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1.
陆地棉和海岛棉染色体组型比较   总被引:3,自引:0,他引:3  
棉花染色体组型的研究,已有人做过工作,如Eduards曾研究了草棉(Gossypium nerbaceum var.africanum)2n=26和两种澳大利亚野生棉(G.bickii;G.sturticanum)2n=26染色体组型;陈瑞阳、聂汝芝、李懋学等人均在这方面做了工作。我们也对陆地棉(G.hirsutum)和海岛棉(G.barbadense)进行了核型分析,结果如下:  相似文献   

2.
陆地棉半野生种系的细胞学研究   总被引:1,自引:0,他引:1  
对原产于墨西哥的8个陆地棉半野生种系进行了核型分析。其根尖细胞的染色体数目均为52。“墨西哥棉”、“阔叶棉”、“帕默尔氏棉”和“尖斑棉”为1B 核型。其中以“墨西哥棉”最为原始,2n=4x=52=44m(6SAT) 8sm。“尤卡坦棉”、“玛利加郎特棉”、“莫利尔氏棉”和“雷奇蒙德氏棉”为2B 核型。其中以后两个种系最进化,2n=4x=52=32m(2或4SAT) 20sm。讨论了各种系之间的可能的演化关系。  相似文献   

3.
鹅观草属5种植物的核型研究   总被引:11,自引:1,他引:10  
周永红  孙根楼  杨俊良   《广西植物》1993,13(2):149-154
本文首次对我国5种鹅观草属Roegneria植物的核型进行了分析。5个种的染色体数目均为2n=4x=28。它们的核型是:高株鹅观草 R.altissima,2n=4x=28=26m+2sm(SAT);假花鳞草 R.anthosachnoides,2n=4x=28=22m+4sm+2sm(SAT);长芒鹅观草 R.dolichathera,2 n=4x=28=20m+6sm+2sm(SAT);林地鹅观草 R.sylva-tica,2n=4x=28=22m+4sm+2sm(SAT);多变鹅观草R.varia,2n=4x=28=20m+6sm+2sm(SAT)。它们的核型均属2A型,每种植物均有一对随体染色体。  相似文献   

4.
国产磨芋属的染色体核型报道(1)   总被引:4,自引:0,他引:4  
李恒  顾志健  龙春林  杨永平   《广西植物》1990,10(1):21-24
本文报道了磨芋属(Amorphophallus Blume)六个种的染色体数目和核型,其中5个种属于首次报道。其核型公式如下: 1.滇磨芋 K(2n)=2x=26=26m.2.磨芋 K(2n)=2x=26=26m.3.攸落磨芋K(2n)=2x=26=22m(2SAT)+4sm.(2SAT).4.西盟磨芋 K(2n)=2x=26=20m+4sm+2st.5.勐海磨芋 K(2n)=2x=26=22m+4sm.6.白磨芋 K(2n)=2x=26=20m(2SAT)+6sm。  相似文献   

5.
东北地区小麦族11种植物的核型报道   总被引:7,自引:0,他引:7  
本文对中国东北地区小麦族11种植物的核型进行了研究。 结果如下:冰草2n=4x=28=20m +8sm;偃麦草2n=6x=42=34m(2SAT)+8sm;短芒大麦草2n=4x=28=20m+8sm(4SAT);吉林 鹅观草2n=4x=28=20m+8sm(4SAT);大芒鹅观草2n=4x=28=20m(2SAT)+8sm(2SAT);老芒 麦2n=4x=28=20m+8sm(4SAT); 披碱草2n=6x=42=32m+10sm(6SAT); 肥披碱草 2n=6x=42=32m+10sm(6SAT);羊草2n=4x=28=20m(4SAT)+8sm;纤毛鹅观草2n=4x=28= 22m(2SAT)+6sm(2SAT);鹅观草2n=6x=42=30m+12sm(4SAT);其中前5种的核型为首次报道。  相似文献   

6.
异源多倍体化是植物进化的重要因素之一.棉属植物有四个栽培种,即草棉(Gossypium. herbaceum)2n=2x=20、亚洲棉(G.arboreum)2n=2x=26、陆地棉(G.hirsutum)2n=4x=52、海岛棉(G.barbadense)2n=4x=52.其中四倍体栽培种是由两个二倍体棉种通过种间杂交、自然加倍而来的.四倍体栽培种在生长势、抗逆性以及农艺性状等方面均比二倍体栽培种优越.但是,随着倍性的增加,这种优越性具有一定的限度.因此,研究棉属植物最适染色体倍性,在棉花遗传理论研究与育种实践中,均具有重要意义.  相似文献   

