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1.
Asian grapevine leaf rust (AGLR) causes severe crop losses in Brazilian viticulture, mainly in latitudes <25°S. The purpose of this study was to identify the pathogen(s) involved with AGLR in Brazil, based on phylogenetic and morphological analysis and pathogenicity tests. In total, 56 monouredinial isolates from six Brazilian states were identified using the internal transcribed spacer 2 and the large subunit rRNA gene D1/D2 regions. All 50 isolates from the south-central region were classified as Neophysopella tropicalis, and the other six isolates from the north-east region as Neophysopella meliosmae-myrianthae. This result provides evidence that two pathogen introductions from different sources may have occurred in the country. For both species, paraphyses were cylindrical, incurved, aseptate, and hyaline, while urediniospores were short-pedicellate, obovoid or obovoid-ellipsoid, with the wall colourless or pale yellowish, evenly echinulate. Representative isolates from both species caused typical AGLR symptoms on Vitis vinifera 'Merlot' and V. labrusca 'Niagara Rosada'. Overall, regardless of the Neophysopella species, isolates caused similar leaf disease severities. Higher disease severity was observed in Niagara Rosada (average of 40.3% of diseased leaf area) compared to Merlot (20.5%). This study reports, for the first time, the characterization of Neophysopella species associated with AGLR in Brazil. 相似文献
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中国东北和华北地区紫花苜蓿根瘤菌遗传多样性研究 总被引:1,自引:0,他引:1
【目的】紫花苜蓿(Medicago sativa L.)被誉为牧草之王,近年来,中国东北和华北地区种植面积不断扩大,但紫花苜蓿质量与产量仍不足以满足中国畜牧业发展的需求。本研究旨在分析中国东北和华北地区紫花苜蓿根瘤菌遗传多样性,为紫花苜蓿高效固氮根瘤菌的筛选与应用提供参考。【方法】采用表面消毒和平板划线法从根瘤中分离纯化根瘤菌单菌落;使用BOX-PCR方法对供试菌株进行基因型划分;选取代表菌株进行持家基因(atpD、glnII和rpoB)和共生基因(nifH和nodC)的系统发育分析。【结果】从中国东北和华北19个采样地共分离纯化了499株根瘤菌,BOX-PCR可将供试菌株分为37种BOX型,BOX型存在显著的地理分布现象,同时寄主品种对根瘤菌基因型具有一定的选择作用。97.60%(487/499)的根瘤菌为Sinorhizobium meliloti。其余12株分别为S. adhaerens、Mesorhizobium huakuii、Rhizobium loessense、R. mesosinicum、R. vignae、Mesorhizobium sp.和Phyllobacterium sp.,这12株根瘤菌仅在中国东北地区发现,华北地区根瘤菌均为S. meliloti。3个持家基因在紫花苜蓿根瘤菌种间系统发育分析结果一致,但其揭示优势种S. meliloti的种内多样性存在差异。共生基因系统发育结果显示,在根瘤菌属间和属内发生了共生基因的水平转移现象。nifH在S.meliloti种内显示出比nodC更丰富多样性。【结论】中国东北和华北地区紫花苜蓿根瘤菌具有较丰富的遗传多样性,且根瘤菌存在显著的地理分布特征和寄主选择现象。 相似文献
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Chitra Nehra Avinash Marwal Rakesh Kumar Verma Megha Mishra Pradeep Sharma 《The Journal of Horticultural Science and Biotechnology》2019,94(4):475-480
India is one of the world’s largest producers of papaya. Viruses, mainly begomoviruses and potyviruses, cause a significant loss in papaya production. The study described here has identified a new species of begomovirus and a new species of betasatellite infecting Carica papaya in India. The sequences of the begomovirus and betasatellite show 90.03% nucleotide sequence identity to an isolate of Radish leaf curl virus and 92.25% identity to an isolate of Tomato leaf curl betasatellite, respectively. Maximum likelihood phylogenetic tree of begomovirus sequence of isolate DP2 (KX353622) showed distant relationships with previously characterised begomoviruses. Recombination analysis proposed six recombination breakpoints in begomovirus genome with other geographical begomovirus isolates. 相似文献
