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1.
对5个小麦不同组合基因型的F1,F2,F3花药进行培养,结果表明:不同组合基因型在同一杂种世代的花药愈伤组织诱导率、愈伤组织鲜重和绿苗分化率等方面存在较大差异,而同一组合基因型在不同杂种世代的花药愈伤组织诱导率、愈伤组织鲜重和绿苗分化率等方面差异较小。花药愈伤组织诱导率与绿苗分化率具有显著的相关性(r2=0.903)。以石4185为亲本配制的两个组合基因型,在F1,F2,F3都表现出较高的花药愈伤组织诱导率和绿苗分化率,说明石4185是理想的花培育种桥梁亲本。  相似文献   

2.
对5个小麦不同组合基因型的F1,F2,F3花药进行培养,结果表明:不同组合基因型在同一杂种世代的花药愈伤组织诱导率、愈伤组织鲜重和绿苗分化率等方面存在较大差异,而同一组合基因型在不同杂种世代的花药愈伤组织诱导率、愈伤组织鲜重和绿苗分化率等方面差异较小。花药愈伤组织诱导率与绿苗分化率具有显著的相关性。以石4185为亲本配制的两个组合基因型,在F1,F2,F3都表现出较高的花药愈伤组织诱导率和绿苗分化率,说明石4185是理想的花培育种桥梁亲本。  相似文献   

3.
光身稻的培养特性研究   总被引:3,自引:0,他引:3  
本文对光身稻培养特性进行了系统研究。结果指出:(1)光身稻的成熟胚培养力极低,其绿苗分化率几乎等于零,为0.7%,但其幼穗培养力则较高,绿苗分化率为44.8%; (2)光身稻的花药愈伤组织出现时间较早,为25天左右,而且愈伤组织诱导率也较高,为7%,但其绿苗分化率很低,仅为0.35%; (3)光身稻的适宜诱导培养基为M8; (4)花药愈  相似文献   

4.
梁宝萍  王勇  赵红星  李艳  姜俊  段莹 《种子》2021,(1):99-103
以4个茄子品种的花药为外植体,研究茄子诱导花药愈伤组织及不定芽分化.结果表明,西安绿茄,豫艺2号主要分化黄白色紧密型愈伤,这种类型的愈伤分化不定芽较多,翠绿二号,黑仙子分化黄白色松散型愈伤.松散型和紧密型愈伤组织均能分化出绿苗,但松散型愈伤分化的绿苗畸形率高,容易生长缓慢,玻璃化.豫艺2号和西安绿茄适合在F1培养基上分...  相似文献   

5.
取普通野生稻与普通栽培稻杂交组合共10个,研究了不同组合、不同世代、培养基配比及培养时变温处理等与花药培养效率的关系。结果表明:杂交组合间有差异,普通野生稻与粳型稻杂交其后代花培易成绿苗;F1比F2、F3愈伤组织诱导率和分化率均高;培养基以改良N6培养基最好:变温处理可提高愈伤组织诱导率和绿苗分化率  相似文献   

6.
固体培养基上浸润培养提高花粉植株诱导率的研究   总被引:5,自引:0,他引:5  
在30×170mm的试管内,倒入25~30ml加琼脂固化的C_(17)培养基,接种冬小麦花药后注入2ml左右不加琼脂而浓度相同的C_(17)培养液浸润培养,冬小麦花药愈伤组织诱导率可从固体培养基的13.94%提高到29.95%,愈伤组织的绿苗分化率还比固体培养基提高10.2%,分化绿苗丛数占接种花药的10.94%,是固体培养的2.37倍。  相似文献   

