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11.
12.
WEN Feng SU Wen-pan ZHENG Hua YU Ben-chi MA Zeng-feng ZHANG Peng GUO Wen-wu 《农业科学学报》2020,19(3):632-642
Protoplast electrofusion between callus protoplasts of cultivar TMS60444 and mesophyll protoplasts of cultivar SC8 was performed as an approach for the genetic improvement of cassava. The fusion products were subsequently cultured in protoplast culture medium(TM2 G) with gradual dilution for approximately 1–2 months. Then the protoplast-derived compact calli were transferred to suspension culture medium(SH) for suspension culture. The cultured products developed successively into embryos, mature embryos, and shoots on somatic embryo emerging medium(MSN), embryo maturation medium(CMM), and shoot elongation medium(CEM), respectively. And the shoots were then rooted on Murashige and Skoog(1962) medium(MS). Sixty-six cell lines were obtained and 12 of them developed into plantlets. Based on assessment of ploidy level and chromosome counting, four of these plantlets were tetraploid and the remaining eight were diploid. Based on assessment of ploidy level and simple sequence repeat(SSR) analysis, nine tetraploid cell lines, one diploid variant plant line and nine variant cell lines were obtained. The diploid variant plant line and the nine variant cell lines all showed partial loss of genetic material compared to that of the parent TMS60444, based on SSR patterns. These results showed that some new germplasm of cassava were created. In this study, a protocol for protoplast electrofusion was developed and validated. Another important conclusion from this work is the confirmation of a viable protocol for the regeneration of plants from cassava protoplasts. Going forward, we hope to provide technical guidance for cassava tissue culture, and also provide some useful inspiration and reference for further genetic improvement of cassava. 相似文献
13.
辣木的染色体制片优化及核型分析 总被引:1,自引:0,他引:1
以辣木分生组织为材料,采用酶解去壁低渗法制片,探讨不同取材部位、预处理方式和酶解时间对辣木染色体制片的影响,并对其进行核型分析,以期为辣木的起源、演化及遗传育种提供一定理论依据。结果表明:以辣木新枝茎尖为最佳取材部位,用饱和对二氯苯预处理2 h,再用4%纤维素酶和5%果胶酶混合物酶解4 h,制片所得染色体效果最佳。核型分析表明,辣木染色体属于小染色体,有28条,核型公式为2n=2x=2n=28m,属于1B类型,核型不对称系数60.29%,核型对称程度较高,这表明辣木在进化中可能处于比较原始类型。 相似文献
14.
为了揭示棉花染色体片段代换系BC_7F_2纤维产量性状和品质性状之间的相关关系,筛选纤维品质优异的新材料。以1套陆海染色体片断代换系为材料,对BC7F2高代回交群体的产量性状与纤维品质性状的表性数据进行评价及偏相关分析。结果表明:群体各性状的平均值接近于轮回亲本‘中棉所36’,群体内存在丰富的遗传变异。纤维上半部平均长度超轮回亲本比例为30.25%,断裂比强度超轮回亲本比例为71.25%,衣分超轮回亲本比例为29.38%。总体上单铃重与马克隆值、整齐度指数呈极显著正相关,衣分与上半部平均长度、断裂比强度呈显著负相关,与单铃重呈极显著负相关。从中筛选出部分纤维品质突出的单株,纤维上半部平均长度高于30.00 mm,断裂比强度高于31.00 cN/tex。 相似文献
15.
Guo Lixue Shi Yuzhen Li Junwen Gong Juwu Liu Aiying Shang Haihong Gong Wankui Chen Tingting Ge Qun Sun Jie Yuan Youlu 《棉花学报》2015,27(6):550-560
In this study, F2 populations from two chromosome segment substitution lines MBI7455 and MBI7358, were quantified using SSR to evaluate the parents' genotype and detect QTL related to fiber quality plus yield traits of cotton. Results show that the recurrent parent (CCRI45) hosted 96.70% and 95.60% of chromosome segment substitution in MBI7455 with 12 chromosome segments and in MBI7358 with 16 chromosome substitution segments of Gossypium barbadense, respectively. In the F2 population, the average rate of chromosome substitution of the recurrent parent (CCRI45) was 96.44%, and the average segments of chromosome substitution of Gossypium barbadense was 13.42, with an average segments of homozygous donor chromosome value of 3.90. Analysis showed 19 fiber quality-related QTL with a phenotypic variance of between 2.52%-13.11% and seven yield traits-related QTL with a range of 2.93%-11.40% phenotypic variance, resulting in a total of 26 QTL. The CSSLs could be used to detect QTL for fiber yield and quality traits, which offer an important foundation for the cotton molecular-assisted breeding. 相似文献
16.
