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染色体数

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This results seemingly indicate tnat the morphogenic potential of calli and 〓h〓 fo〓mation of abnormal shoots may be related to the degrees of the aber〓ation of chrome〓ome numbers.

这表明分化能力与染色体数的变异程度有关,另外芽中染色体数异常细胞的存在也许是一些芽发育成畸形苗的一个重要原因。

Its chromosome number was estimated at 2n = 48; which consisted of 8 submetacentric and 40 telocentric chromosomes. The karyotype formula was described as 8 sm + 40 t with 56 fundamental arms.

计算其染色体数,结果为2n=48,其中8条为近中央中结染色体及40条为端点中结染色体,核型公式为8 sm+40 t,染色体总臂数为56。

The karyotype pattern showed that the chromosome number of 2n = 48 contained two metacentric chromosomes, two submetacentric chromosomes, 44 telocentric chromosomes. The karyotype formula is 2 m + 2 st + 44 t and the fundamental number is 52. We will continue to make the karyotype analysis of other tunas in the future.

结果显示其染色体数为2 n = 48,其中2条为中央中结染色体,2条为近中央中结染色体,44条为端点中结染色体,核型公式为2 m + 2 sm + 44 t,染色体总臂数为52,未来将继续进行其它鲔鱼的核型分析。

Through chromosome identification, the chromosome numbers of diploid and tetraploid were 16 and 32, respectirely.

染色体鉴定表明,二倍体染色体数为2n=2x=16,四倍体染色体数为2n=4x=32。

Effect of Different Sowing Date and Densities to the Yield of Avena nuda L .Variety Huazao No.2;2. The paper analyses the chromosome karyotype of Avena nuda L .

对莜麦染色体的核型进行了分析,结果表明其染色体数为42,为六倍体,包括11对中部着丝粒染色体,9对近中部着丝粒染色体和1对近端着丝粒染色体,其中有3对染色体带有随体。

The analysis of these data shows that in the process of evolution the X chromosomes are as conservative as those in other mammals and the intraspecific and interspecific changes of autosomes follow such a rule:the increase of one chromosome in 2n number is always accompanied by the increase of two acrocentrics and the decrease of one metacentric or submetacentric,and vice versa.

对这些材料所进行的分析表明,鹿属动物在进化过程中,X染色体是很保守的,而常染色体的变化,无论是种间还是种内,全是2n数每增加1条,中部或亚中部着丝点染色体数就减少1条,而端着丝点染色体数就增加2条,反之亦然。

The chromosome number is 2n=96, belonging to hexaploid species (2n=6x=96), and the morphological difference is not obvious among the 96 chromosomes. All the chromosomes are metacentric and submetacentric. Relative length ratio of the longest to the shortest chromosomes is 2.10. There is no satellite chromosome in all the 96 chromosomes. The karyotype formula is 2n=96=60m+36sm, the karyotype type is 2B, a higher karyotype evolution.

结果表明,该入侵种的染色体数为2 n=96,属六倍体物种,各染色体间形态差异不明显,均为中着丝粒或近中着丝粒染色体,最长与最短染色体相对长度比为2.10,全套染色体未见随体,核型公式为2 n=96=60 m+36 sm,核型类型为进化程度较高的2B型。

In the offsprings of the aneuploids (P3) with 41~44 chromosomes, there are four types of plants with 29~32 chromosomes. Except the plant with 29 chromosomes, others which appeared abnormal meiosis behavior and poor pollen fertility are mixoploid.

染色体数为44与41的两种超倍体(P3群体)后代,鉴定出具有29~32条染色体的4种非整倍体,除染色体数为29的植株外,其余均为混倍体,它们的减数分裂异常,花粉育性低。

Karyotypic findings showed that all cultivars were mixoploid with chromosome number ranging from 49 to 57, and 54 was the most frequent number observed.

结果表明:(1)17个栽培小菊均为混倍体,染色体数在49~57之间变异,以54条为主;(2)染色体呈现多态性:多数品种由中部、近中部和近端部着丝粒染色体组成;最长与最短染色体的比值为1.62~2.39;臂比>2的染色体所占的比率为11.11%~29.62%;核型不对称系数为59.74%~63.37%;3个地被菊品种和'奥运橙光'、'金陵白凤'(2n=53)核型类型为&2B&,其它品种为&2A&型。

All lines showed a chromosome number of 2n = 42, five of them carried botha pair of wheat-rye (Triticum aestivum-Secale cereal ) 1BL/1RS translocation chromosomes and a pair ofAgropyron intermedium chromosomes, three carried a pair of Ai chromosomes only, three otherscarried a pair of 1BL/1RS chromosomes only, and one carried neither 1BL/1BS nor Ai chromosome.

结果表明,12份材料染色体数均为42,其中5份材料均具有一对小麦-黑麦(Triticum aestivum-Secalecereal)1BL/1RS易位染色体和一对中间偃麦草染色体、3份材料只具有一对中间偃麦草染色体、3份材料只具一对1BL/1RS染色体、1份材料无1BL/1RS和中间偃麦草染色体。

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