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The Gastrodia elata genome provides insights into plant adaptation to heterotrophy

机译:天麻的基因组基因为植物适应异养提供了见识

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摘要

We present the 1.06 Gb sequenced genome of Gastrodia elata, an obligate mycoheterotrophic plant, which contains 18,969 protein-coding genes. Many genes conserved in other plant species have been deleted from the G. elata genome, including most of those for photosynthesis. Additional evidence of the influence of genome plasticity in the adaptation of this mycoheterotrophic lifestyle is evident in the large number of gene families that are expanded in G. elata, including glycoside hydrolases and urease that likely facilitate the digestion of hyphae are expanded, as are genes associated with strigolactone signaling, and ATPases that may contribute to the atypical energy metabolism. We also find that the plastid genome of G. elata is markedly smaller than that of green plant species while its mitochondrial genome is one of the largest observed to date. Our report establishes a foundation for studying adaptation to a mycoheterotrophic lifestyle.
机译:我们提出了天麻的1.06 Gb测序基因组,天麻是一种专性的真菌异养植物,它包含18969个蛋白质编码基因。其他植物物种中许多保守的基因已经从G. elata基因组中删除,包括大多数用于光合作用的基因。基因组可塑性在适应这种异养营养型生活方式中的影响的其他证据在G. elata中扩展的大量基因家族中很明显,包括可能促进菌丝消化的糖苷水解酶和脲酶,以及基因扩展了。与strigolactone信号转导有关,以及可能有助于非典型能量代谢的ATPase。我们还发现,G。elata的质体基因组明显小于绿色植物物种,而其线粒体基因组则是迄今为止观察到的最大的质体基因组之一。我们的报告为研究适应异养性生活方式奠定了基础。

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