7.
为进一步提高小麦花药培养的效率,从而加快花培育种的进程,对140份不同基因型的小麦亲本及其杂种F1和F3代进行花药培养,并对各世代不同基因型小麦的花药培养力进行研究。结果表明:小麦不同基因型及亲本的花药愈伤组织诱导率在2.89%~41.25%之间,平均为3.55%,绿苗分化率在0%~70.00%之间,平均为33.05%;114份不同基因型小麦F1代杂种材料中,有107份材料能够诱导出愈伤组织,愈伤组织诱导率最低为0%,最高为76.25%,平均为11.59%,绿苗分化率在0%~160.00%之间,平均为29.20%;F3代材料均能诱导出愈伤组织,愈伤诱导率在4.58%~80.83%之间,平均为16.39%,绿苗分化率在0%~71.43%之间,平均为34.99%。因此,不同基因型小麦材料的愈伤组织诱导率、绿苗分化率和绿苗产率在各材料间差异很大。依据高培养力组合亲本组配的规律,筛选到可作为桥梁亲本的材料(品种)有:‘宁春4号’、Jinghong No.2、‘鉴63’、Chuanmai 18、Synthderiv.29589、S111、D-27、‘晋匽746-9’和K6-39等。  相似文献   

8.
稀土和基因型对小麦花培绿苗分化率的影响   总被引:2,自引:1,他引:2  
选用3个年度10个不同基因型的小麦F1的组合进行花药培养,在分化培养基中加入不周浓度的稀土元素 (RE)作为添加剂,研究稀土对小麦花培愈伤组织绿苗分化率的影响。结果表明:小麦花药培养绿苗分化率在含有不同浓度的稀土(0-3.0 mg/L)的培养基中差异达到极显著水平,在转愈伤组织初期,R3处理能显著提高小麦花培愈伤组织绿苗分化率(25.83%)。  相似文献   

9.
对79份采自广西不同地理环境的不同类型的普通野生稻进行了花药培养研究,发现不同类型材料的花培力有较大的差异,有41个编号的材料得到花粉绿苗。试验结果表明:孕穗期施复合肥料不仅提高了供体植株的营养水平,而且也明显地提高了花粉愈伤组织诱导频率。接种前稻穗用6—8℃低温预处理8—12天,愈伤组织诱导率和绿苗分化率可提高  相似文献   

10.
S-3307对水稻花药愈伤组织诱导、分化及其壮苗的效应   总被引:10,自引:1,他引:10  
冯英  薛庆中 《作物学报》2001,27(6):817-821
研究了植物生长延缓剂S-3307对水稻花药培养的效应.在诱导培养基中,低浓度(≤1mg/L)的S-3307可以明显提高愈伤诱导率和绿苗分化率,高浓度(≥10mg/L)的S-3307却致花药发黄,几乎不能生长.在分化培养基中添加低浓度(≤1mg/L)S-3307,有助于绿苗分化率成倍提高,当S-3307的浓度为1mg/L时,绿苗分化率达到最大值,同时白苗分化率显著降  相似文献   

11.
Jens Jensen 《Euphytica》1979,28(1):47-56
Summary The high-lysine gene in Risø mutant 1508 conditions an increased lysine content in the endosperm via a changed protein composition, a decreased seed size, and several other characters of the seed. The designation lys3a, lys3b, and lys3c, is proposed for the allelic high-lysine genes in three Risø mutants, nos 1508, 18, and 19. Linkage studies with translocations locate the lys3 locus in the centromere region of chromosome 7. A linkage study involving the loci lys3 and ddt (resistance to DDT) together with the marker loci fs (fragile stem), s (short rachilla hairs), and r (smooth awn) show that the order of the five loci on chromosome 7 from the long to the short chromosome arm is r, s, fs, lys3, ddt. The distance from locus r to locus ddt is about 100 centimorgans.  相似文献   

12.
Autotoxicity restricts reseeding of alfalfa (Medicago sativa L.) after alfalfa until autotoxic chemical(s) breaks down or is dispersed into external environments. A series of aqueous extracts from leaves, stems, roots and seeds of alfalfa ‘Vernal’ were bioassayed against alfalfa seedlings of the same cultivar to determine their autotoxicity. The highest inhibition was found in the extracts from the leaves. Extracts at 40 g dry tissue l?1 from alfalfa leaves were 15.4, 17.5 and 28.7 times more toxic to alfalfa root growth than were those from roots, stems and seeds, respectively. A high‐performance liquid chromatography (HPLC) analysis with nine standard compounds showed that the concentrations and compositions of allelopathic compounds depended on the plant parts. In leaf extracts that showed the most inhibitory effect on root growth, the highest amounts of allelochemicals were detected. Among nine phenolic compounds assayed for their phytotoxicity on root growth of alfalfa, coumarin, trans‐cinnamic acid and o‐coumaric acid at 10?3 m were most inhibitory. The type and amount of causative allelochemicals found in alfalfa plant parts were highly correlated with the results of the bioassay, indicating that the autotoxic effects of alfalfa plant parts significantly differed.  相似文献   

