Letcher Peter M, Longcore Joyce E, Quandt C Alisha, Leite Domingos da Silva, James Timothy Y, Powell Martha J
Department of Biological Sciences, The University of Alabama, Tuscaloosa, AL 35487, USA.
School of Biology and Ecology, University of Maine, Orono, ME 04469, USA.
Fungal Biol. 2017 Jan;121(1):1-10. doi: 10.1016/j.funbio.2016.08.008. Epub 2016 Sep 4.
Rozella is a genus of unwalled endoparasites of a variety of hosts including Oomycota (Stramenopiles), Blastocladiomycota and Chytridiomycota (Fungi), and one green alga (Coleochaete, Chlorophyceae). It currently includes more than 20 formally described species, and no new species of Rozella have been described since 1987. We discovered a new Rozella species parasitizing Rhizoclosmatium globosum (Chytridiales, Chytridiomycota) and investigated its morphology, ultrastructure, and phylogenetic position. Herein named as Rozella rhizoclosmatii sp. nov., the organism induces hypertrophy of the host. Its zoospore is ultrastructurally similar to that of Rozella allomycis, although it has a unique zoospore ultrastructural feature, a lattice of perpendicular rods about the nucleus. The 18S rDNA molecular sequence of R. rhizoclosmatii is similar to that of the previously sequenced 'Rozella ex Rhizoclosmatium'. This is the first study to inclusively characterize a new species of Rozella with morphological, ultrastructural and molecular data. As this is only the second Rozella species to be examined ultrastructurally, and because it is parasitic on a member of Chytridiomycota and not Blastocladiomycota, this research supports the conservative nature of zoospore ultrastructure to help define the genus.
罗兹菌属是一类无细胞壁的内寄生菌,寄生于多种宿主,包括卵菌纲(不等鞭毛类)、芽枝霉门和壶菌门(真菌),以及一种绿藻(鞘毛藻属,绿藻纲)。目前该属包括20多个已正式描述的物种,自1987年以来没有描述过新的罗兹菌物种。我们发现了一种寄生在球形根壶菌(壶菌目,壶菌门)上的新罗兹菌物种,并研究了其形态、超微结构和系统发育位置。该生物体在此被命名为罗兹菌根壶菌新种,它会导致宿主肥大。其游动孢子的超微结构与异水霉罗兹菌的相似,尽管它有一个独特的游动孢子超微结构特征,即围绕细胞核有一个垂直杆状晶格。根壶菌罗兹菌的18S rDNA分子序列与之前测序的“根壶菌中的罗兹菌”相似。这是第一项综合利用形态、超微结构和分子数据对新的罗兹菌物种进行特征描述的研究。由于这是第二个进行超微结构研究的罗兹菌物种,并且因为它寄生于壶菌门的成员而非芽枝霉门,这项研究支持了游动孢子超微结构的保守性有助于界定该属的观点。