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171.
加快淮北地区杂交粳稻发展的几个问题   总被引:2,自引:0,他引:2  
回顾了淮北地区十多年来杂交粳稻示范推广的发展过程,分析了影响杂交粳稻发展的主要原因,并论述了加快该地区杂交粳稻发展的几个主要问题。  相似文献   
172.
1977~1979连续三年在河南省浚县玉米小斑病严重流行地区进行试验。三年来均按相同的田间设计进行。采用中等感病品种洛阳白马牙,在自然发病条件下,间隔不同时期喷施敌菌灵保护叶面,人为地造成不同程度发病,至流行终止期,各处理间有显著不同的病情差別。产量差异亦极显著。将三年试验结果用多元协方差分析,推导出二组经验回归方程:(?)=27.82-0.1368X_1-0.1435X_2……(1)及(?)=23.48-0.1368X_1-0.1435X_2……(2)此处(?)为理论产量,X_1、X_2分别为灌浆期和乳熟期的病情指数,而减产率(L%)则为:L(%)=(1-(?)/a)×100,此处a为回归方程中的常数项。据分析,当玉米生育期(6月下旬至9月中旬)雨量较大,为300~365毫米,灌浆至乳熟期(8月下旬至9月上旬)雨日较少、为3~6时,玉米产量较高,此种情况下,应选用常数值较大的(1)式;当玉米生育期雨量较小、为160毫米左右,灌浆至乳熟期雨日较多、为15日左右时,玉米产量较低,此种情况下,宜选用常数值较小的(2)式。  相似文献   
173.
纹枯病菌絲在田間稻株上的消长受水稻各生育期、及当时气候条件影响很大;一般在孕穗职前菌絲量少,孕穗至乳熟初期分布量大、蔓延速度快;抽穗期后10天达到最高峯。早稻成熟期菌絲停止蔓延或消失;晚稻(尤其連作晚稻)抽穗期后因寒潮或低温而停止蔓延;乳熟期趋于消失。纹枯病菌核的发育一般要通过四个时期,无休眠期。病情的水平扩展速度以孕穗至抽穗期最快,乳熟期几停止;而垂直扩展速度以水稻分蘖期最慢,抽穗至乳熟期最快。矮稈品种2—3天,高稈品种3—5天便可士升一个叶位,乳熟后緩慢。晚稻則以抽穗期最快,抽穗后緩慢,乳熟后病势停滞不前。在水稻易感期(孕穗—抽穗),遇到梅雨的两端低温,职及矮稈品种、多肥、密植,在一定有效菌核量下,是本病流行期、流行程度的关鍵因素。防治适期应以菌絲蔓延前期,卽在分蘖期至孕穗期施药,以杀伤菌絲为主;有必要时可在抽穗期再施药一次,保护剑叶,以抑制菌核形成、兼杀菌絲为主。如对矮稈品种、多肥栽培的水稻,于分蘖期施药保护是很必要的。  相似文献   
174.
为了探求荔枝蝽蟓的综合防治方法,本文对荔枝蝽蟓的生物学特性(田間迁移习性和大发生因子)、药剂防治与生物防治配合的可能性,进行了初步研究。荔枝蝽蟓在广州地区年发生一代,卵期在3月上、中旬开始、盛期在3月下旬至5月中旬,以后渐少,8月底結束。职成虫越冬,越冬場所除荔枝树外,尚有龙跟树、烏欖树、黄皮树、芒果树、鴨脚木、蔭香树等。荔枝蝽蟓的成虫、若虫和卵,以多花果树上发生較多。荔枝蝽蟓的大发生,与当年花果树多少有密切关系,卵寄生蜂和鳥类也有一定抑制作用。荔枝蝽蟓的防治:收果后期噴射敌百虫(1:800倍浓度)对成、若虫都有更好防治作用;用蝽卵跳小蜂、黄腹卵蜂防治亦有一定效果。如两者结合施用,配合恰当,可減少用药次数,保持卵寄生蜂群落,从而收更全面防治效果。  相似文献   
175.
1983~1985年以“黄壳早”、“芦竹青”、“古巴苎麻”和“武冈红皮种”为材料进行自交,并观测了自交一代的分离和变异情况,研究结果表明:a.根据自交一代的形态分类,可将“芦竹青”繁殖后代分为40个类型,“芦竹青”自交一代的麻骨颜色分离为四种,其分离比例为9.3:4.2:3:0.7,基本符合孟德尔遗传规律;b.个体间产量性状差异很大,株高变冥为0.23~1.68m,茎粗变异为0.48~1.14 cm,有效株变异为1~23株;c.40个类型的纤维细度的变异呈正态分布,变异为1168~1905公支,最细的类型和最粗的类型相差747支上述结果表明:苎麻自交后代的形态性状、产量性状和纤维细度均产生显著的分离和差异。  相似文献   
176.
