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61.
D. M. Burner 《Euphytica》1991,54(1):125-133
Summary Meiosis was studied in 31 wild Saccharum relatives, including Erianthus (8 clones), Miscanthus (5 clones), Narenga prophyrocoma (1 clone), S. robustum (3 clones), and S. spontaneum (14 clones). Chromosome number for 18 clones confirmed published counts or was typical of the particular species. Chromosome number for seven clones (Djatiroto 2n=58, Molokai 5099 2n=80, SES 84/58 2n=58, SES 114 2n=64, SES 260 2n=64, Taiwan 100 2n=112, and US 57-11-2 2n=60) differed from published counts (2n=112, 86-100, 64, 60, 60, 96, and 30, respectively). Counts were obtained for the first time for six clones (Local escape 2n=96, Nepal 2n=72, NG 77-77 2n=108–112, NG 77-199 2n=166, US 57-60-2 2n=20, and US 68-1-4 2n=38). Bivalent chromosome pairing predominated in all clones. Meiotic irregularity (numeric aberrations, univalents, multivalents, and telophase II micronuclei) tended to be associated with taxonomic grouping and level of polyploidy. Clones in Erianthus, Miscanthus, and Narenga were apparent euploids (2n=20–60) and tended to have fewer meiotic irregularities than Saccharum clones. Differences in level of meiotic stability among taxonomic groups may reflect error in chromosome association and synapsis associated with high chromosome number. 相似文献
62.
陆地棉与7个野生棉杂种细胞学研究 总被引:2,自引:0,他引:2
分析了四倍体栽培种陆地棉与辣根棉、哈克尼西棉、旱地棉、雷蒙德氏棉、裂片棉、异常棉和司笃克克棉等二倍体野生棉种间杂种F1的细胞学,花粉母细胞中期I染色体平均构型依次为:14.62Ⅰ+11.93Ⅱ+0.17Ⅲ、14.21Ⅰ+12.36Ⅱ+0.02Ⅲ、11.70Ⅰ+13.52Ⅱ+0.09Ⅲ、13.56Ⅰ+12.72Ⅱ、14.101+12.27Ⅱ+0.12Ⅲ、28.19Ⅰ+5.16Ⅱ+0.16Ⅲ和31.2 相似文献
63.
Colchicine-induced chromosome doubling in Platanus acerifolia and its effect on plant morphology 总被引:1,自引:0,他引:1
We report the production of tetraploid plants of Platanus acerifolia, with the ultimate aim of improving the ornamental qualities of this important urban landscaping tree. Chromosome doubling
was achieved by the application of colchicine to either pre-soaked seed or to the apical meristems of young seedlings. Treatment
of the ungerminated seed was the more efficient method in terms of numbers of tetraploid seedlings (up to 40%, as determined
by chromosome counting of the root-tip nuclei) but this method produced no mature tetraploid plants due to the deleterious
effect of colchicine on subsequent root growth. When colchicine was applied directly to the apical growing tip of cotyledon-stage
seedlings, leaf and stem growth was temporarily affected but the plants eventually recovered. We conducted a preliminary screen
for putative tetraploids based on the observation in other plant species of a correlation of stomatal size and distribution
with ploidy. Plants containing significantly larger stomata and at a lower density across the lower leaf epidermis, were selected
for further analysis by flow cytometry and chromosome counting. These techniques confirmed that, of the 12 putative polyploids,
four were tetraploid, five were mixoploid and three were, in fact, diploid. Morphological differences of the tetraploids included
a more compact growth habit and broader, thicker leaves. These plants are being grown to full maturity in order to test their
potential for use in a breeding programme aimed at producing sterile triploid lines. 相似文献
64.
小麦7D染色体数量性状基因定位和效应估计的研究 总被引:10,自引:0,他引:10
综合应用方差分析法、区间定位法和联合定位法将控制抽穗期、有效穗数、小穗数、50粒重和单穗产量等5个性状的6个数量性状基因座(QTL)定位在小麦7D染色体上。其中控制粒重的QTL有2个。这些QTL集中分布在着丝粒附近和染色体长臂的末端两个区域。效应估计结果表明多数QTL的效应是微效的,控制同一个性状(粒重)的两个QTL的效应几乎相等。比较3种QTL定位法的分析结果,方差分析简单有效,且当染色体上只有 相似文献
65.