13.
[Objectives]This study aimed to establish a QAMS(quantitative analysis of multi-components by single-marker)method for simultaneous determination of four phenol...  相似文献   

14.
Development of onion (Allium cepa L., cv. ‘Early Cream Gold’) seed under cool climate conditions in Tasmania, Australia occurred over a longer duration than previously reported, but similar patterns of change in yield components were recorded. In contrast to previous studies, umbel moisture content declined from 85 to 67 % over 57 days while seed moisture content decreased from 85 to 31 %. Seed yield continued to increase over the duration of crop development, with increasing seed weight compensating for seed loss resulting from capsule dehiscence in the later stages of maturation. Germination percentage was high and did not vary significantly from 53 to 77 days after full bloom (DAF), but mean germination time declined and uniformity of germination increased significantly over the same time period. The percentage abnormal seedlings declined with later harvest date, resulting in highest seed quality at 77 DAF. The results of this study suggest that the decision to harvest cool climate onion seed crops before capsule dehiscence will result in a loss of potential seed yield and quality.  相似文献   

15.
[Objectives]To optimize the water extraction process of Chinese Herbal Compound Man Gan Ning and establish a method for its extraction and content determination...  相似文献   

16.
Progress is being made, mainly by ICARDA but also elsewhere, in breeding for resistance to Botrytis, AScochyta, Uromyces, and Orobanche; and some lines have resistance to more than one pathogen. The strategy is to extend multiple resistance but also to seek new and durable forms of resistance. Internationally coordinated programs are needed to maintain the momentum of this work.Tolerance of abiotic stresses leads to types suited to dry or cold environments rather than broad adaptability, but in this cross-pollinated species, the more hybrid vigor expressed by a cultivar, the more it is likely to tolerate various stresses.  相似文献   

17.
T. Visser  E. H. Oost 《Euphytica》1981,30(1):65-70
Summary Apple and pear pollen was irradiated with doses of 0, 50, 100, 250 and 500 krad (gamma rays) and stored at 4°C and 0–10% r.h. From the in-vitro germination percentages an average LD 50 dose of about 220 krad was estimated. For both irradiated and untreated pollen a close and corresponding lineair relationship existed between germination percentage and pollen tube growth.Irradiated pollen was much more sensitive to dry storage conditions than untreated pollen, resulting in less germination and more bursting. Apparently, irradiation caused the pollen cell membrane to lose its flexibility faster than normal. Rehydration of dry-stored, irradiated pollen in water-saturated air restored germination percentages up to their initial levels. The importance of this procedure in germination trials is stressed.  相似文献   

18.
[Objectives] To determine the optimum extraction technology for total phenols of leaves in Acanthopanax giraldii Harms.[Methods]The single factor test and ortho...  相似文献   

