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The Draft Genome of the Invasive Walking Stick, Medauroidea extradendata, Reveals Extensive Lineage-Specific Gene Family Expansions of Cell Wall Degrading Enzymes in Phasmatodea

机译:侵袭性拐杖的基因组草案,Medauroidea Extradata,揭示了Phasmatodea中细胞壁降解酶的广泛的谱系特异性基因族膨胀

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摘要

Plant cell wall components are the most abundant macromolecules on Earth. The study of the breakdown of these molecules is thus a central question in biology. Surprisingly, plant cell wall breakdown by herbivores is relatively poorly understood, as nearly all early work focused on the mechanisms used by symbiotic microbes to breakdown plant cell walls in insects such as termites. Recently, however, it has been shown that many organisms make endogenous cellulases. Insects, and other arthropods, in particular have been shown to express a variety of plant cell wall degrading enzymes in many gene families with the ability to break down all the major components of the plant cell wall. Here we report the genome of a walking stick, Medauroidea extradentata, an obligate herbivore that makes uses of endogenously produced plant cell wall degrading enzymes. We present a draft of the 3.3Gbp genome along with an official gene set that contains a diversity of plant cell wall degrading enzymes. We show that at least one of the major families of plant cell wall degrading enzymes, the pectinases, have undergone a striking lineage-specific gene family expansion in the Phasmatodea. This genome will be a useful resource for comparative evolutionary studies with herbivores in many other clades and will help elucidate the mechanisms by which metazoans breakdown plant cell wall components.
机译:植物细胞壁组分是地球上最丰富的大分子。因此,对这些分子的分解的研究是生物学中的核心问题。令人惊讶的是,由食草纲的植物细胞壁崩溃相对较差地理解,几乎所有早期工作都集中在共生微生物中使用的机制,使植物细胞壁在昆虫如白蚁中的碎片细胞壁上。然而,最近,已经表明许多生物制造内源性纤维素酶。昆虫和其他节肢动物,特别是表现出许多基因家族中的各种植物细胞壁降解酶,其能够分解植物细胞壁的所有主要成分。在这里,我们报告了手杖,Medauroidea Extradentata的基因组,这是一种迫使食草食草,其利用内源性产生的植物细胞壁降解酶。我们提出了3.3GBP基因组的草案以及官方基因集,含有植物细胞壁降解酶的多样性。我们表明,至少有一个植物细胞壁降解酶,果胶酶的主要系列,在Phasmatodea中经历了惊人的谱系特异性基因族膨胀。这种基因组将是在许多其他植物中与食草动物进行比较进化研究的有用资源,并有助于阐明美容分解植物细胞壁组分的机制。

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