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María Ortuo Maria S. Latrofa María A. Iborra Pedro Prez‐Cutillas Luis J. Bernal Jos Risueo Clara Muoz Ana Bernal Pedro F. Snchez‐Lopez Manuel Segovia Giada Annoscia Carla Maia Sofia Cortes Lenea Campino Domenico Otranto Eduardo Berriatua 《Zoonoses and public health》2019,66(8):961-973
Leishmania infantum causes human and canine leishmaniosis. The parasite, transmitted by phlebotomine sand flies, infects species other than dogs and people, including wildlife, although their role as reservoirs of infection remains unknown for most species. Molecular typing of parasites to investigate genetic variability and evolutionary proximity can help understand transmission cycles and designing control strategies. We investigated Leishmania DNA variability in kinetoplast (kDNA) and internal transcribed spacer 2 (ITS2) sequences in asymptomatically infected wildlife (n = 58) and symptomatically and asymptomatically infected humans (n = 38) and dogs (n = 15) from south‐east Spain, using single nucleotide polymorphisms (SNPs) and in silico restriction fragment length polymorphism (RFLP) analyses. All ITS2 sequences (n = 76) displayed a 99%–100% nucleotide identity with a L. infantum reference sequence, except one with a 98% identity to a reference Leishmania panamensis sequence, from an Ecuadorian patient. No heterogeneity was recorded in the 73 L. infantum ITS2 sequences except for one SNP in a human parasite sequence. In contrast, kDNA analysis of 44 L. infantum sequences revealed 11 SNP genotypes (nucleotide variability up to 4.3%) and four RFLP genotypes including B, F and newly described S and T genotypes. Genotype frequency was significantly greater in symptomatic compared to asymptomatic individuals. Both methods similarly grouped parasites as predominantly or exclusively found in humans, in dogs, in wildlife or in all three of them. Accordingly, the phylogenetic analysis of kDNA sequences revealed three main clusters, two as a paraphyletic human parasites clade and a third including dogs, people and wildlife parasites. Results suggest that Leishmania infantum genetics is complex even in small geographical areas and that, probably, several independent transmission cycles take place simultaneously including some connecting animals and humans. Investigating these transmission networks may be useful in understanding the transmission dynamics, infection risk and therefore in planning L. infantum control strategies. 相似文献
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明确引起黄瓜炭疽病的病原,旨在为该病的有效防治提供理论依据。通过形态学方法、柯赫氏法则验证,基于ITS、ACT和GDPH序列分析鉴定病原菌,并对该菌的生物学特性进行研究。结果表明,该菌回接黄瓜后的症状与田间症状一致。在PDA培养基上菌落为黑色,气生菌丝稀疏、灰白色;分生孢子长柱形,透明无隔;分生孢子盘着生黑色刚毛;孢子附着胞浅褐色,卵圆形,个别双生;菌丝附着胞深褐色,不规则形、浅裂或深裂。结合病原菌三基因联合建树的分析结果,可将其鉴定为Colletotrichum brevisporum。最适菌丝生长和产孢的温度25℃、pH 8,在PDA培养基上菌丝延伸最快,OA培养基上产孢最多,碳源中葡萄糖利于菌丝生长,可溶性淀粉和乳糖利于产孢,氮源中蛋白胨和酵母浸粉最适合菌丝生长,且后者产孢最多,致死温度为49℃。 相似文献
8.
