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991.
本试验以祁门槠叶种为对照,选取安徽1号、安徽3号和凫早2号三个国家级无性良种为试验对象,按照相同采制标准制成祁红香螺茶样,通过对主要生化成分测定结果和感官审评的比较,研究不同茶树品种对祁红香螺品质的影响。结果表明:三个无性良种茶样的内含物质丰富,生化成分比例协调;形美质优,感观审评五项因子的综合评分皆高于对照,得分从高到低依次为凫早2号、安徽3号、安徽1号、祁门槠叶种,说明三个国家级无性茶树良种均可作为生产祁红香螺的选用品种,尤其以凫早2号、安徽3号为宜。 相似文献
992.
麻疯树种子含油率与种子大小、粒重的相关性分析 总被引:1,自引:0,他引:1
麻疯树是一种理想的进行生物燃油生产的木本油料树种.麻疯树油脂主要储存在种子中,种子油量大小由种子粒重和含油率构成.因此,提高麻疯树种子粒重和含油率可增加麻疯树种子产油量.研究表明,麻疯树种子粒重、含油率存在显著的表型差异,改良空间较大.相关性分析显示,麻疯树种子大小(长、宽、高)与单粒种子重表现出较高相关性(相关系数r=0.69,0.54,0.69),单粒种子重和种子含油率表现出弱的负相关性(r=-0.07),而种仁宽、高与种子含油率表现出一定正相关(r=0.47,0.54),同时种仁宽、高与种子宽、高呈显著正相关.因此,在一定程度上可通过提高种子宽、高来提高种子的单粒重和含油率,从而提高种子的产油量. 相似文献
993.
Genetic impacts under selective breeding of agricultural crops have been frequently investigated with molecular tools, but
inadequate attention has been paid to assess genetic changes under long-term genetic improvement of plant traits. Here we
analyzed allelic changes with respect to wheat trait improvement in 78 Canadian hard red spring wheat cultivars released from
1845 to 2004 and screened with 370 mapped SSR markers. The improvements in quality, maturity, yield, disease, stem rust, leaf
rust, sawfly resistance, and agronomy were considered. A total of 154 (out of 370) loci with significant allelic changes across
21 chromosomes were detected in the 78 wheat cultivars separated into improved versus non-improved groups for eight traits.
The number of significant loci for improving a trait ranged from four for quality to 68 for yield and averaged 35. Many more
loci with significant allelic reduction for improving a trait were detected than those with significant allelic increase.
Selection for early maturity introduced more alleles, but improving the other traits purged more alleles. Significantly lower
numbers of unique alleles were found in the cultivars with improved traits. The distributions of unique allele counts also
varied greatly across the 21 chromosomes with respect to trait improvement. Significant SSR variation between two cultivar
groups was observed for improvement in seven traits, but not in stem rust. The proportional SSR variation residing between
two groups ranged from 0.014 to 0.118. The proportional SSR variations within the improved cultivar groups consistently were
much lower than those within the non-improved groups. These findings clearly demonstrate the association between allelic changes
and wheat trait improvements and are useful for understanding the genetic modification of the wheat genome by long-term wheat
breeding. 相似文献
994.
Five inbred lines, 10 single cross maize (Zea mays L.) hybrids and two standard cultivars as check were used to study the combining abilities and heterosis under three environmental
conditions. Random amplified polymorphic DNAs (RAPDs) markers were used to study the genetic diversity (GD) and further to
analyze relationship of RAPDs based GD with combining ability and heterosis in short duration maize. Spearman’s rank correlation
coefficients and linear regressions were analyzed to identify the most important factor determining heterosis and per se performance
of the hybrids. Variances due to general combining ability (GCA), specific combining ability (SCA) and their interactions
with environment were found to be significant. Twenty random primers generated 179 RAPD fragments. Of these, 102 RAPD fragments
were polymorphic. GD was determined using Jaccard’s similarity coefficient, and a dendogram was constructed by UPGMA cluster
analysis. The RAPDs based GD exhibited non-significant negative or positive association, non-significant linear regression
along with very low coefficient of determination (R
2) with SCA, high and mid parent heterosis (HP and MP) and per se performance of the hybrids. Significant positive correlations
and regressions along with high coefficients of determination were recorded for SCA with HP, MP and per se performance of
the hybrids. The HP and MP also established significant positive association and linear regression along with high coefficient
of determination with per se performance of hybrids whereas the parental mean did not establish any significant correlations
with the GD, HPH, MPH and grain yield of F1s. The present investigation, therefore, did not find any role of RAPDs based GD in determining hybrid heterosis and hybrid
performance in short duration sub-tropical maize. The SCA, however, has emerged as the most important factor in determination
of heterosis as well as per se performance of the hybrids in short duration maize. 相似文献
995.