19.
E. Keep 《Euphytica》1986,35(3):843-855
Summary Cytoplasmic male sterility (cms) is described in the F1 hybrids Ribes × carrierei (R. glutinosum albidum × R. nigrum) and R. sanguineum × R. nigrum. In backcrosses to R. nigrum, progenies with R. glutinosum cytoplasm were either all male sterile, or segregated for full male fertility (F) and complete (S) and partial (I) male sterility. Ratios of F:I+S suggested that two linked genes controlled cms, F plants being dominant for one (Rf 1) and recessive for the other (Rf 2).Segregation for cms in relation to three linded genes, Ce (resistance to the gall mite, Cecidophyopsis ribes), Sph 3(resistance to American gooseberry mildew, Sphaerotheca mors-uvae) and Lf 1(one of two dominant additive genes controlling early season leafing out) indicated that Rf 1and Rf 2were in this linkage group. The gene order and approximate crossover values appeared to be: % MathType!MTEF!2!1!+-% feaafiart1ev1aaatCvAUfeBSjuyZL2yd9gzLbvyNv2CaerbuLwBLn% hiov2DGi1BTfMBaeXafv3ySLgzGmvETj2BSbqef0uAJj3BZ9Mz0bYu% H52CGmvzYLMzaerbd9wDYLwzYbItLDharqqr1ngBPrgifHhDYfgasa% acOqpw0xe9v8qqaqFD0xXdHaVhbbf9v8qqaqFr0xc9pk0xbba9q8Wq% Ffea0-yr0RYxir-Jbba9q8aq0-yq-He9q8qqQ8frFve9Fve9Ff0dme% aabaqaciGacaGaamqadaabaeaafaaakeaacaWGdbGaamyzamaamaaa% baGaaiiiaiaacccacaGGWaGaaiOlaiaacgdacaGG0aGaaiiiaiaacc% caaaGaaiiiaiaacccacaGGGaGaamOuaiaadAgaliaaigdakmaamaaa% baGaaiiiaiaacccacaGGGaGaaiiiaiaaccdacaGGUaGaaiOmaiaacs% dacaGGGaGaaiiiaiaacccacaGGGaGaaiiiaaaacaWGsbGaamOzaSGa% aGOmaOWaaWaaaeaacaGGGaGaaiiiaiaacccacaGGGaGaaiiiaiaacc% cacaGGGaGaaiiiaiaacccaaaGaamitaiaadAgaliaaigdakmaamaaa% baGaaiiiaiaacccacaGGGaGaaiiiaiaacccacaGGGaGaaiiiaiaacc% cacaGGGaGaaiiiaiaacccacaGGGaaaaiaadofacaWGWbGaamiAaSGa% aG4maaaa!6E4D!\[Ce\underline { 0.14 } Rf1\underline { 0.24 } Rf2\underline { } Lf1\underline { } Sph3\]. Crossover values of 0.36 for Ce-Lf 1, and 0.15 for Lf 1-Sph 3were estimated from the relative mean differences in season of leafing out between seedlings dominant and recessive for Ce and Sph 3.It is suggested that competitive disadvantage of lf 1-carrying gametes and/or zygotes at low temperatures may be implicated in the almost invariable deficit of plants dominant for the closely linked mildew resistance allele Sph 3. Poor performance of lf 1- (and possibly lf 2-) carrying gametes and young zygotes during periods of low temperature at flowering might also account for the liability of some late season cultivars and selections to premature fruit drop (running off).  相似文献   

20.
Parasitic angiosperms cause great losses in many important crops under different climatic conditions and soil types. The most widespread and important parasitic angiosperms belong to the genera Orobanche, Striga, and Cuscuta. The most important economical hosts belong to the Poaceae, Asteraceae, Solanaceae, Cucurbitaceae, and Fabaceae. Although some resistant cultivars have been identified in several crops, great gaps exist in our knowledge of the parasites and the genetic basis of the resistance, as well as the availability of in vitro screening techniques. Screening techniques are based on reactions of the host root or foliage. In vitro or greenhouse screening methods based on the reaction of root and/or foliar tissues are usually superior to field screenings and can be used with many species. To utilize them in plant breeding, it is necessary to demonstrate a strong correlation between in vitro and field data. The correlation should be calculated for every environment in which selection is practiced. Using biochemical analysis as a screening technique has had limited success. The reason seems to be the complex host-parasite interactions which lead to germination, rhizotropism, infection, and growth of the parasite. Germination results from chemicals produced by the host. Resistance is only available in a small group of crops. Resistance has been found in cultivated, primitive and wild forms, depending on the specific host-parasite system. An additional problem is the existence of pathotypes in the parasites. Inheritance of host resistance is usually polygenic and its transfer is slow and tedious. Molecular techniques have yet to be used to locate resistance to parasitic angiosperms. While intensifying the search for genes that control resistance to specific parasitic angiosperms, the best strategy to screen for resistance is to improve the already existing in vitro or greenhouse screening techniques.  相似文献   

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