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1.
低磷营养胁迫条件下小麦RNA酶与酸性磷酸酶活性的变化   总被引:8,自引:0,他引:8  
低磷营养胁迫条件下,长穗偃麦草一中国春二体异附加系的RNA酶活性显著提高,RNase的IEF研究结果表明,对照条件下只有极微弱的活性带,而磷饥饿状态下则诱导出明显的特异活性带,但诱导的活性带无基因型间的差异,长穗偃麦草-中国春和灯芯偃麦草-中国春两套二体异附加系系分泌的酸性磷酸酶活性不同程度的显著提高。IEF结果表明,低磷胁迫诱导出低PH范围内的特异活性带,且活性带无基因型间的差异。  相似文献   

2.
采用苗期缺磷和全营养对照处理,以70个中国春—野生亲缘种属二体添加系及中国春为材料,根据苗期表观遗传性状、磷吸收率和利用率相对生物量对其进行耐低磷胁迫能力筛选鉴定和基因染色体定位。结果表明:大麦4H和长穗偃麦草7E染色体上携带有耐低磷胁迫的优异基因;长穗偃麦草6E、黑麦1R和6R、卵穗山羊草4Ug和6Mg、易变山羊草4Sv染色体携带促进小麦根系生长发育的基因;拟斯比尔托山羊草5S和簇毛麦4V染色体分别携带高磷吸收率和磷利用率的基因。通过染色体工程技术,可以将携带耐低磷胁迫基因的外源染色体片段导入普通小麦,为小麦耐低磷胁迫育种和了解植物耐低磷胁迫的分子机理奠定基础。  相似文献   

3.
李玉京  李继云 《遗传学报》1998,25(5):449-453
以一套中国春-长穗偃麦草二体异附加系与二体异代换系为材料,用等电聚焦(IEF)研究长穗偃麦草基因组中酸性磷酸酶(AcPh)与碱性磷酸酶(APH)编码基因的染色体定位。结果表明,AcPh大多聚焦于pH5~7范围内,其编码基因位于3E染色体,而APH编码基因则位于4E染色体。由于5E染色体的附加,AcPh活性带强度显著减弱。  相似文献   

4.
为转移与利用百萨偃麦草耐盐、抗病等优良基因,用普通小麦中国春-百萨偃麦草双倍体与中国春杂交,通过染色体C-分带、分子原位杂交并结合减数分裂中期I的染色体配对分析,从回交后代中选育出一套小麦-百萨偃麦草二体异附加系。对这套异附加系进行的鉴定与分析表明,各附加系除添加了一对百萨偃麦草染色体外,小麦的21对染色体未见明显变化。各附加系所添加的百萨偃麦草染色体在减数分裂中期I配对基本正常,仅有少量单价体,其自交后代中外源染色体亦能正常传递。这说明所培育的这套二体异附加系在细胞学上已相对稳定,暂分别编号为DAJ1、DAJ2、DAJ3、DAJ4、DAJ5、DAJ6和DAJ7。各异附加系中百萨偃麦草染色体在小麦族中的部分同源群归属和百萨偃麦草耐盐抗病基因在染色体上的定位研究正在进行之中。  相似文献   

5.
以中间偃麦草(Thinopyrum intermedium,2n=42)与普通小麦‘烟农15’杂交,从其杂种后代中选育出一个细胞学稳定的二体异附加系‘山农120211’,该研究对其细胞学和主要性状特点进行了鉴定。白粉病抗性鉴定结果表明,‘山农120211’成株期对白粉病的田间抗性为免疫,苗期对白粉病菌种E09表现为免疫。以耐盐品种‘山融3号’为对照进行苗期耐盐性鉴定表明,‘山农120211’耐盐级别为2级(较强)。细胞学鉴定表明:‘山农120211’根尖细胞染色体数目为2n=44,PMC MI染色体构型为2n=22Ⅱ,具有高度的细胞学稳定性。以拟鹅观草基因组DNA为探针,‘烟农15’DNA为封阻,在‘山农120211’的根尖有丝分裂细胞中检测到2条染色体具有明显的杂交信号,确定其为二体异附加系。利用该实验室筛选的71对E组染色体特异分子标记,对‘山农120211’分析显示,标记BE494262在中间偃麦草和‘山农120211’中可以稳定扩增出1条440bp特异带,而‘烟农15’中缺少此带,BE494262可作为‘山农120211’中附加中间偃麦草染色体的特异标记。利用二倍体长穗偃麦草和一套中国春-长穗偃麦草异附加系(1Ee~7Ee),进一步将BE494262定位在2Ee染色体,确定‘山农120211’所附加的中间偃麦草染色体为2Ee染色体。  相似文献   

