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當(dāng)前位置 > 首頁 > 技術(shù)文章 > WIWAM葉綠素?zé)晒獬上裰坦如牭毒腥拘←溗牒Y選生物防治細(xì)菌

WIWAM葉綠素?zé)晒獬上裰坦如牭毒腥拘←溗牒Y選生物防治細(xì)菌

瀏覽次數(shù):1055 發(fā)布日期:2022-3-31  來源:本站 僅供參考,謝絕轉(zhuǎn)載,否則責(zé)任自負(fù)
近日,來自歐洲的科學(xué)家利用WIWAM XY(Pathoviewer)高通量植物表型成像平臺(tái)發(fā)表了題為A Novel In Planta Enrichment Method Employing Fusarium graminearum-Infected Wheat Spikes to Select for Competitive Biocontrol Bacteria,文章發(fā)表于知名期刊Toxins 2022,14(3), 222。

SMO構(gòu)建WIWAM XY高通量植物表型成像平臺(tái)
 
利用禾谷鐮刀菌感染的小麥穗篩選競(jìng)爭性生防細(xì)菌的一種新的植物內(nèi)富集方法
這項(xiàng)工作介紹了一種在小麥中發(fā)現(xiàn)新的抗赤霉病細(xì)菌生防劑的替代工作流程。與隔離物收集的大規(guī)模測(cè)試不同,我們從不同的接種物開始,在灌漿期從田間種植的小麥穗中提取微生物組。在感染禾谷鐮刀菌PH1的分離小麥穗上,產(chǎn)生了四個(gè)不同的微生物群落,這些微生物群落暴露在3個(gè)14天的非培養(yǎng)實(shí)驗(yàn)富集物中。我們發(fā)現(xiàn),一個(gè)細(xì)菌群落在3個(gè)周期后減少了感染癥狀,隨后選擇該細(xì)菌群落通過限制稀釋來分離細(xì)菌。所有94個(gè)分離株均在體外和植物試驗(yàn)中進(jìn)行了測(cè)試,并選擇了14個(gè)分離株在分離的小麥穗上進(jìn)行了進(jìn)一步測(cè)試。結(jié)果似乎表明,我們的富集方法導(dǎo)致細(xì)菌在FHB控制方面具有不同的作用模式。波斯歐文氏菌(Erwinia persicina)分離物C3的疾病嚴(yán)重程度(Fv/Fm)顯著降低,波斯歐文氏菌(Erwinia persicina)C3和假單胞菌(Pseudomonassp.)B3的真菌生物量(cGFP)顯著降低。然而,這兩種治療的真菌毒素分析顯示,DON水平?jīng)]有降低。盡管如此,安那提泛球菌(Pantoea ananatis)H3和H11以及波斯歐文氏桿菌(Erwinia persicina)H2能夠?qū)ON濃度降低50%以上,盡管這些影響在統(tǒng)計(jì)學(xué)上并不顯著。最后,波斯歐文氏菌(Erwinia persicina)H2也顯示出DON對(duì)植物毒性較小的DON-3G的顯著更高的糖基化。據(jù)報(bào)道,通過富集循環(huán)分離的細(xì)菌屬在開放棲息地發(fā)育的微生物群落中占主導(dǎo)地位,這表明分離的細(xì)菌可以降低禾谷鐮刀菌在穗葉層上的感染壓力。
 
關(guān)鍵詞:小麥;禾谷鐮刀菌;生物防治;病理生物群落;獨(dú)立培養(yǎng);微生物組工程;連續(xù)通過;實(shí)驗(yàn)富集;葉層
 
A Novel In Planta Enrichment Method Employing Fusarium graminearum-Infected Wheat Spikes to Select for Competitive Biocontrol Bacteria 

Abstract
This work introduces an alternative workflow for the discovery of novel bacterial biocontrol agents in wheat against Fusarium head blight (FHB). Unlike the mass testing of isolate collections, we started from a diverse inoculum by extracting microbiomes from ears of field-grown plants at grain filling stage. Four distinct microbial communities were generated which were exposed to 3 14-day culture-independent experimental enrichments on detached wheat spikes infected with F. graminearum PH1. We found that one bacterial community reduced infection symptoms after 3 cycles, which was chosen to subsequently isolate bacteria through limiting dilution. All 94 isolates were tested in an in vitro and in planta assay, and a selection of 14 isolates was further tested on detached ears. The results seem to indicate that our enrichment approach resulted in bacteria with different modes-of-action in regard to FHB control. Erwinia persicina isolate C3 showed a significant reduction in disease severity (Fv/Fm), and Erwinia persicina C3 and Pseudomonas sp. B3 showed a significant reduction in fungal biomass (cGFP). However, the mycotoxin analysis of both these treatments showed no reduction in DON levels. Nevertheless, Pantoea ananatis H3 and H11 and Erwinia persicina H2 were able to reduce DON concentrations by more than 50%, although these effects were not statistically significant. Lastly, Erwinia persicina H2 also showed a significantly greater glucosylation of DON to the less phytotoxic DON-3G. The bacterial genera isolated through the enrichment cycles have been reported to dominate microbial communities that develop in open habitats, showing strong indications that the isolated bacteria can reduce the infection pressure of F. graminearum on the spike phyllosphere. 
Keywords:Triticum aestivum; Fusarium graminearum; biocontrol; pathobiome; culture independent; microbiome engineering; successive passage; experimental enrichment; phyllosphere
WIWAM植物表型成像系統(tǒng)由比利時(shí)SMO公司與Ghent大學(xué)VIB研究所研制生產(chǎn),整合了LED植物智能培養(yǎng)、自動(dòng)化控制系統(tǒng)、葉綠素?zé)晒獬上駵y(cè)量分析、植物熱成像分析、植物近紅外成像分析、植物高光譜分析、植物多光譜分析、植物CT斷層掃描分析、自動(dòng)條碼識(shí)別管理、RGB真3D成像等多項(xiàng)先進(jìn)技術(shù),以優(yōu)化的方式實(shí)現(xiàn)大量植物樣品以優(yōu)化的方式實(shí)現(xiàn)大量植物樣品——從擬南芥、水稻、玉米到各種其它植物的生理生態(tài)與形態(tài)結(jié)構(gòu)成像分析,用于高通量植物表型成像分析測(cè)量、植物脅迫響應(yīng)成像分析測(cè)量、植物生長分析測(cè)量、生態(tài)毒理學(xué)研究、性狀識(shí)別及植物生理生態(tài)分析研究等。
PathoViewer是一款高通量植物表型成像平臺(tái)(屬于WIWAM XY系列),使用了高分辨率圖像在可控條件下對(duì)植物進(jìn)行表型成像。該系統(tǒng)配備有6MP-16 bit的相機(jī)系統(tǒng)以及各種光學(xué)濾波輪,有廣泛用途,例如測(cè)量葉綠素?zé)晒、紅色熒光蛋白、綠色熒光蛋白、自熒光、RGB改進(jìn)花青素反射指數(shù)以及葉綠素指數(shù)等。系統(tǒng)為自動(dòng)系統(tǒng),用于測(cè)量植物或植物部分的生物或非生物脅迫。 
來源:北京博普特科技有限公司
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