Beatriz Wiebke-Strohm Annette Droste Giancarlo Pasquali Marina Borges Osorio Lauro Bücker-Neto Luciane Maria Pereira Passaglia Marta Bencke Milena Schenkel Homrich Márcia Margis-Pinheiro Maria Helena Bodanese-Zanettini 《Euphytica》2011,177(3):343-354
An Agrobacterium-mediated transformation procedure for soybean [Glycine max L. Merrill] proliferating somatic embryos is here described. The Agrobacterium tumefaciens LBA4404 strain harboring pTOK233, pCAMBIA1390-olp or pH7WG2Dwrky plasmids was used to mediate gene transfer into the plant genome. Prior to Agrobacterium inoculation, proliferative soybean embryogenic clusters were microwounded by DNA-free tungsten particle bombardment. Three
independent transformation experiments were performed. In Experiment I, 26 transgenic plants were obtained from a unique clone
of cv Bragg, while 580 plants were recovered from 105 clones of cv IAS5. In Experiment II, a single hygromycin-resistant clone
of cv BRSMG68 Vencedora was recovered and gave rise to five plants. In Experiment III, 19 plants of cv Bragg and 48 plants
of IAS5 were recovered, representing five and 14 independent transformation events, respectively. PCR and Southern analyses
confirmed the transgenes’ integration into plant genomes. Transgenic plants were fertile. They flowered, set pods and seeds.
Transgene segregation in two T1 progenies fits the Mendelian pattern (3:1 transgenic:non-transgenic plants). This is the first report of transgenic fertile
soybean plants obtained from somatic embryogenic tissues transformed by the system that combines DNA-free particle bombardment
and Agrobacterium. 相似文献
996.
Molecular genetics of race non-specific rust resistance in wheat 总被引:1,自引:0,他引:1
Evans S. Lagudah 《Euphytica》2011,179(1):81-91
Over 150 resistance genes that confer resistance to either leaf rust, stripe rust or stem rust have been catalogued in wheat
or introgressed into wheat from related species. A few of these genes from the ‘slow-rusting’ adult plant resistance (APR)
class confer partial resistance in a race non-specific manner to one or multiple rust diseases. The recent cloning of two
of these genes, Lr34/Yr18, a dual APR for leaf rust and stripe rust, and Yr36, a stripe rust APR gene, showed that they differ from other classes of plant resistance genes. Currently, seven Lr34/Yr18 haplotypes have been identified from sequencing the encoding ATP Binding Cassette transporter gene from diverse wheat germplasm
of which one haplotype is commonly associated with the resistance phenotype. The paucity of well characterised APR genes,
particularly for stem rust, calls for a focused effort in developing critical genetic stocks to delineate quantitative trait
loci, construct specific BAC libraries for targeted APR genes to facilitate robust marker development for breeding applications,
and the eventual cloning of the encoding genes. 相似文献
997.
Abbas Rezaeizad Benjamin Wittkop Rod Snowdon Maen Hasan Valiollah Mohammadi Abbas Zali Wolfgang Friedt 《Euphytica》2011,177(3):335-342
Association mapping identifies quantitative trait loci (QTLs) by examining the marker-trait associations that can be attributed
to the strength of linkage disequilibrium between markers and functional polymorphisms across a set of diverse germplasm.
