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71.
72.
研究了影响香花槐组织培养芽分化的主要因素,包括:外植体取材时期、消毒处理、基本培养基、细胞分裂素种类与浓度配比、细胞分裂素与生长素配比等。结果表明:M是最佳基本培养基;适合香花槐增殖分化的细胞分类素为浓度0.5mg L-1的6-BA;香花槐增殖培养的最佳组合为6-BA0.5mg L-1+IBA0.05mg L-1+2%蔗糖。 相似文献
73.
对异花玉兰的冬芽种类、拟花蕾、分枝习性及成枝规律等因子进行了观测,并对冬芽和拟花蕾进行解剖,结果表明:1当年生枝上有休眠芽、叶芽和拟花蕾3种;2叶芽与拟花蕾外均包被着3~4层芽鳞状托叶,最外层薄革质,外面密被短柔毛,内层纸质-膜质,外面疏被长柔毛;3分枝习性基本为预生分枝呈单阶无歧生长规律。 相似文献
74.
75.
Summary Aseptically cultured shoots of Chinese gooseberry exhibited growth disorder and morphological aberrances, and some died after being exposed to sufficient gamma-ray irradiation. The death rate was dose dependant and the LD50 was 80–90 Gy and 50–60 Gy respectively for cv. Hayward and clone 4. All petiole explants irradiated with gamma-ray could form calli as the control, but the rate of differentiation of adventitious shoots of the petiole explants decreased and was dependant on dose. Sensitivity of the shoot or petiole explants to gamma-ray irradiation varied with species. Gamma-ray irradiation did not deter either the 2-node segments from producing axillary shoots M1, M2, and M3 or the advantitious shoots originating in the petiole explants and the M3 shoots from forming advantitious roots. Therefore, using aseptically cultured axillary or adventitious buds for mutation breeding of Chinese gooseberry is feasible. A bacterium surviving in the explants lessened the efficiency of these two in vitro techniques in mutation breeding of Chinese gooseberry.Abbreviations IAA
3-indole acetic acid
- IBA
-indole butyric acid
- MS
Murashige & Skoog (1962) 相似文献
76.
Summary Freshly cut leaves of Kohleria eriantha and K. x Longwood were exposed to a wide range of gamma irradiation doses and allowed to root and form adventitious buds. K. Eriantha could not be successfully propagated from leaf half cuttings. Longwood produced a small number of adventitious plantlets as compared to other Gesneriads. Colchicine treatments reduced leaf half survival in Longwood by more than 50%. Leaf halves exposed to low and moderate doses of gamma irradiation showed increased overall plantlet production compared to nonirradiated leaf halves.Of the mutation parameters calculated, the number of mutants per 100 surviving leaf halves appears to be the most useful since it relates the number of mutants within a dose to the number of surviving leaf halves, the number of mutants to the number of plants produced, and the number of mutants within doses to control values.Using the criteria, number of mutants per 100 surviving leaf halves, optimum production of all mutants, of useful and of dwarf mutants was obtained at 2.5 kR for noncolchicine treated leaf halves and 1.5 to 3.0 kR for colchicine treated leaf halves.Of the adventitious plantlets produced, 13.8% were classified as mutant types. Mutant plants were found in radiation dose levels up to 5.5 kR. The array of mutants produced was skewed toward plant habit and flower characteristic mutants with several leaf characteristic, lethal, and polyploid mutants observed. A high frequency of mutants, 10 of 93 plants, occurred in the nonirradiated controls. Four sectorial chimeras were identified from both control and irradiation exposed groups. Several potentially useful flower color and dwarf mutants have been selected for further study. Adventitious buds may have developed from callus at petiole and leaf-vein bases. Colchicine treatments severely inhibited adventitious plantlet production and because of this could not be used as a criterion to identify the origin of adventitious buds. Conclusive determination of the organogenesis of adventitious buds from Longwood leaf halves could not be made. Mutant plantlets formed from adventitious buds on detached leaf halves of Longwood appear to arise from single cells as has been found with other Gesneriads.Scientific Journal Series Article No. 10 330 of the Minnesota Agricultural Experiment Station. 相似文献
77.
