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Identification of the trehalose-6-phosphate synthase (tps) gene in desiccation tolerant and intolerant tardigrades

机译:海藻糖6-磷酸合酶(tps)基因在耐旱和不耐旱的缓坡中的鉴定

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摘要

The presence of the gene coding for trehalose-6-phosphate synthase (tps) was determined for the first time in Tardigrada in twelve species belonging to both Heterotardigrada and Eutardigrada. The tps gene was found in all semiterrestrial and anhydrobiotic species examined, correlating trehalose presence with anhydrobiotic ability. In contrast, tps was not detected in two limnic and desiccation intolerant species. The surprising presence of tps in another limnic and desiccation intolerant species, Dactylobiotus parthenogeneticus, allowed us to infer that in tardigrades trehalose could be produced and involved, not just in anhydrobiosis, but also in the regulation of other biological functions, such as encystment. Our findings, integrated with literature data, indicate that anhydrobiotic ability in tardigrades can depend on the combined action of numerous different molecules, only partially identified. With nucleotide tps sequences, it is impossible to infer phylogenetic relationships inside the phylum Tardigrada, while amino acid sequences further support the relationship between Tardigrada and Pancrustacea.
机译:在Tar​​digrada中首次确定了十二种海藻糖6-磷酸合酶(tps)编码基因的存在,这十二种物种分别属于Heterotardigrada和Eutardigrada。在所有检查过的半陆地和无水生物物种中都发现了tps基因,这与海藻糖的存在与无水生物能力相关。相反,在两个不耐干燥的植物中未检测到tps。 tps在另一种对床和干燥不耐受的物种Dactylobiotus parthenogeneticus中的惊人存在,使我们推断出,在缓坡中可以产生并参与海藻糖的产生,不仅与脱水生物有关,而且还与其他生物功能的调节有关,例如包囊。我们的发现与文献数据相结合,表明缓凝剂中的抗生水能力可能取决于许多不同分子的联合作用,只有部分被鉴定出来。使用核苷酸tps序列,不可能推断出塔迪格拉门内的系统发育关系,而氨基酸序列进一步支持塔迪格拉塔和潘甲壳纲之间的关系。

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