With three plant pathogens,Botrytis cinerea, Venturia inaequalis and Puccinia graminis f. sp.tritici, the time course of sterol biosynthesis during spore germination was examined by labeling experiments along with the question whether this pathway could be inhibited by triazole fungicides. Conidia ofB. cinerea andV. inaequalis are able to synthesize sterols immediately after the beginning of the germination process when the germ tubes have not yet emerged. On the contrary uredospores ofP. graminis start sterol biosynthesis after 6 to 8 h germination time almost at the end of the germ tube phase, indicating that sterol reserves of the spores are likely to be used for the germ tube growth.The sterol C-14 demethylation appeared to be the rate limiting step within the sterol biosynthetic pathway: the half life of 24-methylenedihydrolanosterol was less than 1 h forB. cinerea. It was more than 1 h forV. inaequalis and 3 h forP. graminis. Independent of these differences in the time course of sterol biosynthesis and in the C-14 demethylation rate, the synthesis of sterols in germinating spores was strongly inhibited by triazole fungicides in all three pathogens examined. In contrast toP. graminis, this inhibition could be demonstrated withB. cinerea andV. inaequalis even in ungerminated conidia, indicating that the fungicides were rapidly taken up and reached their target within 1 or 2 h. These results are discussed along with the question whether spore germination can be used as a bioassay for the estimation of sensitivities of triazole fungicides.  相似文献   
177.
The inherent resistance risk forMonilinia fructicola against sterol-biosynthesis inhibitors (SBIs) was estimated inin vitro andin vivo laboratory studies. Several mutant strains were selected on media amended with the triazole fungicides penconazole, etaconazole or the morpholine fungicide fenpropimorph.The potential forM. fructicola to develop resistance to the triazoles or to the morpholines was similar.The level of resistance attained did not differ for the two classes of fungicides after a single cycle of treatment with nitrosoguanidine (NTG). Attemps to select mutants with a higher level of resistance to penconazole after successive mutagenic treatments were successful. Most of the mutants were less fit than wild-type strains. Mutants with a low level of resistance had an almost normal mycelial growth rate, whereas growth of mutants with a higher level of resistance was significantly reduced. Spore production was highest in the wild-type strains, similar to the latter in a few resistant strains and less in most others. Only one mutant with an intermediate level of resistance could successfully compete in a mixed population with a wild type strain during successive infection cycles on peaches. Resistance was not stable in highly resistant mutants. Cross resistance to the inhibitors of 14-methylsterol demethylation (DMIs) tested was confirmedin vitro andin vivo for all mutant strains. One DMI-resistant mutant was also resistant to fenpropimorph and two fenpropimorph-resistant mutants were resistant to penconazole.  相似文献   
178.
Colonization of rose by powdery mildew (Sphaerotheca pannosa) is described in terms of mycelium growth, conidiophore production and sporulation in time. The data used are gathered during different years, put together and treated by means of graphic models. Colonies could be separated into fast and slow growing colonies. Colonies initiated on leaves of increasing age showed a decreasing growth rate. Production of conidiophores and conidia started on the same day, and the relative activity of conidiophore production reached its maximum 6 days after the end of the latency period, followed 1 day later by the maximum activity of conidium production. Both conidiophore and conidium production continued for a long time at a low level. The effect of leaf age on conidiophore production found expression in differences in production rate during the first days of colony development and in final production levels. Observations on naturally infected leaves in an outdoor experiment showed a rapid decrease of sporulation on leaves of 10 days and older. Highest percentages of sporulating leaf area were observed on leaves between 7 and 10 days old.  相似文献   
179.
Samples of heavily infested crop residues were incorporated in static compost heaps (2.5–4.6 m3) of the Indore type. Temperature increased to 50–70°C within 6 days depending on the type of crop residues used and the location within the heap. The heat phase (>40 °C) lasted 2–3 weeks and was followed by a c. 5-months maturation phase (<40 °C). Among the 17 pathogens tested, onlyOlpidium brassicae and one of the four formae speciales ofFusarium oxysporum that were tested survived composting, but also their inoculum was greatly reduced.Survival during specific phases of composting was studied by incorporation and retrieval of samples at various stages of the process.F. oxysporum f. sp.melonis was completely inactivated andO. brassicae andPlasmodiophora brassicae were almost completely inactivated during the short heat phase. The three pathogens survived the long-lasting maturation phase without loss of viability. Heat evolved during composting was found to be the most important factor involved with sanitation of crop residues. The possible involvement of fungitoxic conversion products and microbial antagonism is discussed.  相似文献   
180.
天津地区鸡大肠杆菌病病原分离及病原特性   总被引:1,自引:0,他引:1  
沈华  张安国 《华北农学报》1996,11(2):112-116
从天津地区10个区县、23个养鸡场的241只疑似大肠杆菌病病例中,分离出病原菌92株,所得菌株符合大肠杆菌的微生物学特性。致病性在各菌株间略有差异。分离菌对氟哌酸、庆大霉毒、氯霉素最为敏感。抗“O”血清型鉴定,结果表明,分离菌株分属25个血清型,并以O111、O89、O86、O30、O78为主。从优势血清型中选取的菌株,均具有良好的抗原性。  相似文献   
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