杜仲(Eucommia ulmoides)的果实是提取杜仲胶和杜仲籽油的重要原材料,在工业、医疗、食品等领域开发前景广阔。为了揭示雌蕊原基发育相关基因的表达情况,本研究以杜仲果用良种‘华仲6号’(Huazhong No.6)为材料,利用lllumina Hiseq X-10高通量测序平台,分别对花序原基分化期和雌蕊原基分化期的花芽进行转录组测序,通过生物信息学对2个发育时期的雌花芽转录组进行比较分析,筛选出与杜仲雌蕊原基发育相关的差异基因。结果显示,转录组测序共获得68.11 Gb数据,各样品的Clean reads与杜仲基因组进行序列比对,比对效率为91.59%~92.05%,同时2个发育时期共筛选出485个差异表达基因,其中219个差异基因在雌蕊原基分化期表达上调,266个表达下调。差异基因GO富集结果表明,花的发育、光周期现象、激素生物合成以及蛋白结合转录因子活性等相关的生物途径被富集。KEGG富集结果表明淀粉和蔗糖代谢、碳代谢、昼夜节律和植物激素信号转导等代谢通路被富集。结果表明光周期途径是诱导杜仲成花的重要途径,且雌蕊原基发育受碳水化合物、植物激素和其他代谢物质调控。本研究为杜仲花器官发育调控基因的挖掘提供了基础数据,也为果用杜仲的分子育种提供了参考。 相似文献
78.
Summary When Asiatic lilies are forced during the winter period, additional light is needed to prevent flower bud abscission and flower bud blasting. Growth room experiments showed considerable differences among eight lily cultivars in their response to low light. Among these cultivars, Connecticut King and Enchantment appeared to be the most sensitive to low light conditions while Uncle Sam and Scout were the least sensitive.Analysis of an incomplete diallel cross between nine cultivars showed significant differences in general combining ability (GCA) for flower bud abortion, number of buds, forcing time, plant height and leaf scorch under winter greenhouse conditions. Enchantment had the highest positive GCA for bud abortion, indicating a high sensitivity to low light conditions. Uncle Sam had the lowest GCA. Pirate and Scout appeared to have a high GCA for sensitivity to leaf scorch. Connecticut King was found to be a probable source of cytoplasmic male sterility. The data suggest that male sterility is associated with better response to low light conditions. 相似文献
79.
Summary Leaves and plants of different ages of a susceptible and two resistant groundnut genotypes were mechanically inoculated with peanut bud necrosis virus, and the percentage of plants with systemic symptoms (incidence) and the incubation period were determined. The incidence decreased sharply in all three genotypes with the age of the inoculated leaves and plants. The incubation period increased with the age of leaves and plants. Apparently, only young tissue of young plants is susceptible, while mature tissue and plants are highly resistant. This mature tissue and plant resistance occurs irrespective of the susceptibility level of the genotype to peanut bud necrosis virus, however, it develops earlier in the resistant than in the susceptible genotypes.Abbreviations IP50
incubation period
- PBNV
peanut bud necrosis virus
- TSWV
tomato spotted wilt virus 相似文献
80.
针对荸荠芽和根切除工序复杂、效果差、切削力较大等问题,该研究设计了一种旋刀式荸荠芽根同步切除装置,借助荸荠自身重力和装置结构形式进行限位,由回转刀片组同时切除芽和根。首先对荸荠运行及切削过程展开理论分析,确定关键部件结构形式与参数范围。进一步在EDEM离散元软件中以荸荠芽和根的切削力为评价指标,以锯齿旋切刀几何参数和切削速度为影响因素开展仿真优化试验,得到最佳参数组合为:锯齿底长5 mm,齿高15 mm,切削速度0.103 m/s。搭建测力平台对仿真结果进行验证,并与平刃旋切刀进行性能对比。结果表明,优化后的锯齿旋切刀可减小23.29 %的切削力。基于Box-Behnken原理设计定位孔内壁优化试验,得到最佳参数条件下荸荠的斜切高度差为4.5 mm。研究结果可为荸荠芽根切除装置设计提供参考。 相似文献