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171.
本文讨论了唐菖蒲试管苗芽增殖过程中,不同植物生长调节剂、碳源、活性炭对芽增殖影响,试验结果表明0.5mg/LNAA和1mg/L的6-BA组合下,苗增殖效果好而且苗较壮,增殖倍数为5。用50g/L的市售白糖代替40g/L的纯蔗糖作为培养基的碳源是可行的,这样降低了配制培养基的成本,而且对试管苗的增殖和质量无影响。0.2%的活性炭,在30d内有利于试管苗株高的增加,但对芽的诱导无明显作用。 相似文献
172.
大豆灰斑病菌毒素生物活性分析 总被引:11,自引:1,他引:10
大豆灰斑病菌[Cercosporium sojina(Hara) Liu&Guo]可以产生有毒代谢物。滤液透析及热稳定性测试结果表明:该毒素可以穿过半透膜,为较小分子化合物并具有很强的热稳定性。该菌培养物浸提液经浓缩,硅胶柱层析可得粗毒素。生物测定结果表明:该毒素对大豆幼苗及叶片具有致萎作用。针刺叶片可产生类似真菌感染的病斑。浸渍处理后,可使叶组织失绿、萎蔫最后坏死,同时毒素对抗性不同的品种有鉴别作用。 相似文献
173.
Guojian Jiang 《Aquaculture Research》2010,41(9):1322-1330
The defence ability of Fenneropenaeus chinensis and Marsupenaeus japonicus against the intrusion of the white spot syndrome virus (WSSV) was compared after injecting WSSV intramuscularly by recording cumulative mortality, diagnosing the virus and examining variations in immunological parameters including the total haemocyte counts (THCs), phagocytic percentage (PP), plasma protein concentration (PPC), phenoloxidase (PO) and nitric oxide synthase (NOS) activity. The results showed that the variations in the immunological parameters of F. chinensis and M. japonicus showed similar trends. The THCs of the two species decreased significantly postchallenge of WSSV. The virus was detected at 78 h in M. japonicus and at 42 h in F. chinensis after infection, which was in correlation with the accumulative mortality, and the variations in PO, PP, NOS and PPC in the two species. All shrimps of F. chinensis in the mortality experiment died within 66 h, much more quickly than M. japonicus, whose cumulative mortality reached 100% after 198 h. In conclusion, the immune system of M. japonicus has a stronger resistant ability to antagonize and endure the invasion of WSSV than that of F. chinensis. 相似文献
174.
175.
叶杉 《福建农业大学学报(哲学社会科学版)》2007,10(5):126-128
从图书馆现场采购工作的优缺点入手,阐述了提高高校图书馆采购质量、不断完善现采工作必须从加强图书馆采购队伍建设、选择现采地点及现采工作中应注意的事项等方面着手。 相似文献
176.
Olga E. Scholten Ritsert C. Jansen L. C. Paul Keizer Theo S. M. De Bock Wouter Lange 《Euphytica》1996,91(3):331-339
Summary Inheritance of resistance to beet necrotic yellow vein virus (BNYVV) was studied in segregating F2 and backcross families obtained from crosses between resistant plants of the sugar beet selection Holly-1-4 or the wild beet accession Beta vulgaris subsp. maritima WB42 and susceptible parents. Greenhouse tests were carried out, in which seedlings were grown in a mixture of sand and infested soil. Virus concentrations of BNYVV in the rootlets were estimated by ELISA. To discriminate resistant and susceptible plants, mixtures of normal distributions were fitted to log10 virus concentrations, estimated for segregating F1, F2 and BC populations of both accessions. The hypothesis that Holly-1-4 contained one single dominant major gene was accepted. For WB42, results fitted with the hypotheses that resistance was based on either one (or more) dominant major gene(s) showing distorted segregation, or two complementary dominant genes, which are both required for resistance. Resistance from WB42 appeared to be more effective against BNYVV than resistance from Holly-1-4.This research was carried out as part of a PhD study at the Graduate School Experimental Plant Sciences (EPS), Department of Virology, Wageningen, The Netherlands 相似文献
177.
