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真菌内生菌:探寻加拿大一些最古老且最具韧性的葡萄藤内部的奥秘。

Fungal Endophytes: Discovering What Lies within Some of Canada's Oldest and Most Resilient Grapevines.

作者信息

Ali Shawkat, Wright A Harrison, Tanney Joey B, Renaud Justin B, Sumarah Mark W

机构信息

Agriculture and Agri-Food Canada, Kentville Research and Development Centre, 32 Main St., Kentville, NS B4N 1J5, Canada.

Natural Resources Canada, Pacific Forestry Centre, 506 Burnside Road West, Victoria, BC V8Z 1M5, Canada.

出版信息

J Fungi (Basel). 2024 Jan 26;10(2):105. doi: 10.3390/jof10020105.

Abstract

Plant diseases and pests reduce crop yields, accounting for global crop losses of 30% to 50%. In conventional agricultural production systems, these losses are typically controlled by applying chemical pesticides. However, public pressure is mounting to curtail agrochemical use. In this context, employing beneficial endophytic microorganisms is an increasingly attractive alternative to the use of conventional chemical pesticides in agriculture. A multitude of fungal endophytes are naturally present in plants, producing enzymes, small peptides, and secondary metabolites due to their bioactivity, which can protect hosts from pathogens, pests, and abiotic stresses. The use of beneficial endophytic microorganisms in agriculture is an increasingly attractive alternative to conventional pesticides. The aim of this study was to characterize fungal endophytes isolated from apparently healthy, feral wine grapes in eastern Canada that have grown without agrochemical inputs for decades. Host plants ranged from unknown seedlings to long-lost cultivars not widely propagated since the 1800s. HPLC-MS was used to identify unique endophyte-derived chemical compounds in the host plants, while dual-culture competition assays showed a range in endophytes' ability to suppress the mycelial growth of , which is typically controlled in viticulture with pesticides. Twelve of the most promising fungal endophytes isolated were identified using multilocus sequencing and morphology, while DNA barcoding was employed to identify some of their host vines. These fungal endophyte isolates, which consisted of both known and putative novel strains, belonged to seven genera in six families and five orders of Ascomycota. Exploring the fungal endophytes in these specimens may yield clues to the vines' survival and lead to the discovery of novel biocontrol agents.

摘要

植物病虫害会降低作物产量,造成全球30%至50%的作物损失。在传统农业生产系统中,这些损失通常通过施用化学农药来控制。然而,减少农用化学品使用的公众压力越来越大。在这种背景下,利用有益内生微生物作为农业中传统化学农药的替代品越来越具有吸引力。许多真菌内生菌天然存在于植物中,由于其生物活性可产生酶、小肽和次生代谢产物,从而保护宿主免受病原体、害虫和非生物胁迫。在农业中使用有益内生微生物作为传统农药的替代品越来越具有吸引力。本研究的目的是对从加拿大东部看似健康的野生酿酒葡萄中分离出的真菌内生菌进行表征,这些葡萄在数十年未使用农用化学品的情况下生长。宿主植物范围从未知的幼苗到自19世纪以来未广泛繁殖的失传品种。采用高效液相色谱-质谱联用技术(HPLC-MS)鉴定宿主植物中独特的内生菌衍生化合物,而双培养竞争试验表明内生菌抑制酿酒葡萄白粉菌菌丝生长的能力存在差异,酿酒葡萄白粉菌在葡萄栽培中通常用农药控制。利用多位点测序和形态学方法对分离出的12种最有前景的真菌内生菌进行了鉴定,同时采用DNA条形码技术鉴定了其中一些宿主葡萄藤。这些真菌内生菌分离株包括已知和假定的新菌株,属于子囊菌门六个科、五个目的七个属。探索这些样本中的真菌内生菌可能会为葡萄藤的存活提供线索,并导致发现新型生物防治剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ece0/10890244/d18f66c82e62/jof-10-00105-g001.jpg

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