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Sugarcane yields have been severely reduced by white leaf and grassy shoot phytoplasma diseases in many parts of Asia. Australian sugarcane crops are not known to be affected by these diseases, but plant pathogenic phytoplasmas found in other introduced and native grasses in northern Australia could pose a serious threat to the Australian sugarcane industry. To further evaluate this threat, leaves from plants of 20 grass species, with and without symptoms, were collected during field surveys in northern Australia and tested to determine whether phytoplasmas were present and whether symptoms were reliable indicators of phytoplasma presence. Molecular tools were used to detect and characterize phytoplasmas. Four different phytoplasmas were found in seven grass species known to grow near healthy sugarcane crops. All the phytoplasmas were closely related to sugarcane white leaf phytoplasma (SCWL), one of the phytoplasmas that causes disease in sugarcane in Asia. Four of the host plant species and two of the phytoplasmas were new records. The relationship between symptoms and phytoplasma presence was poor. Because some plants with symptoms tested negative for phytoplasmas, a series of surveys was carried out in which flowers, leaves, roots and stems of two known host plant species, Whiteochloa cymbiformis and Sorghum stipoideum, were tested separately on nine occasions during two wet seasons. This was done to investigate the distribution of phytoplasmas within plants over time. Results showed that spatial and temporal variation of phytoplasmas occurred in these two host plant species. Hence, evaluation of disease distribution within a region requires repeated testing of all plant parts from plants without symptoms, as well as those with symptoms. To date, there is no report of a vector capable of transmitting to Australian sugarcane the phytoplasmas found in grasses in this study. If one is present, or occurs in the future, then native and introduced grasses could constitute a large reservoir of phytoplasma for vectors to draw on. This work provides an early warning for the sugarcane industry that the potential for infection exists. 相似文献
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全国甘蔗野生种质资源的采集和考察 总被引:6,自引:1,他引:5
1985~1993年在全国进行了甘蔗野生种质资源的采集和考察。采集到甘蔗亚族(Saccharinae)内9个属18个种的无性系共824份,种植在云南农业大学校园内(昆明黑龙潭),建立了甘蔗资源圃。考察了甘蔗属(Saccharum)、蔗茅属(Erianthus)、河八王属(Narenga)和芒属(Miscanthus)中主要野生种的地理分布、开花期、形态特征、繁殖方式、生态适应性、锤度和种质流失的情况。探明了割手密(S.spontaneumL.)和斑茅(S.arundinaceumRetz)的开花期与原产地纬度和海拔的相关,探索了割手密与蔗茅(E.fulvusNees)茎秆锤度与地理分布的联系。 相似文献
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在呈贡劣质山地对墨西哥柏、银荆树植树造林进行了不同整地方式、植塘规格、种植密度、抚育方式的试验。结果:撩壕整地和水平台地的保存率及幼树生长量优于块状整地,且在阴坡深草地段尤为显著。3种植塘规格(60cm×60cm×60cm,50cm×50cm×50cm,40cm×40cm×40cm)对墨西哥柏的保存率和高、径生长差异不显著,对银荆差异极显著,大塘优于小塘。3种种植密度(1.5m×1.5m,1.5m×2m,2m×2m),对幼林期的高、径生长及冠幅大小无显著影响,在30°以上的陡坡,台地抚育优于菱形、扇形、块状抚育,与对照比较,4种抚育方式与之差异极显著。 相似文献
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Rob W. Briddon Patricia Lunness Ian D. Bedford Leony C. L. Chamberlin Theo Mesfin Peter G. Markham 《European journal of plant pathology / European Foundation for Plant Pathology》1996,102(4):397-400
The cause of a streak disease of pearl millet (Pennisetum glaucum), originating from Nigeria, has been attributed to a geminivirus belonging to the African streak virus cluster. A full-length, infectious clone of the virus was obtained which was transmissible by the vectorCicadulina mbila (Naudé). Analysis of the complete nucleotide sequence of the coat protein gene of this virus shows it to be most closely related to sugarcane streak virus. The possible evolutionary implications of this finding are discussed. 相似文献
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结合重庆市地形地貌特点和山区农业面源污染发生的因子,提出山区农业面源污染的防治对策。一方面必需结合当地的自然环境条件和经济发展水平提出农业面源污染的防治规划;另一方面必需结合生态农业建设这一主线,使物质、能量在生态系统内良性循环。紧紧抓住产生农业面源污染源的因子——化肥、农药、农田秸杆、畜禽粪便、农村生活废物等,提出科学的防治和减少途径。 相似文献
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Detection of Colletotrichum coccodes from soil and potato tubers by conventional and quantitative real-time PCR 总被引:4,自引:1,他引:4
Colletotrichum coccodes is the causal agent of the potato blemish disease black dot. Two PCR primer sets were designed to sequences of the ribosomal internal transcribed spacer (ITS1 and ITS2) regions for use in a nested PCR. The genus-specific outer primers (Cc1F1/Cc2R1) were designed to regions common to Colletotrichum spp., and the species-specific nested primers (Cc1NF1/Cc2NR1) were designed to sequences unique to C . coccodes . The primer sets amplified single products of 447 bp (Cc1F1/Cc2R1) and 349 bp (Cc1NF1/Cc2NR1) with DNA extracted from 33 European and North American isolates of C. coccodes. The specificity of primers Cc1NF1/Cc2NR1 was confirmed by the absence of amplified product with DNA of other species representing the six phylogenetic groups of the genus Colletotrichum and 46 other eukaryotic and prokaryotic plant pathogenic species. A rapid procedure for the direct extraction of DNA from soil and potato tubers was used to verify the PCR assay for detecting C. coccodes in environmental samples. The limit of sensitivity of PCR for the specific detection of C. coccodes when inoculum was added to soils was 3·0 spores per g, or the equivalent of 0·06 microsclerotia per g soil, the lowest level of inoculum tested. Colletotrichum coccodes was also detected by PCR in naturally infested soil and from both potato peel and peel extract from infected and apparently healthy tubers. Specific primers and a TaqMan fluorogenic probe were designed to perform quantitative real-time (TaqMan) PCR to obtain the same levels of sensitivity for detection of C. coccodes in soil and tubers during a first-round PCR as with conventional nested PCR and gel electrophoresis. This rapid and quantitative PCR diagnostic assay allows an accurate estimation of tuber and soil contamination by C. coccodes . 相似文献
30.
燕麦在青藏高原地区自然环境条件下有着独特的适应能力,并具有丰产、稳产的特征,在放牧牲畜冷季补饲中发挥着其它饲草饲料作物品种不可替代的作用,是解决冷季缺草、确保高寒草地畜牧业生产可持续发展的最佳品种。农业栽培技术措施的科学化、合理化应用对燕麦营养体农业生产蕴藏着巨大的潜力。 相似文献