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191.
不同覆盖方式对旱地棉田土壤环境及棉花产量的影响 总被引:10,自引:1,他引:10
分析普通地膜覆盖、小麦秸秆覆盖、地膜 秸秆覆盖3种覆盖物对旱地棉田土壤环境、棉花产量构成因素的影响,结果表明:覆盖栽培能改善土壤环境,降低土壤容重,提高土壤水分利用率,调节土壤温、湿度,协调水热资源利用的同步性;秸秆覆盖能增加土壤养分含量,特别是速效钾含量;在棉花生长后期,提高叶面积指数,延长叶片功能期,提高棉株的光合能力从而防止棉花早衰,增加铃重,提高棉花产量。 相似文献
192.
高分子量麦谷蛋白亚基的品质效应研究进展 总被引:1,自引:0,他引:1
介绍了小麦高分子量谷蛋白亚基(HMW—GS)的遗传,不同基因位点及位点内各等位亚基对品质的效应等研究进展,提出了通过回交转育创建几套不同高分子量谷蛋白亚基的近等基因系群,然后在同一遗传背景和不同遗传背景条件下分析高分子量谷蛋白亚基及其组合的品质效应及与遗传基础的关系。 相似文献
193.
人为影响下古尔班通古特沙漠小尺度生态环境变化 总被引:1,自引:1,他引:1
随着沙漠中油气资源勘探开发、公路建设和重大工程相继实施 ,对生态环境的人为影响日益加深。本文以重大工程实验点为例 ,通过研究对比工程影响区内人工沙垄和自然沙垄的砂质新成土理化性状和植被群落特征 ,指出了沙漠生态环境在人为干扰下发生的一系列变化 ,以及受损生态环境在人们采取积极补救措施的情况下所具有的自然修复能力 相似文献
194.
1999- 2 0 0 1年进行了草生栽培对园温湿度和果实品质影响的试验。结果表明 :草生栽培可以有效地改善果园生态环境 ,降低久旱暴雨后的裂果率 ,有利于提高果的商品质量和经济效益。 相似文献
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197.
P. Galeffi G. Giunta S. Guida C. Cantale 《European journal of plant pathology / European Foundation for Plant Pathology》2002,108(5):479-483
Citrus tristeza virus (CTV) is one of the most destructive citrus virus diseases in the world. The construction of an engineered antibody, EMBL accession number AJ278109, able to specifically recognize its antigen, i.e. the coat protein of CTV, directly on infected plant material without any purification or manipulation of the entire woody plant. The potential uses of this engineered antibody are discussed. 相似文献
198.
199.
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
200.
M. Bertamini M. S. Grando K. Muthuchelian N. Nedunchezhian 《Physiological and Molecular Plant Pathology》2002,61(6):349
We have studied the effect of the apple proliferation phytoplasmal infection on some features of the thylakoids from field grown apple (Malus pumila) leaves. Changes in photosynthetic pigments, soluble proteins, ribulose-1,5-bisphosphate carboxylase, nitrate reductase, photosynthetic activities and thylakoid membrane proteins were investigated. The level of total chlorophyll and carotenoids were reduced in phytoplasma-infected leaves. Similar results were also observed for soluble proteins and ribulose- 1,5-bisphosphate carboxylase activity. The in vivo nitrate reductase activity was significantly reduced in infected leaves. When various photosynthetic activities were followed in isolated thylakoids, phytoplasmal infection caused marked inhibition of whole chain and photosystem II activity while the inhibition of photosystem I activity was only marginal. The artificial exogenous electron donors, diphenyl carbazide and hydroxylamine significantly restored the loss of photosystem II activity in infected leaves. The same results were obtained when Fv/Fm was evaluated by chlorophyll fluorescence measurements. The marked loss of photosystem II activity in infected leaves could be due to the loss of 47, 33, 28–25, 23 and 17 kDa polypeptides. It is concluded that phytoplasmal infection inactivates the donor side of photosystem II. This conclusion was confirmed by immunological studies showing that the content of the 33 kDa protein of the water-splitting complex was diminished significantly in infected leaves. 相似文献