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61.
通过研究新疆枣树与绿豆间作对枣园土壤线虫群落结构及土壤微生物数量的影响,以评价枣园间作绿豆的合理性。对新疆和田枣园枣树单作及间作条件下的枣树根际土壤线虫群落组成、营养结构及微生物数量进行分析。结果表明,与枣树单作相比,枣园行间间作绿豆,枣树根际土壤线虫群落组成发生改变,浅层及深层土壤食细菌线虫比例增高18.93%和21.45%,植物寄生线虫比例降低62.56%和61.62%;枣豆间作枣树根际浅层、深层土壤细菌数量显著增加,分别增加51.51%、41.13%,真菌数量显著降低,分别降低50.11%和37.53%,使得土壤由"真菌型"向"细菌型"转变;土壤浅层、深层pH降低至7.92和7.93,浅层、深层含水量上升至7.57%和5.80%。枣树间作绿豆有益于枣树根际土壤健康。  相似文献   
62.
The nematophagous fungi Arthrobotrys oligospora and Myzocytiopsis glutinospora increase to large numbers (>103 propagules/g of soil) when moth larvae killed by entomopathogenic nematodes are added to soil microcosms. In spite of these increases, it is unclear how effective these nematophagous fungi are in suppressing nematodes. We measured nematode mortality in microcosms with small numbers of assay nematodes, and we examined assay nematodes recovered at the end of the experiment for signs of fungal parasites. Because the microcosms did not have a moat or other refuge, the assay nematodes remained vulnerable for the 3 days that they were in the soil. Mortality in this experiment was not substantially increased compared to a previous experiment, which measured the mortality of a larger number of assay nematodes in microcosms surrounded by a moat. Mortality, however, increased from 34 to 50% when recovered assay nematodes were examined and when those with conidia of the nematophagous fungus Hirsutella rhossiliensis were considered dead. The zoosporic fungus M. glutinospora was not detected, perhaps because the soil water potential was too low. Contrary to our expectations, there was no evidence of negative feedback on nematodes (i.e., no evidence of density-dependent mortality) because the addition of dead moth larvae greatly increased numbers of resident nematodes and A. oligospora but did not greatly affect the probability of nematode mortality.  相似文献   
63.
Mononchida nematode populations were analysed in parallel with stages of natural forest dynamics in a nature reserve within the state forest of Fontainebleau (La Tillaie, France). Changes in the relative abundance of species and morphometric variability of Clarkus papillatus provided additional information about the differentiation of sites on acid mull humus. Especially in clearings, the role of the herbaceous layer and dead fallen wood was demonstrated by the improvement of the humus form. Furthermore, although not typically representative of successional stages of forest development, Mononchida indicate the existence of changes of environmental conditions. These changes relate especially to a gradual differentiation between two groups of sites, one represented by the bare ground in clearing (located within the mature stage), growth and mature stages, and the other associated with the senescent stage and the clearing located near this site. Differences illustrated by the two types of clearing indicate the important role of windthrows in the forest regeneration process.  相似文献   
64.
取闽南地区牛、羊消化道常见的8种线虫第三期幼虫虫体,对它们进行形态鉴别,从而弄清它在生前诊断上的价值。  相似文献   
65.
《Pedobiologia》2014,57(3):147-154
Fumigation is a common practice to control soil pathogens, but little is known about the impacts of fumigation on other soil biota groups. The purpose of this study was to investigate the effects of fumigation on soil biota, including microorganisms, nematodes, and microarthropods. Bacteria were the most resistant group and some survived following treatment with 2000 mg kg−1 dazomet. Some soil fungi survived 100 mg kg−1 dazomet, although they were mainly Trichoderma. The fungi pathogenic to ginseng were all killed at 100 mg kg−1, and showed both inter- and intra-species variation with respect to dazomet susceptibility. Among the nematodes, Aphelenchus was relatively resistant. The results suggested that susceptibility of soil organisms to dazomet differs between species, and that tolerant organisms may engage in recolonisation. In microcosm experiments, the microbial biomass and community were assessed using phospholipid fatty acid (PLFA) analysis while recolonisation of soil organisms was controlled by mesh size. The bacterial PLFA levels were changed little after fumigation, whereas the fungal PLFA levels gradually increased after fumigation. Principal analysis of the PLFA levels and the ratio of gram-negative to gram-positive bacteria showed that fumigation altered the microbial community. The number of nematodes did not recover even at 12 weeks after fumigation. The increased Collembolan numbers suggest that fumigated soil could be recolonised by specific organisms that have adapted to the conditions. In field experiments, we tested the ability of organic materials to enhance the recolonisation of fumigated soil by soil organisms. Bean powder and rice bran increased the microbial PLFA levels and nematode numbers at 6 weeks and 12 weeks after treatment, and the abundance of nematodes continued to increase 42 weeks after fumigation. The abundance of microarthropods was only slightly affected by the presence of the organic materials. We suggest that treating fumigated soils with organic materials is an effective technique to promote soil organism numbers. In addition, Trichoderma was observed to be relatively resistant to fumigation, and therefore, we propose that the fumigation effect can be improved by using a combination of resistant Trichoderma and dazomet.  相似文献   
66.