7.
我国11种披碱草的核型研究   总被引:14,自引:0,他引:14  
本文报道了中国产的11种披碱草属植物的核型,其中9种为首次报道。结果如下:老芒麦2n=4x=28=24m+4sm(2SAT);披碱草2n=6x=42=36m(2SAT)+6sm(4SAT);青紫披碱草2n=6x=42=32m+10sm(4SAT);垂穗披碱草2n=6x=42=34m+8sm(2SAT);圆柱披碱草2n=6x=42=32m+10sm(2SAT);短芒披碱草2n=6x=42=30m+12sm(4SAT);黑紫披碱草2n=6x=42=36m(6SAT)_1+6sm;毛披碱草2n=6x=42=30m+12sm(6SAT);紫芒披碱草2n=6x=42=22m=12sm(2SAT)+8st(4SAT);肥披碱草2n=6x=42=34m(2SAT)+6sm(4SAT)+2st;麦(?)草2n=6x=42=30m(4SAT)+12sm(2SAT)。  相似文献   

8.
陆地棉的核型模式   总被引:5,自引:0,他引:5  
陆地棉的核型公式为2n=4x=52=30m+20sm(4SAT)+2st(2SAT); 染色体绝对长度平均3.40μm; 臂比值最大与最小的分别是4.02和1.14,平均1.77;随体3对,分别位于第12、19和26对同源染色体的短臂上;最长与最短染色体的比值为2.36;其核型属于Stebbin的2B类型。 Abstract:Karyotype formula of Gossypium hirsutum L.was 2n=4s=52=30m+20m (4SAT)+2st (2SAT); and its absolute lengths of chromosomes averaged 3.40μm; arm ratio differed from 1.24 to 4.02,with the mean value of 1.77; three pairs of satellite chromosomes; the ratio of the longest to the shortest chromosomes was 2.36; and the karyotype belonged to 2B in Stebbin’s classification.  相似文献   

9.
棉属栽培种与野生种杂交的不亲和性   总被引:1,自引:1,他引:0  
何鉴星  梁正兰 《遗传学报》1991,18(2):140-148
本文研究了棉属栽培种与野生种杂交的不亲和性,试验材料涉及5个染色体组,包括2个栽培种(陆地棉和中棉)和5个野生种(戴维逊氏棉、瑟伯氏棉、三裂棉、阿拉伯棉和比克氏棉)。以陆地棉作母本,异己花粉管在花柱中生长缓慢,有花粉管胚珠低于10%,陆地棉×戴维逊氏棉杂种胚在子叶期坏死。以中棉作母本,不亲和性主要表现在受精后的胚胎发育过程中。  相似文献   

10.
杨属派间核型比较研究   总被引:2,自引:1,他引:1  
陈成彬  张守攻  李秀兰  韩素英  宋文芹  齐力旺 《广西植物》2005,25(4):338-340,352,i0004
对杨属五派代表种的核型进行了分析,各代表种核型公式如下:欧洲山杨(白杨派)2n=2x=38=21m(2SAT)+4sm+13st(1SAT);小叶杨(青杨派)2n=2x=38=1M+26m(1SAT)+8sm(1SAT)+1st+2t(1SAT);大叶杨(大叶杨派)2n=2x=38=2M+22m+8sm+6st;胡杨(胡杨派)2n=2x=38=2M+23m+3sm+10st(2SAT);箭杆杨(黑杨派)2n=2x=38=3M+29m(2SAT)+5sm+1st。杨属派间核型差异主要表现在中部与次中部着丝点(M,m)和近端部与端部着丝点(st,t)染色体数目上。白杨派和胡杨派具较多的st、t染色体,核型不对称系数比其它派高。按Stebbins理论白杨派和胡杨派属进化类型。  相似文献   

11.
Karyotypes in seven species of Gossypium, G. thurberi, G. advidsonii, G. raimondii of D group; G. herbaceum, G. arboreum of A group; G. hirsutum and G. ba- rbadense of AD group were studied in 1983. It can be simplified as follows: G. thurberi 2n = 2x = 26 = 24m + 2Sm (2SAT); G. davidsonii 2n= 2x = 26 20m+6Sm(4SAT); G. raimondii 2n=2x= 26= 20m+6Sm(2SAT); G. herbaceum 2n = 2x = 26 = 18m + 4Sm+4St(4SAT); G. arboreum 2n = 2x = 26 = 18m + 6Sm (2SAT) + 2St(2SAT); G. hirsutum 2n = 4x =52 = 32m + 18Sm(4SAT) +2St (2 SAT); G. barbadense 2n = 4x = 52 = 38m + 12Sm (2SAT) + 2St(2SAT). This paper also deals with the supplier in A group and D group of tetraploids.  相似文献   