SU Ying XING Xiu-mei SHAO Yuan-chen WANG Hong-liang ZHANG Ran-ran JU Gui-chun 《中国畜牧兽医》2016,43(3):761-767
In order to determine the genetic diversity in Cervus elaphus using AMELY gene in Y chromosome,200 blood samples from Cervus elaphus yarkandensis,Cervus elaphus asiaticus,Cervus elaphus xanthopygus,Cervus elaphus songaricus and Cervus elaphus kansuensis populations were collected and AMELY genes were sequenced in this study.The haplotype diversity of Y chromosome was analyed,phylogenetic tree was built to explore the genetic diversity and the paternal origins about Cervus elaphus.The results showed that:Cervus elaphus yarkandensis had the most variation sites and the highest nucleotide diversity.The genetic distance between Cervus elaphus yarkandensis and other Cervus elaphus were far.6 haplotypes were identified in this study,named as A1,A2,A3,A4,A5 and A6,respectively.Cervu elaphus yarkandensis,Cervus elaphus asiaticus and Cervus elaphus kansuensis had separate haplotype.The NJ and ML phylogenetic trees showed that Cervus elaphus songaricus,Cervus elaphus asiaticus,Cervus elaphus xanthopygus and Cervus elaphus kansuensis clustered together which Cervus elaphus yarkandensis and Cervus elaphus kansuensis were form a department,separately.Cervus elaphus asiaticus,Cervus elaphus xanthopygus and Cervus elaphus yarkandensis clustered into one branches and there might be gene exchange among Cervus elaphus yarkandensis,Cervus elaphus kansuensis and other Cervus elaphus. 相似文献
17.
普通小麦辉县红-荆州黑麦异染色体系的选育及其梭条花叶病抗性鉴定 总被引:3,自引:1,他引:3
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
18.
Homoeological relationships between the f chromosome of Brassica rapa and the e chromosome of Brassica oleracea 总被引:1,自引:0,他引:1
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
19.
J. Sutka 《Euphytica》1977,26(2):475-479
Summary The association of genes for purple pigment in the coleoptile with the chromosomes of the winter wheat variety Mironovskaya 808 was investigated using monosomic F2 analysis. The segregation ratio for F2 hybrids of Chinese Spring monosomics x Mironovskya 808 seems to indicate that the purple colour of the coleoptile is determined by two dominant genes, Rc3 and Rc4, which are located on the chromosomes 7D and 6B respectively, and which reinforce each other. Apart from these two genes, suppressors found on the chromosomes 2A, 2B, 2D, 4B and 6A also play a role in the intensity of the purple colour.With the aid of a Chinese Spring telocentric chromosome marker it was observed that the Rc3 gene is located on the chromosome arm 7DS, at a distance of 16±4.23 crossover units from the centromere. 相似文献
20.
In cereals, chromosome doubling of microspore-derived haploid plants is a critical step in producing doubled haploid plants.
This investigation was undertaken to study the effect of incorporation of colchicine in the induction medium for anther culture,
and the effect of colchicine on anther culture-derived plants of triticale grown under controlled greenhouse conditions. In
the latter case, chromosome doubling of adult sterile plants derived from anther culture of fourteen triticale populations
was attempted, where androgenetic plants with non-dehiscent anthers were cloned and subjected to the colchicine treatment,
and then grown with the aid of hydroponics. The hydroponic system provided optimal conditions for recovery of the affected
haploids from the toxic effects of colchicine treatment and all colchicine-treated plants survived. A topcross-F1 (TC1F1) population with timopheevii cytoplasm produced the highest percentage of plants with seed-set either due to chromosome doubling
by colchicine (98%) or spontaneous doubling of chromosome number (15%). Colchicine-treated anthers performed inferior than
control in both induction and regeneration phases. One of the key observation of this study was the reversal from reproductive
stage back to the vegetative stage which in turn enabled further cloning of haploid plants under hydroponic conditions once
they were identified as sterile. The one hundred percent survival rate of in vitro-derived plants, 100% survival rate of colchicine treated haploid plants and the high chromosome doubling success rate (X
= 82.3) observed in this study imply that a temperature-controlled greenhouse with an hydroponic system provides an efficient
environment for inducing chromosome doubling of haploid plants in cereals.
This revised version was published online in August 2006 with corrections to the Cover Date. 相似文献