在初果期、盛果期和采果末期3个时期,研究了3种处理(太阳能防治剂、无公害草莓重茬病防治剂、溴甲烷)对重茬大棚丰香草莓根际土壤微生物数量的影响,从根际土壤中分离筛选得到14个纯菌株并做了初步的菌属鉴定,试验结果表明:药剂处理后的土壤比对照真菌、放线菌数量减少,细菌数量增多,真菌与细菌的比值显著降低,并与果实产量有显著相关性;线虫数量的变化趋势为初果期多,盛果期、采果末期逐渐减少。  相似文献   
67.
Plants can mediate interactions between aboveground herbivores and belowground decomposers as both groups depend on plant-provided organic carbon. Most vascular plants also form symbiosis with arbuscular mycorrhizal fungi (AMF), which compete for plant carbon too. Our aim was to reveal how defoliation (trimming of plant leaves twice to 6 cm above the soil surface) and mycorrhizal infection (inoculation of the fungus Glomus claroideum BEG31), in nutrient poor and fertilized conditions, affect plant growth and resource allocation. We also tested how these effects can influence the abundance of microbial-feeding animals and nitrogen availability in the soil. We established a 12-wk microcosm study of Plantago lanceolata plants growing in autoclaved soil, into which we constructed a simplified microfood-web including saprotrophic bacteria and fungi and their nematode feeders. We found that fertilization, defoliation and inoculation of the mycorrhizal fungus all decreased P. lanceolata root growth and that fertilization increased leaf production. Plant inflorescence growth was decreased by defoliation and increased by fertilization and AMF inoculation. These results suggest a negative influence of the treatments on P. lanceolata belowground biomass allocation. Of the soil organisms, AMF root colonization decreased with fertilization and increased with defoliation. Fertilization decreased numbers of bacterial-feeding nematodes, probably because fertilized plants produced less root mass. On the other hand, bacterial feeders were more abundant when associated with defoliated than non-defoliated plants despite defoliated plants having less root mass. The AMF inoculation per se increased the abundance of fungal feeders, but the reduced and increased root AM colonization rates of fertilized and defoliated plants, respectively, were not reflected in the numbers of fungal feeders. We found no evidence of plant-mediated effects of the AM fungus on bacterial feeders, and against our prediction, soil inorganic nitrogen concentrations were not positively associated with the concomitant abundances of microbial-feeding animals. Altogether, our results suggest that (1) while defoliation, fertilization and AMF inoculation all affect plant resource allocation, (2) they do not greatly interact with each other. Moreover, it appears that (3) while changes in plant resource allocation due to fertilization and defoliation can influence numbers of bacterial feeders in the soil, (4) these effects may not significantly alter mineral N concentrations in the soil.  相似文献   
68.
Banana hybrids with resistance to Yellow Sigatoka and Black Leaf Streak disease were evaluated for resistance to the burrowing nematode Radopholus similis and to the lesion nematode Pratylenchus coffeae in a growth chamber at 24–28°. Plants produced by tissue culture were acclimatised for 6 weeks prior to inoculation. Forty-five days after inoculation with nematodes, the root systems were processed and nematode numbers assessed. Two cultivars of Grande Naine (Musa AAA, Cavendish subgroup, ITC1256 and cv902) and one cultivar of Yangambi Km5 (Musa AAA, Ibota subgroup, ITC1123) were used respectively as susceptible and resistant controls. Results based on multiplication rates and root infestations showed that three of these hybrids (FB918, FB919 and FB924) were not significantly different from the resistant control Yangambi Km5 with a lower multiplication of R. similis. Similarly four of these hybrids (FB918, FB919, FB920, FB924) showed a lower multiplication of P. coffeae, not significantly different from the same resistant control. This is the first study that shows a partial resistance to both nematode species, R. similis and P. coffeae within synthetic hybrids of M. acuminata, adding an important extra value to these dessert banana hybrids formerly bred to resist to Mycosphaerella leaf spot diseases.  相似文献   
69.
本文利用先期从BAC文库获得的NBS-LRR类候选抗病基因克隆序列Pt8a和Pt9a,进一步开发与柑桔线虫抗性丰效基因位点Tyrl连锁的分子标记.以Pt8a和Pt9a序列作探针,通过高密度克隆印迹杂交,从BAC文库筛选出200个以上的阳性克隆,以阳性克隆插入序列设计引物,对柑桔抗线虫材料和感线虫材料开展以PCR扩增为基础的集群分离分析,发现一部分克隆序列与柑桔线虫抗性主效基因位点Txrl紧密连锁;再通过染色体步行测序,分别从3个克隆(7A4,4L17和29F20)获得3个完整的NBS-LRR类候选抗病基因序列.从此类序列开发更高特异性的分子标记,并在利用原有分子标记的基础上,对柑桔线虫抗性杂交后代群体(9145 family)构建较高密度的遗传图谱:同时,将新开发的分子标记应用于柑桔衰退病抗性杂交后代群体(9401 family),以初步估算柑桔线虫抗性主效基因位点Tyrl与柑桔衰退病抗性基因Ctv的遗传距离.  相似文献   
70.
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