12.
Reference electrophoretic spectra that allow compiling electrophoretic formulas of certain cotton species and varieties were obtained on the basis of analysis of the electrophoretic spectrum of water-soluble and barely soluble proteins of seeds of diploid cotton species of genomic group A (Gossypium arboretum var. indicum, G. arboreum ssp. obtusifolum, G. herbaceum ssp. africanum, and G. herbaceum Harga), group C (G. australe, G. bickii, G. nelsone, and G. sturtianum), group D (G. davidsonii. G. harknessii. G. klotzschianum, G. raimondii, G. thurberi, and G. trilobum), and amphidiploid species of group AD (G. mustelinum, G. hirsutum ssp. palmeri, G. tricuspidatum Bagota, G. tricuspidatum Mari Galanta, G. barbadense L., and G. hirsutum L.).  相似文献   

13.
四个栽培棉种间的杂种F1细胞遗传学与亲缘关系研究   总被引:2,自引:0,他引:2  
以棉属四个栽培棉种进行种间杂交,产生(亚洲棉×草棉)和(陆地棉×海岛棉)2个二元杂种F1及其[(亚洲棉×草棉)×(陆地棉×海岛棉)]四元杂种F1,观察和测定4个栽培棉种及其2个二元杂种F1和四元杂种F1的花粉母细胞(PMC)减数分裂的染色体行为及其花粉生活力,以研究4个栽培棉种间的亲缘关系和进化关系。结果表明,二元杂种(亚洲棉×草棉)F1的PMC减数分裂中期Ⅰ出现一个四体环,其余为二价体,染色体构型为2n=26=11Ⅱ 1Ⅳ;花粉生活力的测定表明,(亚洲棉×草棉)F1可育型花粉为50.71%,表现为典型的配子半不育特性,说明两个二倍体棉种间发生一次染色体易位。(陆地棉×海岛棉)F1以26个二价体细胞为主,但有少量的单价体、三价体以及四价体,染色体构型为2n=52=0.78Ⅰ 22.24Ⅱ 0.94Ⅲ 0.98Ⅳ。花粉生活力的测定表明,(陆地棉×海岛棉)F1可育型花粉为54.84%,可见2个四倍体棉种间亲缘关系较近,二者之间仅发生了染色体的易位或倒位。而由4个栽培种合成的四元杂种F1,其减数分裂异常,染色体丢失现象普遍,部分染色体不能联会配对,以单价体的形式存在,并出现三价体、四价体、五价体等多价体,染色体构型为2n=52=5.45Ⅰ 14.41Ⅱ 2.44Ⅲ 1.59Ⅳ 0.63Ⅴ 0.15Ⅵ,其可育花粉为6.87%。研究结果表明了4种栽培棉种之间的亲缘关系相对较近,可以通过遗传重组产生综合有4个栽培棉种性状的新种质。  相似文献   

14.
六种犁头尖属植物(天南星科)的核型研究   总被引:6,自引:0,他引:6  
报道了 6种 8个居群犁头尖属 ( Typhonium Schott)植物的核型 ,其结果如下 :( 1 )独角莲 ( T.gigan-teum)北京居群 2 n=4 x=5 2 =4 4m+ 7sm+ 1 st;( 2 )鞭檐犁头尖 ( T.flagelliforme)金平居群 2 n=3x=2 4 =3m+ 9sm( 4 SAT) + 1 2 st,河内居群 2 n=4 x=32 =7m+ 2 0 st+ 4sm+ 1 t;( 3)单籽犁头尖 ( T. calcicolum)西畴居群2 n=4 x=5 2 =2 1 sm+ 2 3m( 5 SAT) + 8st;( 4 )犁头尖 ( T.blumei)重庆居群 2 n=4 x=5 2 =4 0 m( 1 SAT) + 1 2 sm( 3SAT) ;( 5 )马蹄犁头尖 ( T.trilobatum)西双版纳居群 2 n=2 x=1 8=4 sm( 2 SAT) + 1 2 m+ 2 st,河内居群 2 n=2 x=1 8=2 st+ 9m+ 7sm;( 6 )金慈菇 ( T. roxburgii)个旧居群 2 n=2 x=1 8=8sm+ 1 0 m( 2 SAT)。其中鞭檐犁头尖 2 n=2 4、32 ,金慈菇 2 n=1 8均为首次报道 ,同时分析讨论了本属植物染色体基数和倍性的多样性及其可能的原始基数  相似文献   