In this study, association mapping was performed to detect QTL-linked and genome wide SSR markers linked to phenolic compounds
of extraction meal in a population of 49 genetically diverse oilseed rape cultivars of dark-seeded, winter-type oilseed rape
accessions. Correction for population structure was performed using 559 genome wide SSR markers. Results showed that seed
colour is an important contributor to seed meal quality. Totally, 52 SSR markers linked to phenolic compounds were detected,
five of them being QTL linked markers. Some of these markers were already mapped on Brassica napus chromosomes that contain known QTL controlling oilseed rape meal quality traits. Our results demonstrate that association
mapping is a useful approach to complement and enhance previous QTL information for marker-assisted selection. 相似文献
998.
Hordeum chilense Roem. et Schult. is a diploid wild South American barley that contains genes of interest for cereal breeding, many of them
located on chromosome 1Hch. In the current study, two H. chilense-wheat addition lines with deletions in the 1Hch chromosome were used for sub-arm localization of five prolamin (glutenin and gliadin) loci and 33 EST-SSR marker loci on
chromosome 1Hch. The two sets of markers were distributed across five sub-arm chromosome regions. Three glutenin loci (Glu-H
ch
2, Glu-H
ch
3, Glu-H
ch
4) together with the gliadin locus Gli-H
ch
1 were located on the distal 20% of the 1HchS arm, whereas the glutenin locus Glu-H
ch
1 was on the proximal 88% region of 1HchL. Among 33 EST-SSR marker loci, 7 (21.2%) were on the 1HchS arm and, of them, 3 (9.1%) were on the distal 20% end and 4 (12.1%) on the proximal 80% region. The 26 loci (78.8%) on 1HchL were distributed across three different regions: 18 (78.8%) in the proximal 88%, 3 (9.1%) in the distal 12% and 5 (15.2%)
in a region less than 12% from the distal end. The deletions in the 1Hch chromosome added to the common wheat background were thus shown to be useful for determining the sub-arm location of EST-SSR
and prolamin loci. This could facilitate the identification of molecular markers linked to genes of agronomic interest and
the isolation of such genes for use in common wheat improvement. 相似文献
999.
Fei Zhang Sumei Chen Fadi Chen Weimin Fang Yanming Deng Qingshan Chang Pusheng Liu 《Euphytica》2011,177(1):15-24
The inheritance of two flowering traits of chrysanthemum, initial blooming time and the duration of flowering, was investigated
using segregation within an F
1 population derived from a cross between the autumn-flowering ‘Yuhualuoying’ and the summer-flowering ‘Aoyunhanxiao’ cultivars.
The analysis, based on a single segregating generation and the major gene plus polygene mixed inheritance model, showed that
the inheritance of both traits was compatible with the presence of two pairs of major genes displaying additivity–dominance–epistasis,
with additivity predominating. As the heritability of both pairs of major genes was high (initial blooming time ~65%, duration
of flowering ~72%), it should be possible to select for both traits in early breeding generations. A marker-trait association
analysis based on sequence-related amplified polymorphism (SRAP) genotyping uncovered 10 (initial blooming time) and 12 (duration
of flowering) markers significantly associated with phenotype, cumulatively explaining, respectively, 46 and 54% of the variation.
Some potentially useful markers were identified. 相似文献
1000.
Soybean oil content QTL mapping and integrating with meta-analysis method for mining genes 总被引:2,自引:0,他引:2
Zhao-ming Qi Qiong Wu Xue Han Ya-nan Sun Xiang-yu Du Chun-yan Liu Hong-wei Jiang Guo-hua Hu Qing-shan Chen 《Euphytica》2011,179(3):499-514
Oil content of soybean was a valuable quantitative trait controlled by multiple genes. Eleven QTLs were detected by both CIM
and MIM method with the population crossed between Charleston and Dong nong594 in recent 3 years (2007, 2008, 2009). Combining
the QTLs collected over the past 20 years, an integrated map of oil-content major QTLs in soybean was established using soymap2,
which was published in 2004, as a reference. Using the software BioMercator ver.2.1, QTLs were projected from their own maps
onto the reference map. In total, ninety-eight QTLs were integrated into soymap2. A meta-analysis method was used to narrow
down the confidence interval, and 20 consensus QTLs and their corresponding markers were obtained. Using a local version of
GENSCAN, 10,137 sequences in the consensus QTL intervals were predicted. With BLAST, these predicted genes were compared to
the International Protein Index database to mine the related genes. The results offer a basis for gene mining and molecular
breeding in soybean. 相似文献