Marcel Maymon Gunjan Sharma Marina Hazanovsky Orly Erlich Shir Pessach Stanley Freeman Leah Tsror 《Plant pathology》2021,70(4):793-803
Fusarium wilt, caused by Fusarium oxysporum, is a major disease of jojoba, causing serious economic losses. This study was aimed at characterizing the Fusarium populations associated with jojoba in Israel. Fifty Fusarium isolates used in this study included 23 isolates from the 1990s (“past”) and 27 recently isolated (“recent”). All the isolates were characterized by arbitrarily primed (ap)-PCR and 16 representatives were additionally delineated using multilocus (tef1, rpb1, rpb2) phylogeny and evaluated for their pathogenic potential. Consequently, 88% of the isolates were identified and characterized to the F. oxysporum species complex. The remaining 12% grouped within the F. fujikuroi, F. solani, and F. redolens species complexes. Variations in the infection rate (16.7%–100%), disease symptoms (0.08–1.25, on a scale of 0–3), and fungal colonization index (0.67–2.17, on a scale of 0–4) were observed within the tested isolates, with no significant differences between the past and recent isolates. The representative isolates were assigned to 11 groups based on ap-PCR. Pathogenicity tests showed that isolates from Groups II, IV, and V were the most aggressive, whereas isolates from Groups III, VIII, and IX were the least aggressive. Among the tested isolates, F. oxysporum sensu lato was the most aggressive, followed by F. proliferatum, while F. nygamai was the least aggressive. This study demonstrates the complexity and genetic diversity of Fusarium wilt on jojoba in Israel, indicating possible multiple introductions of infected germplasm into the country. 相似文献
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Phylogenetic position and nucleotide diversity of Fusarium oxysporum f. sp. vanillae worldwide based on translation elongation factor 1α sequences 下载免费PDF全文
F. R. Flores‐de la Rosa E. De Luna J. Adame‐García L. G. Iglesias‐Andreu M. Luna‐Rodríguez 《Plant pathology》2018,67(6):1278-1285
Fusarium oxysporum f. sp. vanillae is considered the most important fungus affecting vanilla crops around the world, causing rot on vanilla roots and stems. Previous studies showed that the ability to infect vanilla plants is a polyphyletic trait among strains of the Fusarium oxysporum species complex (FOSC). The same studies proposed a single origin for F. oxysporum f. sp. vanillae isolates sampled from Mexico, the centre of origin and distribution of vanilla. The aim of this work was to test the hypothesis of the monophyletic origin of a wider sample of isolates of F. oxysporum f. sp. vanillae infecting Mexican vanilla and estimate nucleotide diversity of pathogen isolates from the main vanilla‐producing countries. Sequence data for the TEF1α gene from 106 isolates was assembled. The phylogenetic analyses suggest that some Mexican isolates of F. oxysporum f. sp. vanillae belong in two well‐supported clades, mixed with isolates from Madagascar, Indonesia, Réunion and Comoros. The phylogenetic position of other Indonesian and Mexican isolates is unresolved. Estimations of nucleotide diversity showed that the population from Mexico is genetically more diverse than the other three populations from Madagascar, Indonesia and Réunion. The results support a polyphyletic origin of vanilla‐infecting isolates of F. oxysporum worldwide, and also reject the proposition that Mexican isolates have a single origin. The phylogenetic optimizations over the strict consensus tree of the ability to infect vanilla plants suggest that pathogenic strains around the world are the product of multiple shifts of pathogenesis and dispersion events. 相似文献
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中国达氏鳇野生群体和两个养殖群体的线粒体遗传多样性分析 总被引:2,自引:0,他引:2
达氏鳇(Huso dauricus)是黑龙江流域土著鲟,近几十年来野生资源急剧下降,被确定为濒危物种之一。本研究采用线粒体DNA的Cyt b基因和D-loop区域的多态性信息评估了黑龙江抚远段野生群体、北京房山国家级鲟鱼原种场的保种群体及浙江衢州国家级鲟鱼良种场的繁殖群体等3个达氏鳇群体的遗传多样性水平。所有测试个体在Cyt b基因位点的核苷酸水平上没有检测到多样性,均具有相同的Cyt b单倍型,而在D-loop区域中发现了9种单倍型,对于D-loop区,单倍型多样性(H_d)达到0.593,但核苷酸多样性(π)仅为0.00213。在8尾野生个体中检测到6种D-loop单倍型,2个养殖群体共计58尾个体共计检出5种D-loop单倍型个体。分析结果显示:野生达氏鳇群体遗传多样性极低,历史上可能经历过严重的遗传瓶颈,同时达氏鳇人工繁殖过程中每批次可能只有极少个体参与了繁殖。此外,基于Cyt b基因部分序列的分析结果提示,达氏鳇与其他太平洋鲟类的亲缘关系较近,而与欧鳇(Huso huso)关系较远,传统上鳇属(Huso)的分类地位得不到有效的分子生物学数据支持。 相似文献