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1.
中国的甘蓝型油莱高芥酸品种芥酸含量比外国的高芥酸品种高6~10%。本研究用两个中国高芥酸品种与一个加拿大和一个日本高芥酸品种杂交,其Fl与低芥酸品种测交。F2代和测交后代的分离结果表明,这些材料中的芥酸基因是等位的,也无明显的证据表明它们是复等位基因,因而很可能是同一的。这两类品种芥酸含量的差异可能与遗传背景或修饰基因有关。  相似文献   
2.
The Inheritance of Aliphatic Glucosinolates in Brassica napus   总被引:2,自引:0,他引:2  
The inheritance of aliphatic glucosinolates was studied in crosses between synthetic B. napus lines and oilseed rape cultivars. Six unlinked loci are described which determine the aliphatic glucosinolate profile of B. napus. One locus regulates the presence or absence of propyl glucosinolates, while another regulates the expression of pentyl glucosinolates. Two loci regulate the removal of the terminal H3CS-group from the amino acid derivative to produce alkenyl glucosinolates as opposed to methylthioalkyl and methylsulphinylalkyl glucosinolates, regardless of the length of the alkyl chain. Likewise, another two loci regulate the hydroxylation of both butenyl and pentenyl glucosinolates. The functional alleles at one of the hydroxylation loci results in significantly more hydroxylation than those at the other locus. The large number of aliphatic glucosinolates which have been described in Brassica thus results from an interaction between genes which regulate side chain elongation and genes which modify the structure of the side chain, regardless of its length. The implications of this study for the biosynthesis of aliphatic glucosinolates, the origin of B. napus and the potential to manipulate the leaf and seed glucosinolate profile of oilseed rape are discussed.  相似文献   
3.
Germinating seeds and young plants of winter rape var. Górczañski were vernalized for 56–63 days under conditions of 9-hour day, at the temperature 2 and 5 °C and in continuous darkness at the temperature 2 °C. After vernalization the plants grew under conditions enabling to complete vernalization: in a glass-house at the temperature day/night 15/10 °C and in semi natural conditions of open vegetation hall in the period from June till August. After sub-optimal vernalization further growth of the plants at lowered temperature increased its effectiveness (completion of vernalization). Depending on the degree of the vernalization of the plants the completion of their vernalization was both obligatory, i.e. conditioning the acquisition of the ability of generative development, and facultative i.e. accelerating this development. It has been demonstrated that the population of plants of the examined variety is strongly differentiated not only with respect of vernalization requirements in the particular plants, but also what regards the effectiveness of vernalization completion. New observations have been made indicating that the mechanisms controlling the successive phases of generative development, i.e. phase of forming flower buds and the flowering phase are not identical which may be interpreted as indicating that the "flowering factor" is polymorphous.  相似文献   
4.
Summary A substantial amount of seed is left in the fields before and during harvest of oilseed rape. Although this crop exhibits little or no primary dormancy, the absence of certain environmental cues that promote germination of imbibed seeds induces secondary dormancy. The work reported investigated the extent to which environmental stress conditions, including osmotic stress, low oxygen stress and anaerobiosis, induce secondary dormancy in oilseed rape, and examined the variation in development of secondary dormancy between and within genotypes. Osmotic stress was most effective in inducing dormancy. Anaerobic treatment produced very few dormant seeds, as did an atmosphere low in oxygen and high in nitrogen. The development of secondary dormancy under osmotic stress varied considerably between and within genotypes. Dormancy ranged from almost zero to about 60% for winter genotypes and about 85% for spring types. Within genotypes, variations occurred between seed lots and years of harvest. Temperature variations affected the percentage of dormant seeds. More dormant seeds were likely to be produced with incubation under water stress at 20 °C than at 12 °C. In winter genotypes, fewer dormant seeds were produced when incubation temperature and germination test temperatures differed. Thus, incubating at 20 °C and 12 °C, followed by germination tests at 20 °C and 12 °C, respectively, produced most dormant seeds. Also, in the winter genotypes, the potential development of secondary dormancy was positively correlated with the pattern and speed of germination of untreated seeds.  相似文献   
5.
