Suppr超能文献

泡囊丛枝菌属的生殖菌丝尖端的细胞组织及其系统发育意义。

Cellular organization in germ tube tips of Gigaspora and its phylogenetic implications.

机构信息

Department of Biology and Microbiology, University of Wisconsin Oshkosh, 800 Algoma Blvd., Oshkosh, Wisconsin 54901.

出版信息

Mycologia. 2013 Sep-Oct;105(5):1087-99. doi: 10.3852/12-291. Epub 2013 Aug 6.

Abstract

Comparative morphology of the fine structure of fungal hyphal tips often is phylogenetically informative. In particular, morphology of the Spitzenkörper varies among higher taxa. To date no one has thoroughly characterized the hyphal tips of members of the phylum Glomeromycota to compare them with other fungi. This is partly due to difficulty growing and manipulating living hyphae of these obligate symbionts. We observed growing germ tubes of Gigaspora gigantea, G. margarita and G. rosea with a combination of light microscopy (LM) and transmission electron microscopy (TEM). For TEM, we used both traditional chemical fixation and cryo-fixation methods. Germ tubes of all species were extremely sensitive to manipulation. Healthy germ tubes often showed rapid bidirectional cytoplasmic streaming, whereas germ tubes that had been disturbed showed reduced or no cytoplasmic movement. Actively growing germ tubes contain a cluster of 10-20 spherical bodies approximately 3-8 μm behind the apex. The bodies, which we hypothesize are lipid bodies, move rapidly in healthy germ tubes. These bodies disappear immediately after any cellular perturbation. Cells prepared with cryo-techniques had superior preservation compared to those that had been processed with traditional chemical protocols. For example, cryo-prepared samples displayed two cell-wall layers, at least three vesicle types near the tip and three distinct cytoplasmic zones were noted. We did not detect a Spitzenkörper with either LM or TEM techniques and the tip organization of Gigaspora germ tubes appeared to be similar to hyphae in zygomycetous fungi. This observation was supported by a phylogenetic analysis of microscopic characters of hyphal tips from members of five fungal phyla. Our work emphasizes the sensitive nature of cellular organization, and the need for as little manipulation as possible to observe germ tube structure accurately.

摘要

真菌菌丝尖端的精细结构的比较形态通常具有系统发育信息。特别是,Spitzenkörper 的形态在高等分类群中有所不同。迄今为止,还没有人彻底描述过球囊霉门成员的菌丝尖端,无法将其与其他真菌进行比较。这在一定程度上是由于难以生长和操纵这些专性共生体的活体菌丝。我们使用光学显微镜(LM)和透射电子显微镜(TEM)观察了巨大球囊霉(Gigaspora gigantea)、大团囊霉(G. margarita)和玫瑰色球囊霉(G. rosea)的生长芽管。对于 TEM,我们同时使用了传统的化学固定和冷冻固定方法。所有物种的芽管都对操作非常敏感。健康的芽管通常显示快速的双向细胞质流动,而受到干扰的芽管显示细胞质运动减少或没有。活跃生长的芽管在尖端后面约 3-8μm 的位置含有一组 10-20 个球形体。这些我们假设是脂滴的球体在健康的芽管中快速移动。这些球体在任何细胞扰动后立即消失。与使用传统化学方案处理的细胞相比,使用冷冻技术制备的细胞具有更好的保存效果。例如,冷冻制备的样品显示了两个细胞壁层,在尖端附近至少有三种囊泡类型和三个明显的细胞质区。我们使用 LM 或 TEM 技术都没有检测到 Spitzenkörper,并且巨大球囊霉芽管的尖端组织似乎与接合菌的菌丝相似。这一观察结果得到了来自五个真菌门成员的菌丝尖端微观特征的系统发育分析的支持。我们的工作强调了细胞组织的敏感性,以及尽可能少地进行操作以准确观察芽管结构的必要性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验