多球果型马尾松的形态和生殖生物学特征研究 总被引:2,自引:1,他引:2
本文对多球果型马尾松和常见型马尾松在生长状态、形态结构、生殖发育等方面的差异进行研究和分析.在多球果型马尾松雌性生殖枝上,能够着生40~80个球果(大孢子叶球),有的甚至可以达到193个以上.而在常见型马尾松的雌性生殖枝上, 通常只着生有1~8个球果,最常见的是着生2~4个球果.多球果型马尾松和常见型马尾松在雌球花的芽组织结构和雌球花的分化过程中有着明显的差异.通过显微分析我们发现:多球果型马尾松雌球花原基的发育在当年生过冬顶芽的下部,在它的上部,还发育有一系列的营养芽原基(10列以上).而常见型马尾松雌球花原基的发育在当年生过冬顶芽的顶端.雌球花发育机理的不同,决定了多球果型马尾松球果的着生部位发生了变异.多球果型马尾松球果着生在春梢的下(基)部,常见型马尾松球果着生在春梢的顶部.多球果型马尾松与常见型马尾松球果(大孢子叶球)的发育过程和发育起始时间不相同.通过对8~12月标本进行显微切片分析,多球果型马尾松球果的发育起始时间在当年的8月(过冬顶芽开始形成的同时),与小孢子叶球的发育起始时间同步.常见型马尾松球果的发育起始时间是当年的11月,两种类型马尾松的大孢子叶球都是在次年4月受粉,到第三年的11月种子成熟.多球果型马尾松球果比常见型马尾松球果多3个月的发育时间.多球果型马尾松个体大量的长串状多球果性状在历年都能重复出现,这说明该性状具有个体水平的稳定性.无性繁殖研究证明,多球果型马尾松的长串状多球果性状,可以通过嫩枝嫁接的方式,进行性状的传递.对多球果型马尾松进行有性繁殖研究时我们发现,多球果型马尾松的球果可以发育出种子,且成熟种子的发芽率为60%~76%.这说明多球果型马尾松与常见型马尾松一样,可以用种子进行后代繁殖.多球果型马尾松与常见型马尾松在形态和生长速率方面没有明显差异. 相似文献
178.
Summary Phenotypic stability of bacterial leaf spot resistance in peach (Prunus persica (L.) Batsch) regenerants, either selected at the cellular level for insensitivity to a toxic culture filtrate of Xanthomonas campestris pv. pruni or screened at the whole plant level for resistance to X. campestris pv. pruni, was investigated. A detached-leaf bioassay was used to evaluate the original regenerants again after three years in the greenhouse and also after a two to three year cycle of tissue culture propagation. Peach trees derived through micropropagation from the original regenerants were also evaluated after one to three years growth in the field. Although leaf spot resistance was retained in some regenerants over time in the greenhouse, following in vitro propagation, and under field conditions, resistance was either lost or not expressed in others. Regenerants # 19-1 and #156-6, derived from embryo callus of bacterial spot susceptible Sunhigh, were significantly more resistant than Sunhigh. High levels of resistance were exhibited in greenhouse plants and field-grown trees of regenerant #122-1, derived from embryo callus of moderately resistant Redhaven. This research provides additional evidence that selecting or screening for somaclonal variants with disease resistance is a feasible approach to obtaining peach trees with increased levels of bacterial spot resistance.Abbreviations TC
Tissue-Cultured
- TF
Toxic culture Filtrate 相似文献
179.
Eveline Teixeira Caixeta Aluízio Borém Samir de Azevedo Fagundes Silvia Niestche Everaldo Gonçalves de Barros Maurílio Alves Moreira 《Euphytica》2003,134(3):297-303
The existence of genetic variability for angular leaf spot (ALS) resistance in the common bean germplasm allows the development
of breeding lines resistant to this disease. The BAT 332 line is an important resistance source to common bean ALS. In this
work we determined the inheritance pattern and identified RAPD markers linked to a resistance gene present in BAT 332. Populations
F1, F2,BCs and BCr derived from crosses between BAT 332 and cultivar Rudá were used. Rudá is a commercial cultivar with carioca
type grains and susceptible to ALS. The resistance of BAT 332 to race 61.41 of the pathogen was confirmed. Segregation analysis
of the plants indicated that a single dominant gene confers resistance. For identification of RAPD markers linked to the resistance
gene, bulk segregant analysis (BSA) was used. Two RAPD markers,OPAA07950 and OPAO12950, linked in coupling phase at 5.10 and 5.83 cM of this gene, respectively, were identified. These molecular markers are important
for common bean breeders and geneticists as source of genetic information and for marker assisted selection in breeding programs.
This revised version was published online in July 2006 with corrections to the Cover Date. 相似文献
180.