药用植物菘蓝的特定染色体附加到甘蓝型油菜所产生的附加系表现一定的抗病毒活性,但尚无营养成分、菜薹和菜籽产量、综合效益方面的研究。本研究以抗病毒油菜菘油1号为父本,细胞核雄性不育系川A-3为母本选育出菘油2号,并对其进行油蔬两用产量、农艺性状、菜薹营养、种子品质、综合效益等方面的研究。结果表明,具有菘蓝染色体特异标记的植株占48.56%,其菜薹营养丰富,维生素C和锌含量明显高于西兰花1-1-5、白花菜rB-112、红菜薹Q10005、初冬牛心甘蓝和萝卜CP4,氨基酸、蛋白质含量明显高于白花菜rB-112、红菜薹Q10005、初冬牛心甘蓝和萝卜CP4,与西兰花1-1-5相当。从播种到始摘薹的天数平均为117 d,菜薹产量为16 908.8 kg/hm2,较摘薹对照增产75.1%。与单纯收籽栽培相比,摘薹后末花期延迟6~10 d,株高、全株角果数、每角粒数、千粒重、单株产量,含油量都显著降低,其末花期理论生物量平均124.3 t/hm2,收获油菜籽1127.3 kg/hm2,较摘薹对照增产16.4%,较单纯收油菜籽栽培减产42...  相似文献   
6.
"沪油18"是采用品种间杂交,低世代抗性鉴定和定向筛选育成的高产、抗(耐)菌核病和病毒病、抗倒伏和抗冻甘蓝型双低油菜新品种。该品种种子含油率42%,芥酸含量0.33%,硫苷含量10.16μmol/g。在上海市油菜区域试验中平均产量2 338.5 kg/hm~2,比双低对照"沪油15"增产4.1%。  相似文献   
7.
为培育具有高潜力的减肥增效油菜品种,以不同甘蓝型油菜种质资源为材料,通过两年三点的田间肥效试验,研究了它们对氮肥的响应特征及节氮增产潜力.以产量平均值为分界线将供试材料划分为4种类型:低氮高效型、双高效型、双低效型和高氮高效型.在高氮条件下,双高效型和高氮高效型材料具有16.96%~36.50%的节氮潜力和21.57%...  相似文献   
8.
选择适当早花早熟的油菜资源是解决多熟制生产中冬季作物油菜与其它夏季作物接茬矛盾的关键;早花是早熟的基础,对油菜早花材料的早花形成原因开展研究,有利于通过分子育种加速选育适合生产需要的新品种.本研究选取稳定的早花早熟品系GZ522作为研究对象,以甘蓝型油菜XY15为对照,采用生物统计学和分子生物学方法对其农艺性状和早花形...  相似文献   
9.
甘蓝型冬油菜在西北寒旱区适应性分析   总被引:3,自引:0,他引:3  
为了研究甘蓝型冬油菜在西北寒旱区的适应性,以29份甘蓝型冬油菜品系为材料,分析在天水、兰州两个试点越冬率、生育期、产量、含油量及农艺性状的差异。结果表明,参试品系在天水试点越冬率均高于兰州试点,在天水试点,21份参试品系越冬率80.00%以上,而兰州试点在覆盖条件下越冬率平均为14.49%,最高为平甘1号(48.50%)。联合方差表明,试点气候差异是引起越冬率差异的最主要原因。与天水试点相比,参试品系北移至兰州试点后越冬期延长,冬后生育期缩短,全生育期延长;在天水试点参试品系株高、分枝部位、主花序长度、千粒重、折合每667 m~2产量、含油量平均值分别为133.52 cm、32.79 cm、51.37 cm、3.15 g、184.20 kg、40.16%,较兰州分别高22.11 cm、31.58 cm、2.47 cm、0.66 g、160.54 kg、22.54%;变异分析表明,在天水试点参试品系越冬率、主要农艺性状、产量、含油量变异系数相对兰州试点较小,相对稳定。结论:天水试点气候条件更适合甘蓝型冬油菜的生长,参试品系越冬率高、农艺性状良好、产量高、含油量高,适应性强。  相似文献   
10.
甘蓝型油菜油酸含量的主基因+多基因遗传分析   总被引:2,自引:0,他引:2  
应用植物数量性状主基因 多基因的多世代联合分析方法,对甘蓝型油菜杂交组合8087 × 8108的P1、P2、F1、B1、B2和F2 等6个世代种子油酸含量进行分析,结果表明:(1)该组合油酸含量受2对加性-显性-上位性主基因 加性-显性-上位性多基因控制遗传;(2)该杂交组合的B1、B2和F2群体油酸含量主基因遗传力为43.83 %~94.71%,多基因遗传力为0.65 %~30.85 %,表明该组合油酸含量是由两对主基因 多基因共同控制的,并以主基因遗传为主;(3)油酸含量以加性效应和上位性效应为主,显性效应比较小.  相似文献   
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