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排序方式: 共有6618条查询结果,搜索用时 31 毫秒
1.
M. A. Macedo A. K. Inoue-Nagata T. N. Z. Silva D. M. S. Freitas J. A. M. Rezende J. C. Barbosa M. Michereff-Filho A. R. Nascimento A. L. Lourenção A. Bergamin Filho 《Plant pathology》2019,68(1):72-84
Efficient management of whitefly-borne diseases remains a challenge due to the lack of a comprehensive understanding of their epidemiology, particularly of the diseases tomato golden mosaic and tomato yellowing. Here, by monitoring 16 plots in four commercial fields, the temporal and spatial distribution of these two diseases were studied in tomato fields in Brazil. In the experimental plots these diseases were caused by tomato severe rugose virus (ToSRV) and tomato chlorosis virus (ToCV), respectively. The incidence of each virus was similar in the plots within a field but varied greatly among fields. Plants with symptoms for both diseases were randomly distributed in three of four spatial analyses. The curves representing the progress of both diseases were similar and contained small fluctuations, indicating that the spread of both viruses was similar under field conditions. In transmission experiments of ToSRV and ToCV by Bemisia tabaci MEAM1 (former biotype B), these viruses had a similar transmission rate in single or mixed infections. It was then shown that primary and secondary spread of ToCV were not efficiently controlled by insecticide applications. Finally, in a typical monomolecular model of disease progress, simulation of the primary dissemination of ToSRV and ToCV showed that infected plants were predominantly randomly distributed. It is concluded that, although the manner of vector transmission differs between ToSRV (persistent) and ToCV (semipersistent), the main dispersal mechanisms are most probably similar for these two diseases: primary spread is the predominant mechanism, and epidemics of these diseases have been caused by several influxes of viruliferous whiteflies. 相似文献
2.
T. Schöneberg K. Kibler F. E. Wettstein T. D. Bucheli H. R. Forrer T. Musa F. Mascher M. Bertossa B. Keller S. Vogelgsang 《Plant pathology》2019,68(1):173-184
High occurrence of Fusarium poae (FP) and Fusarium langsethiae (FL) and their mycotoxins nivalenol (NIV) and T-2/HT-2 have been observed in Swiss oats. Early prediction of mycotoxin levels is important for farmers and the cereal industry to minimize the risk of contaminated food and feed. Therefore, climate chamber experiments were conducted to investigate the influence of different temperatures (10, 15, 20 °C) and durations (4, 8, 12 h) at 99% relative humidity (RH) on the infection of oats with FP and FL. In addition, to discover the most susceptible period of oats, artificial FL inoculations were conducted at different growth stages. Field experiments were performed to observe the dispersal of these fungal species within the field and to investigate the weather conditions that influence the dispersal. The climate chamber experiments revealed higher contamination with NIV and T-2/HT-2 in the 10 °C treatments and with a prolonged humidity duration of 12 h 99% RH. Inoculations of oat plants at early (DC 61) and mid (DC 65) anthesis, led to higher FL infection and T-2/HT-2 accumulation in the grains compared with treatments at earlier growth stages, which might be due to an increased susceptibility during anthesis. No indication for spore dispersal was observed in the field experiments. The results obtained, together with the cropping factors that influence infection and mycotoxin production, could be used as a first step in developing forecasting models to predict the contamination of oats with the mycotoxins NIV and T-2/HT-2. 相似文献
3.
菜心是华南地区的主要蔬菜,利用分子标记辅助育种发掘出与重要农艺性状相关的分子,不仅可以加速优良品种的选育进程,还可以定向地优化目标性状,培育出高产优质的菜心品种。本研究选用148份来自宁夏银川和广东南沙田间种植的菜心种质材料,采集株高、株质量、薹高、薹质量和薹粗5个重要农艺性状的数据;利用SSR标记对其进行基因分型,开展农艺性状及SSR标记的关联性分析。结果表明,在供试的菜心材料中,147个SSR标记共检测到252个变异位点,引物多态信息含量(PIC)为0.0526~0.5222,平均值为0.3793;群体结构分析将供试的菜心品种分为2个类群;银川和南沙两地菜心品种在农艺性状和SSR标记的关联分析中发现,有6个位点与相同性状存在仍显著关联(P<0.01)。这些标记能为菜心的分子辅助选择育种提供参考。 相似文献
4.