Karyotype of Canada wildrye (Elymus canadenisis L.) was described using giemsa C-banding techniques. Most of the chromosomes showed dome banding pattern polymorphism. Small to large terminal and centormere bands were observed in most of the chromosomes. A faint satellite was observed in one chromosome. Tow chromosomes had a large interstitial band near the centromeres in the long arms. The Giemsa C-banding pattern of E. Canadensis is compared to that of Pseudoroegneria spicata and Critesion boddanii to illustrate species relationship. 相似文献
66.
Summary Fifteen lines of triticale were studied using the C-banding staining method. A typical, complete chromosomal complement was found in 11 lines, while the remaining lines demonstrated some variations. A slight modification in the technique is discussed.Supported in part by CSRS/USDA Grant No. 801-15-03A. 相似文献
67.
大麦幼胚培养再生植株及其后代的细胞遗传学研究 总被引:3,自引:0,他引:3
从5个普通大麦品种的幼胚培养中均得到体细胞再分化植株。对214棵再生植株进行了细胞学检查,发现四倍体5株,占总数的2.3%;相互易位杂合体1株,占总数的0.46%。四倍体植株虽然得到少数大而瘪的种子,但它们次年没有发芽;易位杂合体减数分裂时的染色体构型为5Ⅱ+1Ⅳ,属于两对非同源染色体间的简单易位。其余所有二倍体植株的细胞 相似文献
68.
Starch biosynthesis in plants involves the concerted action of a numberof enzymes, including ADPglucose pyrophosphorylase, starch synthases,branching enzymes and debranching enzymes. We report on the cloningand characterisation of genes encoding these enzymes from wheat and ontheir chromosomal locations. The prospects for manipulating wheat starchstructure and functionality using these genes is discussed. 相似文献
69.
陆地棉与三裂棉、斯特提棉和A111种间杂种F1的形态与细胞学 总被引:2,自引:0,他引:2
本文研究了TM-1×三裂棉、江苏棉1号×斯特提棉、泗棉2号×Alll 3个种间杂种F_1的主要形态特征及花粉母细胞减数分裂中期Ⅰ的染色体行为。3个种间杂种F_1的花器官性状大多趋向于父本野生棉,如花冠颜色、花心等;营养器官大多趋向于中间型,如叶色、叶形等。杂种F_1均表现高度不育。减数分裂中期Ⅰ的染色体构型依次为:13.73Ⅰ 12.52Ⅱ 0.03Ⅲ 0.04Ⅳ,28.03Ⅰ 5.38Ⅱ 0.07Ⅲ和33.26Ⅰ 2.87Ⅱ;其染色体组亲和性指数分别为0.9715、0.4192和0.2208。这一结果表明:(1)陆地棉与三裂棉的亲缘关系较近,与斯特提棉的亲缘关系较远,与Alll的亲缘关系更远;(2)泅棉2号×Alll的F_1染色体数为2n=3x=39,其染色体数x=13与棉属相同,其次因Alll原产于澳大利亚,形态上与纳尔逊氏棉、澳洲棉比较接近,因此推测它可能属于棉属的C染色体组种。 相似文献
70.
Zhi-Shan Lin Zhi-Fu Cui Xiang-Yan Zeng You-Zhi Ma Zeng-Yan Zhang Toshiki Nakamura Goro Ishikawa Kazuhiro Nakamura Hisashi Yoshida Zhi-Yong Xin 《Euphytica》2007,158(1-2):109-118
Chromosome compositions of seven lines, derived from hybrids between a wheat cultivar and the wheat-Thinopyrum intermedium addition line Z6, with barley yellow dwarf virus (BYDV) resistance, were determined by genomic in situ hybridization, cytogenetic and SSR assays. The results showed that
line N522 was a disomic addition line, lines N420 and N439 were 2Ai-2(2B) chromosome substitution lines, lines N431 and N452
were 2Ai-2(2D) chromosome substitution lines, line N523 was a 2Ai-2S(2D) ditelosomic substitution line, and line N530 was
a double ditelosomic line with the mitotic chromosome number of 2n = 40 + 4t. One pair of telosomes in line N530 lacked several proximal SSR markers of chromosome 2AS, but possessed certain
terminal markers, which were consistent with an acrocentric structure, and the other pair of chromosome arms were presumably
2Ai-2S telosomes with BYDV-resistance. These wheat-Th. intermedium lines provide useful genetic resources for developing alien chromosome translocation lines. 相似文献