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长喙壳科中的三个属分别是三种具有大型、复杂菌囊的食菌小蠹虫独立谱系的共生体。

Three genera in the Ceratocystidaceae are the respective symbionts of three independent lineages of ambrosia beetles with large, complex mycangia.

作者信息

Mayers Chase G, McNew Douglas L, Harrington Thomas C, Roeper Richard A, Fraedrich Stephen W, Biedermann Peter H W, Castrillo Louela A, Reed Sharon E

机构信息

Department of Plant Pathology and Microbiology, Iowa State University, 351 Bessey Hall, Ames, IA 50011, USA.

Department of Plant Pathology and Microbiology, Iowa State University, 351 Bessey Hall, Ames, IA 50011, USA.

出版信息

Fungal Biol. 2015 Nov;119(11):1075-1092. doi: 10.1016/j.funbio.2015.08.002. Epub 2015 Aug 19.

Abstract

The genus Ambrosiella accommodates species of Ceratocystidaceae (Microascales) that are obligate, mutualistic symbionts of ambrosia beetles, but the genus appears to be polyphyletic and more diverse than previously recognized. In addition to Ambrosiella xylebori, Ambrosiella hartigii, Ambrosiella beaveri, and Ambrosiella roeperi, three new species of Ambrosiella are described from the ambrosia beetle tribe Xyleborini: Ambrosiella nakashimae sp. nov. from Xylosandrus amputatus, Ambrosiella batrae sp. nov. from Anisandrus sayi, and Ambrosiella grosmanniae sp. nov. from Xylosandrus germanus. The genus Meredithiella gen. nov. is created for symbionts of the tribe Corthylini, based on Meredithiella norrisii sp. nov. from Corthylus punctatissimus. The genus Phialophoropsis is resurrected to accommodate associates of the Xyloterini, including Phialophoropsis trypodendri from Trypodendron scabricollis and Phialophoropsis ferruginea comb. nov. from Trypodendron lineatum. Each of the ten named species was distinguished by ITS rDNA barcoding and morphology, and the ITS rDNA sequences of four other putative species were obtained with Ceratocystidaceae-specific primers and template DNA extracted from beetles or galleries. These results support the hypothesis that each ambrosia beetle species with large, complex mycangia carries its own fungal symbiont. Conidiophore morphology and phylogenetic analyses using 18S (SSU) rDNA and TEF1α DNA sequences suggest that these three fungal genera within the Ceratocystidaceae independently adapted to symbiosis with the three respective beetle tribes. In turn, the beetle genera with large, complex mycangia appear to have evolved from other genera in their respective tribes that have smaller, less selective mycangia and are associated with Raffaelea spp. (Ophiostomatales).

摘要

Ambrosiella属包含角囊菌科(小囊菌目)的物种,这些物种是食菌小蠹的专性互利共生菌,但该属似乎是多系的,且比之前认为的更加多样。除了木栖长蠹内共生菌、哈氏长蠹内共生菌、海狸长蠹内共生菌和罗氏长蠹内共生菌外,还从食菌小蠹族木小蠹族中描述了3种新的Ambrosiella属物种:截尾材小蠹的中岛Ambrosiella属新种、萨氏材小蠹的巴特拉Ambrosiella属新种和德国材小蠹的格罗斯曼Ambrosiella属新种。基于来自点刻材小蠹的诺里斯Meredithiella属新种,为材小蠹族的共生菌创建了Meredithiella属新属。恢复了瓶梗拟盘多毛孢属以容纳木小蠹族的共生菌,包括粗糙瘤胸材小蠹的瓶梗拟盘多毛孢和细纹瘤胸材小蠹的铁锈色瓶梗拟盘多毛孢新组合。这10个命名的物种均通过ITS rDNA条形码和形态学进行区分,并且使用角囊菌科特异性引物和从甲虫或虫道中提取的模板DNA获得了另外4个假定物种的ITS rDNA序列。这些结果支持了这样的假说,即每种具有大型、复杂菌囊的食菌小蠹物种都携带自己的真菌共生菌。分生孢子形态以及使用18S(SSU)rDNA和TEF1α DNA序列进行的系统发育分析表明,角囊菌科内的这3个真菌属分别独立地适应了与3个相应甲虫族的共生关系。反过来,具有大型、复杂菌囊的甲虫属似乎是从其各自族中的其他属进化而来的,这些属具有较小、选择性较低的菌囊,并与类 Raffaelea属(长喙壳目)相关联。

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