Ericaceae毛根分枝杆菌结构和分子多样性的探索:北波希米亚和阿根廷巴塔哥尼亚的比较。

IF 3.3 2区 生物学 Q2 MYCOLOGY Mycorrhiza Pub Date : 2023-11-01 Epub Date: 2023-10-04 DOI:10.1007/s00572-023-01125-5
Martin Vohník, M Clara Bruzone, Tereza Knoblochová, Natalia V Fernández, Zuzana Kolaříková, Tomáš Větrovský, Sonia B Fontenla
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引用次数: 0

摘要

核心Ericaceae产生细腻的发根,发根细胞膨胀,宿主大量真菌共生体。这些鲜为人知的真菌生物包括各种内生菌、寄生虫、腐枝和类ericoid菌根(ErM)真菌(ErMF),它们形成了对宿主健康至关重要的ErM共生体。使用显微镜和高通量测序,我们在北波希米亚(中欧)和阿根廷巴塔哥尼亚(南美)的14个不同宿主×位点组合中研究了它们的结构和分子多样性。虽然我们在所有组合中都发现了典型的ericoid菌根,但我们没有检测到外生菌根和丛枝菌根。除来自N.Bohemia的Calluna vulgaris外,在所有组合中都观察到由未夹紧的菌丝形成的不同厚度的表层覆盖层。一些样品含有频繁的细胞间菌丝,而另一些样品则具有以前未报道的与细胞内菌丝线圈相连的细胞内吸器样结构。711个检测到的真菌OTU以子囊菌门(563)和担子菌门(119)为主,其次是其他四个门。子囊菌包括Helotiales(255)、Pleosporales(53)、Chaetothyriales(42)和其他19目,而担子菌Sebacinales(42)、Agaricales(28)、Auriculares(7)和其他14目。虽然来自两个半球的许多显性OTU在参考数据库中缺乏近亲,但许多OTU与来自世界各地的未命名序列非常相似。另一方面,在我们的数据集中没有几个重要的豆状分枝杆菌,包括Cairneyella、Gamarada、Kurtia、Lachnum和Leohumicola。大多数检测到的OTU不能可靠地与特定的营养模式联系在一起,只有两种可以可靠地归属于典型的ErMF Hyloscypha hepaticicola。可能的ErMF包括可变透明藻(Hyloscypha variabilis)和大鹅掌楸(Oidiodendron maius),两者均仅在波西米亚猪笼草中检测到。可能的ErMF包括皮脂腺样真菌和Hyloscypha s.str的几个未命名成员。虽然H.hepaticicola仅在C.vulgaris中占主导地位,但该模式ErM宿主缺乏O.maius和皮脂腺样真菌毒素。在巴塔哥尼亚的两个组合中没有肝透明藻,在六个组合中非常罕见。九种OTU代表了来自Phialochala fortinii s.lat.-Acephala applanata物种复合体的深色间隔内生菌,包括最丰富的OTU(仅在所有组合中检测到)。统计分析显示,由于瓦尔迪维亚温带雨林中发现的独特群落,波西米亚猪笼草和巴塔哥尼亚猪笼草之间存在显著差异,巴塔哥尼亚猪笼草内部也存在显著差异。我们的研究结果表明,毛状根可能含有多种功能未知的分枝杆菌,并表明许多新的ErMF谱系有待发现。它们群落中的跨半球差异(数千公里)可能与局部差异(公里、米或更小的尺度)相匹配。
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Exploring structural and molecular diversity of Ericaceae hair root mycobionts: a comparison between Northern Bohemia and Argentine Patagonia.

Core Ericaceae produce delicate hair roots with inflated rhizodermal cells that host plethora of fungal symbionts. These poorly known mycobionts include various endophytes, parasites, saprobes, and the ericoid mycorrhizal (ErM) fungi (ErMF) that form the ErM symbiosis crucial for the fitness of their hosts. Using microscopy and high-throughput sequencing, we investigated their structural and molecular diversity in 14 different host × site combinations in Northern Bohemia (Central Europe) and Argentine Patagonia (South America). While we found typical ericoid mycorrhiza in all combinations, we did not detect ectomycorrhiza and arbuscular mycorrhiza. Superficial mantles of various thickness formed by non-clamped hyphae were observed in all combinations except Calluna vulgaris from N. Bohemia. Some samples contained frequent intercellular hyphae while others possessed previously unreported intracellular haustoria-like structures linked with intracellular hyphal coils. The 711 detected fungal OTU were dominated by Ascomycota (563) and Basidiomycota (119), followed by four other phyla. Ascomycetes comprised Helotiales (255), Pleosporales (53), Chaetothyriales (42), and other 19 orders, while basidiomycetes Sebacinales (42), Agaricales (28), Auriculariales (7), and other 14 orders. While many dominant OTU from both hemispheres lacked close relatives in reference databases, many were very similar to identical to unnamed sequences from around the world. On the other hand, several significant ericaceous mycobionts were absent in our dataset, incl. Cairneyella, Gamarada, Kurtia, Lachnum, and Leohumicola. Most of the detected OTU could not be reliably linked to a particular trophic mode, and only two could be reliably assigned to the archetypal ErMF Hyaloscypha hepaticicola. Probable ErMF comprised Hyaloscypha variabilis and Oidiodendron maius, both detected only in N. Bohemia. Possible ErMF comprised sebacinoid fungi and several unnamed members of Hyaloscypha s. str. While H. hepaticicola was dominant only in C. vulgaris, this model ErM host lacked O. maius and sebacinoid mycobionts. Hyaloscypha hepaticicola was absent in two and very rare in six combinations from Patagonia. Nine OTU represented dark septate endophytes from the Phialocephala fortinii s. lat.-Acephala applanata species complex, including the most abundant OTU (the only detected in all combinations). Statistical analyses revealed marked differences between N. Bohemia and Patagonia, but also within Patagonia, due to the unique community detected in a Valdivian temperate rainforest. Our results show that the ericaceous hair roots may host diverse mycobionts with mostly unknown functions and indicate that many novel ErMF lineages await discovery. Transhemispheric differences (thousands of km) in their communities may be evenly matched by local differences (scales of km, m, and less).

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来源期刊
Mycorrhiza
Mycorrhiza 生物-真菌学
CiteScore
8.20
自引率
2.60%
发文量
40
审稿时长
6-12 weeks
期刊介绍: Mycorrhiza is an international journal devoted to research into mycorrhizas - the widest symbioses in nature, involving plants and a range of soil fungi world-wide. The scope of Mycorrhiza covers all aspects of research into mycorrhizas, including molecular biology of the plants and fungi, fungal systematics, development and structure of mycorrhizas, and effects on plant physiology, productivity, reproduction and disease resistance. The scope also includes interactions between mycorrhizal fungi and other soil organisms and effects of mycorrhizas on plant biodiversity and ecosystem structure. Mycorrhiza contains original papers, short notes and review articles, along with commentaries and news items. It forms a platform for new concepts and discussions, and is a basis for a truly international forum of mycorrhizologists from all over the world.
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