6.
本文是普通小麦与长穗偃麦草杂交育种二十年的经验总结。内容介绍了长穗偃麦草的特性和染色体组型,克服杂交不育和杂种不育的方法,杂交育种的程序及其遗传分析和选出的小偃麦八倍体种、异附加系、异代换系与丰产抗病的小偃麦新品种。  相似文献   

7.
以中国春3D单体和小麦-长穗偃麦草4E二体异附加系为材料,通过杂交、回交结合染色体鉴定等方法,培育出了一种具有蓝粒标记的小麦4E(3D)单体代换系.该小麦4E(3D)单体代换系籽粒为浅蓝色,能够正常生长,自交结实率为36.1%,其自交后代可分离出深蓝籽粒小麦4E(3D)二体代换系、浅蓝籽粒小麦4E(3D)单体代换系和白粒小麦3D缺体.结果表明,长穗偃麦草4E染色体对小麦3D染色体缺失有一定的补偿功能,对以染色体定向代换方式快速创制蓝粒标记小麦单体系统具有一定的参考价值.  相似文献   

8.
利用限制性片段长度多态性(RFLP)及等电聚焦(IEF)技术确定普通小麦中国春-二倍体长穗偃麦草7个异附加系所附加的外源染以体与小麦染色体的部分同源性,共有8个生化标记,13个RFLP标记在亲本间揭示了多态性,结果表明:长穗偃麦草的1E,2E,3E,4E,5E,6E,7E7条染色体分别与小麦染色体的1、2、3、4、5、6、77个部分同源群具有部分同源关系,偃麦草的1E与7E、5E与7E染色体间可能  相似文献   

9.
利用染色体配对分析和酯酶及种子醇溶蛋白电泳分析研究了我国育成的11个八倍体小偃麦,结果表明:(a)来源于小麦和中间偃麦草杂交后代的6个部分双二倍体中,中1和中2的偃麦草染色体组不同于中3、中4、中5和小偃78829的偃麦草染色体组;(b)来源于小麦和长穗偃麦草杂交后代的5个部分双二倍体中,小偃784的偃麦草染色体组不同于小偃693和小偃7631中的偃麦草染色体组,表明在长穗偃麦草中有两个互不相同又不同于小麦的染色体组E和F,而小偃7430和小偃68中的偃麦草染色体组很可能是E和F染色体组的重组体;(c)小偃784中的长穗偃麦草染色体组和中5及小偃78829中的中间偃麦草染色体组基本相同,而中2的中间偃麦草染色体组不同于小偃693和小偃7631中的长穗偃麦草染色体组F,这意味着在长穗偃麦草和中间偃麦草中可能只有一个共同的染色体组E。部分双二倍体中酯酶及醇溶蛋白偃麦草染色体特征带的存在和发现,为这些染色体或其片段导入小麦后的鉴定提供了方便。  相似文献   

10.
蓝粒小麦的细胞学鉴定   总被引:6,自引:0,他引:6  
蓝粒小麦是在长穗偃麦草与普通小麦杂交后代中选育出来的新类型。实验证明,蓝粒小麦在研究胚乳遗传和染色体工程方面是一个非常有用的材料。本试验观察了用中国春小麦,中国春单体系统、中国春4D缺体,分别与蓝粒小麦杂交F_1代的染色体数目和染色体行为,其结果是:(1)(中国春小麦×蓝粒小麦)F_1,减数分裂中Ⅰ,76%的细胞为20"+2';(2)(中国春4D单体×蓝粒小麦)F_1,中Ⅰ,普遍出现了20"+1'的染色体构型,其它杂种F_1均为19"+3';(3)(中国春4D缺体×蓝粒单体分离出的缺体)F_1,中Ⅰ,花粉母细胞n=20"。以上结果证明,蓝粒小麦是一个异代换系,即由1对长穗偃麦草染色体,4Ael,代换了小麦的1对4D染色体。  相似文献   