15.
Cotton is under the constant threat of leaf curl virus, which is a major constraint for successful production of cotton in the Pakistan. A total of 3338 cotton genotypes belonging to different research stations were screened, but none were found to be resistant against the Burewala strain of cotton leaf curl virus (CLCuV). We explored the possibility of transferring virus-resistant genes from Gossypium arboreum (2n = 26) into G. hirsutum (2n = 52) through conventional breeding techniques. Hybridization was done manually between an artificial autotetraploid of G. arboreum and an allotetraploid G. hirsutum, under field conditions. Boll shedding was controlled by application of exogenous hormones, 50 mg/L gibberellic acid and 100 mg/L naphthalene acetic acid. Percentage pollen viability in F(1) hybrids was 1.90% in 2(G. arboreum) x G. hirsutum and 2.38% in G. hirsutum x G. arboreum. Cytological studies of young buds taken from the F(1) hybrids confirmed that they all were sterile. Resistance against CLCuV in the F(1) hybrids was assessed through grafting, using the hybrid plant as the scion; the stock was a virus susceptible cotton plant, tested under field and greenhouse conditions. All F(1) cotton hybrids showed resistance against CLCuV, indicating that it is possible to transfer resistant genes from the autotetraploid of the diploid donor specie G. arboreum into allotetraploid G. hirsutum through conventional breeding, and durable resistance against CLCuV can then be deployed in the field.  相似文献   

16.
王臣  路芳  关旸  张贵一 《植物研究》2001,21(2):215-221,T001,T002,T003
报道东北蒿属艾组12种植物的染色体数及核型资料,结果如下:宽叶山蒿(Artemisia stolonifera (Maixm.)Komar.)2n=4x=36=28m 4sm(4SAT) 4st(4SAT);野艾蒿(A.lavandulaefolia DC)2n=2x=50=40m 4sm 6st(6SAT); 矮蒿(A.lancea Van.)2n=2x=16=10m 4sm 2st;蒙古蒿(A.mongolica (fisch.ex Bess.)Nakai]2n=2x=16=14m 2st;红足蒿(A.rubripes Nakai)2n=2x=16=14m 2st;歧茎蒿(A.igniaria Maixm.)2n=2x=34=28m 2sm 4st(4SAT);柳叶蒿(A.integrifolia Linn.)2n=4x=36=20m 12sm 4st;线叶蒿(A.subula 4st(4SAT);柳叶蒿(A.integrifolia Linn.)2n=4x=36=20m 12sm 4st;线叶蒿(A.subulata Nakai)2n=2x=16=14m 2st;高岭蒿(A.brachyphylla Kitam.)2n=2x=18=14m 2sm 2st;林文稿[A.uiridissima(Komar.)Pamp.]2n=2x=18=14m 4sm;奄癌(A.keiskeana Miq.)2n=2x=18=16m 2sm;阴地蒿(A.sylvatica Maxim.)2n=2x=16=14m 2sm,核型对称性野艾蒿(A.lavandulaefolia)为2B型,其余均为2A型,依据核型资料对个别种的演化 分类进行了初步探讨。  相似文献   

17.
In this paper the karyotypes of eleven species of Triticeae from Northeast China are reported. The karyotype formulae are as follows: Agropyron cristatum, 2n=4x=28=20m+8sm; Elytrigia repens, 2n=6x=42=34m(2SAT) + 8sm; Hordeum brevisubulatum, 2n = 4x = 28 = 20m + 8sm( 4SAT ); Roegneria nakaii, 2n = 4x = 28 = 20m + 8sm( 4SAT ); R. turczaninovii var. macrathera, 2n = 4x = 28 = 20m(2SAT ) + 8sm(2SAT ); Elymus sibiricus, 2n = 4x = 28 = 20m + 8sm ( 4SAT); E. dahuricus, 2n=6x=42=32m+10sm( 6SAT); E. excelsus, 2n=6x=42=32m+10sm( 6SAT); Leymus chinensis, 2n=4x=28=20m(4SAT) + 8sm; Roegneria ciliaris, 2n = 4x = 28 = 22m( 2SAT ) + 6sm( 2SAT ); R. kamoji, 2n= 6x = 42= 30m+ 12sm(4SAT). The karyotypes of the first five species are re-ported for the first time.  相似文献   

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