5.
利用SSR技术鉴定西瓜甜瓜种子纯度 总被引:1,自引:0,他引:1
利用SSR分子标记技术对西瓜‘W1806’与甜瓜‘M1805’各3个批次及其亲本间的多态性进行引物筛选和种子的纯度鉴定。结果表明,在28对西瓜的SSR引物中,有5对引物在西瓜‘W1806’的F1代与亲本之间有很好的多态性。其中BVWS00839引物特异性好,条带清晰,父母本条带间隔明显,即作为3个批次的西瓜纯度鉴定的引物,其鉴定纯度分别为99.47%、98.96%和97.92%;在18对甜瓜的SSR引物中,只有1对CMBR052引物在F1代扩出的条带为典型的双亲互补型条带,故用该引物对甜瓜进行纯度鉴定,其纯度分别为97.90%、96.80%和97.40%。与田间鉴定结果的吻合率都在98%以上。这2个材料的吻合率说明SSR分子标记技术对西瓜和甜瓜纯度鉴定结果都是可靠的。 相似文献
6.
Stuart Fraser Mireia Gomez‐Gallego Judy Gardner Lindsay S. Bulman Sandra Denman Nari M. Williams 《Forest Pathology》2020,50(2)
Phytophthora pluvialis and Phytophthora kernoviae are the causal agents of important needle diseases on Pinus radiata in New Zealand. Little is known about the epidemiology of the diseases, making the development of control strategies challenging. To investigate the seasonality and climatic drivers of sporulation, inoculum traps, consisting of pine fascicles floating on water in plastic containers, were exchanged fortnightly at five sites in P. radiata plantations between February 2012 and December 2014. Sections of needle baits were plated onto selective media and growth of Phytophthora pluvialis and P. kernoviae recorded. To explore the generalizability of these data, they were compared to detection data for both pathogens from the New Zealand Forest Health Database (NZFHDB). Further, equivalent analyses on infection of Rhododendron ponticum by P. kernoviae in Cornwall, UK allowed the comparison of the epidemiology of P. kernoviae across different host systems and environments. In New Zealand, inoculum of P. pluvialis and P. kernoviae was detected between January–December and March–November, respectively. Inoculum of both species peaked in abundance in late winter. The probability of detecting P. pluvialis and P. kernoviae was greater at lower temperatures, while the probability of detecting P. pluvialis also increased during periods of wet weather. Similar patterns were observed in NZFHDB data. However, the seasonal pattern of infection by P. kernoviae in the UK was the opposite of that seen for sporulation in New Zealand. Phytophthora kernoviae was likely limited by warmer and drier summers in New Zealand, but by colder winter weather in the UK. These results emphasize the importance of considering both environmental drivers and thresholds in improving our understanding of pathogen epidemiology. 相似文献
7.
Ting Shi Yan-Yan Yu Jia-Jia Dai Yi-Ting Zhang Wen-Peng Hu Li Zheng Da-Yong Shi 《Marine drugs》2021,19(3)
The species Pseudogymnoascus is known as a psychrophilic pathogenic fungus with a ubiquitous distribution in Antarctica. Meanwhile, the study of its secondary metabolites is infrequent. Systematic research of the metabolites of the fungus Pseudogymnoascus sp. HSX2#-11, guided by the method of molecular networking, led to the isolation of one novel polyketide, pseudophenone A (1), along with six known analogs (2–7). The structure of the new compound was elucidated by extensive spectroscopic investigation and single-crystal X-ray diffraction. Pseudophenone A (1) is a dimer of diphenyl ketone and diphenyl ether, and there is only one analog of 1 to the best of our knowledge. Compounds 1 and 2 exhibited antibacterial activities against a panel of strains. This is the first time to use molecular networking to study the metabolic profiles of Antarctica fungi. 相似文献
8.