11.
Fu S  Lv Z  Qi B  Guo X  Li J  Liu B  Han F 《遗传学报》2012,39(2):103-110
Thinopyrum elongatum(2n = 2x = 14,EE),a wild relative of wheat,has been suggested as a potentially novel source of resistance to several major wheat diseases including Fusarium Head Blight(FHB).In this study,a series of wheat(cv.Chinese Spring,CS) substitution and ditelosomic lines,including Th.elongatum additions,were assessed for TypeⅡresistance to FHB.Results indicated that the lines containing chromosome 7E of Th.elongatum gave a high level of resistance to FHB,wherein the infection did not spread beyond the inoculated floret.Furthermore,it was determined that the novel resistance gene(s) of 7E was located on the short-arm(7ES) based on sharp difference in FHB resistance between the two 7E ditelosomic lines for each arm.On the other hand,Th.elongatum chromosomes 5E and 6E likely contain gene(s) for susceptibility to FHB because the disease spreads rapidly within the inoculated spikes of these lines. Genomic in situ hybridization(GISH) analysis revealed that the alien chromosomes in the addition and substitution lines were intact,and the lines did not contain discernible genomic aberrations.GISH and multicolor-GISH analyses were further performed on three translocation lines that also showed high levels of resistance to FHB.Lines TA3499 and TA3695 were shown to contain one pair of wheat-Th. elongatum translocated chromosomes involving fragments of 7D plus a segment of the 7E,while line TA3493 was found to contain one pair of wheat-Th.elongatum translocated chromosomes involving the D- and A-genome chromosomes of wheat.Thus,this study has established that the short-arm of chromosome 7E of Th.elongatum harbors gene(s) highly resistant to the spreading of FHB,and chromatin of 7E introgressed into wheat chromosomes largely retained the resistance,implicating the feasibility of using these lines as novel material for breeding FHB-resistant wheat cultivars.  相似文献   

12.
Elytrigia elongata (Host) Nevski(= Agropyron elongatum, Thinopyrum elongatum, 2n = 2x = 14, EE) has long been used as a source of various types of resistance for wheat improvement, and numerous transfers have been made. However, despite heavy use, no high-resolution karyotype exists. We characterized the E. elongata karyotype of several accessions applying highly repetitive DNA sequences as mcFISH probes for chromosome identification. The complete E. elongata disomic chromosome addition series and 11 ditelosomic addition lines in Chinese Spring wheat were exposed to sequential GISH-mcFISH. Based on the mcFISH results, each complete chromosome and each telocentric studied was unambiguously identified. The validation of the karyotype in 4 E. elongata accessions with different geographical origins showed extensive variations in the probe hybridization patterns, but this did not prevent chromosome identification. The established karyotype will be useful for the rapid identification of potential donor chromosomes in wheat improvement programs, allowing appropriate alien transfer.  相似文献   

13.
Annual wheat displays monocarpic senescence, but amphiploids between wheat and its wild perennial relatives in the genus Thinopyrum generally display a polycarpic, perennial growth habit. In order to determine the chromosomal basis of this phenomenon, life-history characteristics were examined using Chinese Spring wheat and a complete Thinopyrum elongatum (2n=2x=14) chromosome addition series in a Chinese Spring background. Both monosomic and disomic additions and substitutions of Th. elongatum chromosome 4E conferred a polycarpic life history to annual Chinese Spring wheat. Disomic addition lines were found to be perennial under field conditions. This is the first report of a single alien chromosome conferring a polycarpic growth habit to a monocarpic species. Chromosome 4E altered the timing of tiller initiation, such that two growth phases could be clearly identified, the first phase being indistinguishable from the growth of euploid Chinese Spring, followed by a second phase of tiller initiation after the sexual cycle of the first phase tillers was complete (post-sexual cycle regrowth).  相似文献   

