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来自狄斯瓦螨(Varroa destructor,Anderson & Trueman)的三个万圣节基因及其在繁殖过程中的表达。

Three Halloween genes from the Varroa mite, Varroa destructor (Anderson & Trueman) and their expression during reproduction.

作者信息

Cabrera A R, Shirk P D, Evans J D, Hung K, Sims J, Alborn H, Teal P E A

机构信息

Entomology and Nematology Department, University of Florida, Gainesville, FL, 32611, USA.

出版信息

Insect Mol Biol. 2015 Jun;24(3):277-92. doi: 10.1111/imb.12155. Epub 2014 Dec 8.

Abstract

The ecdysteroid biosynthetic pathway involves sequential enzymatic hydroxylations by a group of enzymes collectively known as Halloween gene proteins. Complete sequences for three Halloween genes, spook (Vdspo), disembodied (Vddib) and shade (Vdshd), were identified in varroa mites and sequenced. Phylogenetic analyses of predicted amino acid sequences for Halloween orthologues showed that the acarine orthologues were distantly associated with insect and crustacean clades indicating that acarine genes had more ancestral characters. The lack of orthologues or pseudogenes for remaining genes suggests these pathway elements had not evolved in ancestral arthropods. Vdspo transcript levels were highest in gut tissues, while Vddib transcript levels were highest in ovary-lyrate organs. In contrast, Vdshd transcript levels were lower overall but present in both gut and ovary-lyrate organs. All three transcripts were present in eggs removed from gravid female mites. A brood cell invasion assay was developed for acquiring synchronously staged mites. Mites within 4 h of entering a brood cell had transcript levels of all three that were not significantly different from mites on adult bees. These analyses suggest that varroa mites may be capable of modifying 7-dehydro-cholesterol precursor and hydroxylations of other steroid precursors, but whether the mites directly produce ecdysteroid precursors and products remains undetermined.

摘要

蜕皮甾体生物合成途径涉及一组统称为万圣节基因蛋白的酶的顺序酶促羟基化反应。在蜜蜂微孢子虫中鉴定并测序了三个万圣节基因spook(Vdspo)、disembodied(Vddib)和shade(Vdshd)的完整序列。对万圣节同源物预测氨基酸序列的系统发育分析表明,蜱螨亚纲的同源物与昆虫和甲壳类分支的关系较远,这表明蜱螨亚纲的基因具有更多的祖先特征。其余基因缺乏同源物或假基因,表明这些途径元件在节肢动物祖先中并未进化。Vdspo转录水平在肠道组织中最高,而Vddib转录水平在卵巢溶解器官中最高。相比之下,Vdshd转录水平总体较低,但在肠道和卵巢溶解器官中均有表达。所有三种转录本都存在于从怀孕雌螨中取出的卵中。开发了一种育雏细胞侵袭试验以获取同步发育阶段的螨虫。进入育雏细胞4小时内的螨虫,其所有三种转录本的水平与成年蜜蜂上的螨虫没有显著差异。这些分析表明,蜜蜂微孢子虫可能能够修饰7-脱氢胆固醇前体和其他类固醇前体的羟基化反应,但螨虫是否直接产生蜕皮甾体前体和产物仍未确定。

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