Fa-chao SUN Min TAN Yuan-chao ZHANG Yu-chao WANG Sheng-liang CAO Guo-fei DING Fang-yuan CONG Li-hong GUO Si-dang LIU Yi-hong XIAO 《农业科学学报》2019,18(7):1436-1442
To investigate the epizootic of swine influenza virus(SIV), 60 nasal swabs were collected from a clinical cases of pig farm in Tai'an City, Shandong Province of China in April 2017. SIV was isolated by inoculating into 10-day-old Special Pathogen Free embryonated eggs and the whole genome was sequenced. An H1N1 subtype SIV was isolated and designated as A/swine/Shandong/TA04/2017(H1N1). Phylogenetic analysis showed that apart from the polymerase A(PA) fragment belonging to the 2009 pandemic H1N1 branch, seven genome segments belonged to avian-like H1N1 influenza virus lineage. The cleavage site sequence of the hemagglutinin(HA) protein was PSIQSR↓G, which is a typical molecular biological characteristic. Five potential N-glycosylation sites(N14, N26, N277, N484 and N543) were found in the HA gene. To further investigate the epidemiology of SIV in this farm, the 995 serum samples were assessed with EAH1N1 2009 pandemic H1N1 and H3 N2 antigens. The results showed that the total positive rate was 65.43%. The positive rates of single virus infection detected by EAH1N1, 2009 pdmH1N1 and H3 N2 for serum HI(Hemagglutination inhibition) were 48.35, 30.85 and 7.47%, respectively. The results showed that SIV in Shandong Province has been reassorted in some segments and the SIV-positive rate was high on the SIV outbreak farm. These data provide evidence of an epizootic of SIV. 相似文献
9.
基于中华稻蝗转录组数据库,采用生物信息学方法搜索获得1条OcKnk基因全长cDNA序列,采用qRT-PCR检测其组织部位表达特性和其在表皮发育过程中表达情况,明确其分子特性,采用RNAi技术结合表型观察,研究其对中华稻蝗蜕皮和生长发育的影响,以明确其生物学功能。组织部位表达结果显示其在中华稻蝗体壁、前肠和脂肪体表达最高,发育表达结果显示其在表皮不同发育日龄均有表达,且在蜕皮前期和后期表达显著高于其他日龄。生物学功能研究表明,注射dsRNA后,多数虫体难以成功蜕去旧表皮,导致死亡,少部分可蜕至下一龄期,但活动力较低,行动缓慢,最终死亡。研究结果表明OcKnk参与昆虫生长发育和蜕皮过程,可作为重要靶标基因,为下一步害虫防治提供理论基础。 相似文献
10.
Four sets of durum samples were used in this study to further understand the interrelationships among hard vitreous kernels (HVK), protein content, and pigment concentration, with a focus on the interaction and synergistic effects of protein content and vitreousness on durum quality. HVK level increases with higher protein content in the range of 9.5–12.5%, but this relationship is less evident in durum samples with high protein content (12.5–14.5%). Both protein content and kernel vitreousness can significantly affect durum milling quality. White starchy kernels (WSK) in low protein durum have a very detrimental impact on milling and pasta processing quality, but high protein content can mitigate the adverse impact of WSK on durum quality. Although protein content plays a dominant role, higher HVK might contribute positively to pasta firmness. There was no significant difference in yellow pigment content between HVK and WSK. However, pigment loss from semolina to dough was higher for WSK than HVK. Despite the difference in protein content, HVK and WSK have little difference in gluten strength. The monomeric protein was preferentially accumulated in HVK. The glutenin proteins of HVK and WSK were similar in the ratios of 1Bx/1By and HMW/LMW-GS. 相似文献