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31.
不同种质玉米自交系种子萌发的干旱胁迫研究   总被引:2,自引:0,他引:2  
种子萌发期被认为是作物生长的关键时期,也是衡量作物耐旱性强弱的重要时期。为了明确不同玉米自交系的耐旱性,本研究采用聚乙二醇(PEG)模拟干旱条件,对254份不同种质玉米自交系进行种子萌发期处理。通过检测发芽指数、发芽率、根数、根鲜重、根干重、茎鲜重、茎干重、根长、苗高等种子发芽性状,以其相对值为指标,鉴定不同自交系种子萌发期的耐旱性。结果表明,在5%PEG6000浓度胁迫时,种子萌发程度低,当PEG浓度为10%时,种子萌发受抑制程度较高;各性状相对指标都与品种综合抗旱能力呈显著或极显著正相关;不同自交系的耐旱性存在较大差异,通过隶属函数法结合抗旱分级标准筛选出99份中等耐旱材料。因此,该方法可以作为一种简单的玉米自交系萌发期耐旱性鉴定方法。  相似文献   
32.
关于水稻穗芽的生理学研究   总被引:12,自引:0,他引:12  
利用重组自交系籼稻中-156/谷梅2号304份株系为材料,在田间条件下营造高温、高湿的小气候,以“穗穗芽率”及“粒穗芽率”为指标,筛选易发生穗芽与不易发生穗芽的极端材料,比较研究重组自交系亲本与各供试株系籽粒在穗芽发生期间的生理差异。结果表明,该重组自交系母本谷梅2号比父本中-156易穗芽,在正常成熟过程中籽粒内源GA1含量水平高于中-156,ABA含量水平低于中-156;谷梅2号籽粒淀粉酶活性也高于中-156。花后15 d至完熟的籽粒灌浆期如遇高温、高湿条件,谷梅2号及易穗芽的株系籽粒内源GA1随雨日渐增,增幅高于中-156及不易穗芽的株系,同时其淀粉酶活性回升,在正常成熟过程中花后15 d后籽粒中淀粉酶活性与日渐降,但其幅度远高于父本中-156及不易穗芽的株系,这种变化可能是易穗芽的亲本与株系对高温、高湿敏感诱发穗上发芽的主要生理基础。  相似文献   
33.
为发掘和利用荆州黑麦所携抗梭条花叶病基因,综合利用分子细胞遗传学与分子标记技术结合多年抗性鉴定,从高感梭条花叶病小麦地方品种辉县红与荆州黑麦杂交后代(F7~F9)中选育出二体异附加系5个(分别添加1R、2R、R3、5R和R7)、5RS端二体异附加系1个和多重异附加代换系2个(染色体组成分别为20’’+2R(2D)’’+4R’’和19’’+1R(1B)’’+2R(2B)’’+4R’’)。鉴定表明,双二倍体荆辉1号高抗梭条花叶病,表明黑麦抗性基因可在小麦背景中稳定表达,2R、R7二体异附加系及2个含2R的多重异附加代换系均表现高抗,推测2R和R7上可能携带抗病基因。这些材料是研究荆州黑麦抗性基因遗传及小麦抗病育种的新种质。  相似文献   
34.
60个玉米自交系的SSR标记分析   总被引:5,自引:0,他引:5  
利用SSR标记研究了60个山西省主要玉米(Zea maysL.)自交系的遗传变异。用23对扩增带型稳定的引物,从供试自交系中检测出91个等位基因变异,每对引物检测出等位基因2~7个,平均为3.96个,平均多态性信息含量为0.600。UPGMA聚类分析将60个自交系划分为唐四平头,旅大红骨,PN,BSSS,Lancaster,Suwan等6个类群,化群结果与其系谱关系和育种家经验基本一致。  相似文献   
35.
The aim of this work was to evaluate the leaf rust resistance introduced into introgressive triticale lines with Triticum monococcum genes, and to study the expression of these genes at the hexaploid level. The introgressive lines were developed by incorporating diploid wheat (T. monococcum s.s.) genes into hexaploid triticale LT 522/6 using the synthetic allotetraploid T. monococcum/Secale cereale (AmAmRR) as a bridging form. A group of 44 those lines, parental stocks and check cultivars were inoculated at the seedling stage (in a greenhouse) and at the adult‐plant stage (in the field) with four pathotypes of Puccinia triticina. At the seedling stage the assessment of infection type showed that four lines had resistance to all pathotypes as high as in the T. monococcum donor. Adult plant examinations showed some introgressive lines with complete resistance and also lines with partial resistance, expressed in area under the disease progress curve (AUDPC) calculations as slow rusting. Some lines comprise low AUDPC with complete resistance at seedling stage.  相似文献   
36.
Y. Kaneko    N. Nagasawa    S. W. Bang  Y. Matsuzawa 《Plant Breeding》2002,121(2):171-173
Eight plants of the putative double monosomic addition line (DMAL, 2n= 20) were developed by crossing a monosomic chromosome addition line of radish [f(A)‐type monosomic addition line (MAL) (2n= 19)] carrying the f chromosome of Brassica rapa (2n= 20, AA) with another [e(C)‐type MAL (2n= 19)] having the echromosome of Brassica oleracea (2n= 18, CC). The homoeological relationships between the two alien chromosomes were investigated by morphological, cytogenetic and random amplified polymorphic DNA (RAPD) analysis. Seventeen morphological traits that were not present in the radish cv. ‘Shogoin’ were observed in both MALs and these traits were substantially exhibited in DMAL plants. At the first metaphase of pollen mother cells (PMCs), the two parental MALs showed a chromosome configuration of 9II +1I, demonstrating impossibility of recombination between the R and the added chromosomes. The DMALs formed 10II in approximately 73% of PMCs, with one bivalent showing loose pairing between two chromosomes differing in size. In an attempt to identify the two MALs by RAPD‐specific markers using 26 selected random primers, 13 and 20 bands were specific for the f(A)‐type and the e(C)‐type MALs, respectively; 12 bands were common to both MALs (26.7%). In conclusion, the f chromosome of B. rapa is homoeologous to the e chromosome of B. oleracea. The genetic domain (genes) for 17 morphological traits are linked to each homoeologous chromosome bearing 27% of the corresponding RAPD markers.  相似文献   
37.
