mining and cloning of 41 unique FLcDNAs. Genome organization of the pKPI family, with six poplar-specific subfamilies, suggests that tandem duplications have played a major role in its expansion. pKPIs are expressed throughout the plant and many are strongly induced by insect attack, although insect-specific signals seem initially to suppress the tree pKPI response. We found substantial peptide coverage for a potentially intact pKPI protein in insect midgut after eating poplar leaves. These results highlight the complexity of an important defense gene family in poplar with regard to gene family size, differential constitutive and insect-induced gene expression, and resilience of at least one pKPI protein to digestion by herbivores.
机译:Kunitz蛋白酶抑制剂(KPI)在对昆虫的杨树防御反应中具有显着特征。基因组学资源的可用性不断提高,因此可以对杨(p)KPI家族进行全面分析。使用基因组分析,表达的序列标签(EST)挖掘和全长(FL)cDNA克隆,我们建立了pKPI的清单和系统发育。使用微阵列和实时PCR分析来分析真实或模拟昆虫攻击后的pKPI基因表达。昆虫中肠含量的蛋白质组学用于监测pKPI蛋白的稳定性。我们在基因组中鉴定出31个pKPI,并通过EST挖掘和克隆41个独特FLcDNA验证了基因模型。 pKPI家族的基因组组织具有六个杨树特有的亚家族,表明串联重复在其扩展中发挥了重要作用。尽管昆虫特异性信号最初似乎抑制了树中的pKPI响应,但pKPIs在整个植物中都有表达,许多是由昆虫攻击强烈诱导的。我们发现在食用白杨树叶后昆虫中肠中潜在完整的pKPI蛋白具有相当大的肽覆盖率。这些结果凸显了杨树中重要防御基因家族的复杂性,包括基因家族的大小,组成型和昆虫诱导的差异基因表达以及至少一种pKPI蛋白对草食动物消化的适应力。

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