14.
黑麦染色体组有效利用土壤潜在磷基因的遗传分析   总被引:7,自引:2,他引:5  
刘建中  李继云 《遗传学报》1997,24(6):519-523
以一整套中国春-帝国黑麦二体异附加系为材料用土培盆栽法对黑麦染色体组有效利用土壤潜在磷基因的遗传分析表明,附加帝国黑麦不同染色体对中国春小麦有效利用土壤潜在磷特性具有不同的效应。黑麦1R、7R染色体上携带有对该特性有较强促进作用的基因。而5R染色体上则携带有对该特性具强烈抑制效应的基因  相似文献   

15.
Hordeum californicum(2n=2x=14, HH) is resistant to several wheat diseases and tolerant to lower nitrogen. In this study, a molecular karyotype of H. californicum chromosomes in the Triticum aestivum L. cv. Chinese Spring(CS)eH. californicum amphidiploid(2n=6x=56, AABBDDHH) was established. By genomic in situ hybridization(GISH) and multicolor fluorescent in situ hybridization(FISH) using repetitive DNA clones(pTa71, pTa794 and pSc119.2) as probes, the H. californicum chromosomes could be differentiated from each other and from the wheat chromosomes unequivocally. Based on molecular karyotype and marker analyses, 12 wheatealien chromosome lines, including four disomic addition lines(DAH1, DAH3, DAH5 and DAH6), five telosomic addition lines(MtH7L,MtH1 S, MtH1 L, DtH6 S and DtH6L), one multiple addition line involving H. californicum chromosome H2, one disomic substitution line(DSH4) and one translocation line(TH7S/1BL), were identified from the progenies derived from the crosses of CSeH. californicum amphidiploid with common wheat varieties. A total of 482 EST(expressed sequence tag) or SSR(simple sequence repeat) markers specific for individual H. californicum chromosomes were identified, and 47, 50, 45, 49, 21, 51 and 40 markers were assigned to chromosomes H1, H2, H3, H4, H5, H6 and H7, respectively. According to the chromosome allocation of these markers, chromosomes H2,H3, H4, H5, and H7 of H. californicum have relationship with wheat homoeologous groups 5, 2, 6, 3, and 1, and hence could be designated as 5Hc, 2Hc, 6Hc, 3Hcand 1Hc, respectively. The chromosomes H1 and H6 were designated as 7Hcand 4Hc, respectively, by referring to SSR markers located on rye chromosomes.  相似文献   

16.
鹅观草(Roegneria kamoji,2n=42,SSHHYY)是小麦异源六倍体野生近缘种,对小麦赤霉病具有良好抗性,是改良小麦赤霉病抗性的重要遗传资源。通过远缘杂交,将鹅观草第一部分同源群染色体上的抗赤霉病基因Fhb6导入普通小麦。由于第一部分同源群染色体包含1S、1H和1Y三条染色体,为研究这些同源染色体对小麦赤霉病抗性的影响,筛选出4个鹅观草第一部分同源群染色体特异分子标记,通过PCR扩增鹅观草属不同野生种的基因组DNA,明确了抗赤霉病Fhb6基因位于鹅观草1Y#1染色体。进一步利用分子细胞遗传学技术从中国春与鹅观草的后代中选育出5份涉及鹅观草1Y#2和1S#2染色体的渗入系材料。其中:21RK?1为二体异代换系DS1Y#2(1A),21RK?2为二体异代换系DS1S#2(1D),21RK?3为二体异附加系DA1S#2,21RK?4为1S#2和TW·1S#2S的双单体附加系,21RK?5为纯合TW·1S#2S易位系。这些新种质为小麦抗赤霉病基因的发掘及遗传改良奠定了基础。  相似文献   

17.
用Langdon二体代换系统建立小麦染色体RAPD标记   总被引:19,自引:2,他引:17  
以一套Langdon硬粒小麦二体代换系及其亲本Langdon、中国春和中国春双端体为材料,研究适于硬粒小麦和普通小麦的理想RAPD分析条件,进行小麦A、B和D染色体组各个染色体的RAPD分析。结果表明,AmpliTaqStoffelfragment比TaqDNAPolymerase优越。所用12个随机引物中,7个引物扩增出的13个特异产物,可确定在硬粒小麦LangdonA、B染色体组和中国春D染色体组中的10个个别染色体上。4个标记进一步定位在相应的4个染色体臂上。结果还表明,用Langdon二体代换系统、中国春双端体为材料,容易得到重复性高、特异性强的RAPD标记。  相似文献   

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