含有玉米远缘种质的自交系配合力分析及应用评价   总被引:3,自引:2,他引:3  
按P1×P2不完全双列杂交设计,用NCⅡ分析方法,对6个含有玉米远缘种质自交系9个性状的配合力及其群体遗传参数进行研究。结果表明:郑311、郑314和郑388的一般配合力高,可直接利用;而郑312、郑315和郑389综合性状较差,需改良后利用;郑312×BT1和郑314×齐319具有较强的杂种优势,有一定的增产潜力。在玉米育种工作中,对株高等8个性状宜早代选择,而对轴粗应进行晚代选择。  相似文献   
38.
Doubled haploid oilseed rape lines segregating for a transgene inducing herbicide resistance (bar gene) were investigated for the wide mapping of the T-DNA insertion site. Bulk segregant analysis using presence/absence and intensity polymorphisms between the bulks, as well as comparative mapping with a linkage group deriving from another cross, led to the identification of 11 random amplified polymorphic DNA (RAPD) markers tightly or loosely linked to the bar gene. Ten RAPD loci out of 11 were located on the same side of the bar locus, strongly suggesting that the T-DNA integrated in a telomeric or subtelomeric position. The eleventh RAPD marker exhibited a strong segregation distortion, which could be the result of a heteroduplex formation. Comparison of the linkage groups obtained from the two crosses showed different recombination rates between markers, possibly reflecting differences in parental genetic backgrounds. Consequences and potential applications in transgene dispersal safety assessment studies are discussed.  相似文献   
39.
Fluorescence in situ hybridization (FISH) with a genome‐specific repeat, Spelt1, and wheat simple sequence repeat (SSR) markers were used to analyse the chromosome constitution of two Triticum aestivum×Aegilops speltoides introgressive lines. The lines 170/98i and 178/98i carried one and two subtelomeric regions of Ae. speltoides (per haploid genome), respectively, marked by Spelt1 repeats according to FISH data. SSR analysis detected homoeologous substitution of wheat chromosome 7D with Ae. speltoides chromosome 7S in the lines 178/98i and 170/98i as well as the assumed terminal translocation in the short arm of chromosome 3A in the line 178/98i. Anthocyanin pigmentation of the coleoptiles was found in the lines 170/98i and 178/98i and resulted from the 7S (7D) substitution. It was demonstrated that Spelt1 could be effectively used for the rapid identification (without DNA isolation) of terminal translocations of T. aestivum×Ae. speltoides introgressive lines as well as for further analysis of the stability of the hybrid plants.  相似文献   
40.
In hexaploid bread wheat, Triticum aestivum (2n = 6x = 42), little work has been carried out to study the genetic control of the synthesis of reduced, non‐reduced and total non‐structural carbohydrates and soluble proteins in aerial and rooting structures. The aim of this paper was to determine the chromosomal location of genes determining carbohydrate and protein synthesis that could be used for diagnostic selection in segregating breeding populations. A set of wheat intervarietal chromosome substitution lines [‘Chinese Spring’ (CS) × synthetic wheat (Triticum diccocoides×Aegilops squarrosa) (Syn)], was used. Plants were cultivated in hydroponic solutions to the fully expanded third leaf stage. Carbohydrate and protein contents and dry matter were determined for aerial and root parts. The root dry weight did not show significant differences between the parental varieties and the substitution lines, except for 5A, 2B and 6B, which had significantly lower dry weights. The aerial dry weight was significantly higher for Syn and the 2A substitution line. The ratio aerial dry weight/root dry weight was significantly higher in Syn, 1A, 2A and 4B. The protein content of the plant showed highly significant differences between both parental lines but 6A and 1D of the substitution lines showed highly significant differences, with contents as high as that for Syn. Syn produced significantly lower total aerial carbohydrates. The substitution lines 2A, 5A, 6A, 7A, 2B, 3D, 5D and 6D showed highly significant total carbohydrate content increases in the aerial parts compared with both parental lines. The non‐reduced carbohydrate contents showed a pattern similar to that of the total carbohydrates. Syn had a lower reduced carbohydrate content than CS. Only the 5A, 2B, and 1D substitution lines had a highly significantly different content of reduced carbohydrates than CS. In roots, Syn produced the lowest values for every type of sugar. The highest significant values for total carbohydrates were found in substitution lines 2B, 4B, 5B, 6B, 1D and 6D. The non‐reduced carbohydrate levels were significantly higher than CS in 2B, 5B, 6B and 6D substitution lines. Only the substitution lines 3B and 1D showed a significantly higher reduced carbohydrate content in roots compared with CS. The photoassimilate partitioning in Syn, 1 A, 2A and 4B favoured the aerial parts but, in contrast, higher partitioning to the roots was found in the 7B, 1D and 3D substitution lines. Both groups appear to carry interesting patterns worth incorporating in wheat cultivars.  相似文献   
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