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211.
Zerihun Yemataw Hussein Mohamed Mulugeta Diro Temesgen Addis Guy Blomme 《Genetic Resources and Crop Evolution》2014,61(6):1091-1104
Enset, Ensete ventricosum, is a crop that contributes to food security for more than 20 % of Ethiopia’s population. One clone never fulfills all the ecological and social requirements and hence farmers maintain a diverse range of enset cultivars on their farm. The objective of this work was to assess morphological and use value related characterization and document the indigenous knowledge of farmers on classification, cultivation and utilization of enset. A total of 280 farm households in seven zones were surveyed using individual household interviews. The observed traits showed low to high levels of variability among enset clones with a Shannon–Weaver diversity index (H′) value of 0.154–0.827 for bulla (extracted starch) quality and midrib color, respectively. Moreover, the overall H′ mean of 0.399 confirmed the existence of low to medium levels of phenotypic variation. The mean squares due to genotypes were highly significant (P ≤ 0.01) for all the quantitative traits studied, suggesting the presence of substantial genetic variability among the 165 enset clones. Kocho (fermented starch) yield had significant positive correlation with bulla quality and plant vigor. Knowledge of farmers’ practices is currently used to validate agronomic innovations and inform the setting up of a network of phenotype collections managed by farmers. 相似文献
212.
Maize is a commodity crop providing millions of people with food, feed, industrial raw material and economic opportunities. However, maize yields in Africa are relatively stagnant and low, at a mean of 1.7 t ha−1 compared with the global average of 6 t ha−1. The yield gap can be narrowed with accelerated and precision breeding strategies that are required to develop and deploy high-yielding and climate-resilient maize varieties. Genomic and phenotypic selections are complementary methods that offer opportunities for the speedy choice of contrasting parents and derived progenies for hybrid breeding and commercialization. Genomic selection (GS) will shorten the crop breeding cycle by identifying and tracking desirable genotypes and aid the timeous commercialization of market-preferred varieties. The technology, however, has not yet been fully embraced by most public and private breeding programmes, notably in Africa. This review aims to present the importance, current status, challenges and opportunities of GS to accelerate genetic gains for economic traits to speed up the breeding of high-yielding maize varieties. The first section summarizes genomic selection and the contemporary phenotypic selection and phenotyping platforms as a foundation for GS and trait integration in maize. This is followed by highlights on the reported genetic gains and progress through phenotypic selection and GS for grain yield and yield components. Training population development, genetic design and statistical models used in GS in maize breeding are discussed. Lastly, the review summarizes the challenges of GS, including prediction accuracy, and integrates GS with speed breeding, doubled haploid breeding and genome editing technologies to increase breeding efficiency and accelerate cultivar release. The paper will guide breeders in selection and trait introgression using GS to develop cultivars preferred by the marketplace. 相似文献
213.
Isack Mathew Hussein Shimelis Macdex Mutema Alistair Clulow Rebecca Zengeni Nozibusiso Mbava Vincent Chaplot 《Journal of Agronomy and Crop Science》2019,205(4):385-400
The biomass allocation pattern of plants to shoots and roots is a key in the cycle of elements such as carbon, water and nutrients with, for instance, the greatest allocations to roots fostering the transfer of atmospheric carbon to soils through photosynthesis. Several studies have investigated the root to shoot ratio (R:S) biomass of existing crops but variation within a crop species constitutes an important information gap for selecting genotypes aiming for increasing soil carbon stocks for climate change mitigation and food security. The objectives of this study were to evaluate agronomic performance and quantify biomass production and allocation between roots and shoots, in response to different soil water levels to select promising genotypes for breeding. Field and greenhouse experiments were carried out using 100 genotypes including wheat and Triticale under drought‐stressed and non‐stressed conditions. The experiments were set‐up using a 10 × 10 alpha lattice design with two replications under water stress and non‐stress conditions. The following phenotypic traits were collected: number of days to heading (DTH), number of productive tillers per plant (NPT), plant height (PH), days to maturity (DTM), spike length (SL), kernels per spike (KPS), thousand kernel weight (TKW), root biomass (RB), shoot biomass (SB), root to shoot ratio (R:S) and grain yield (GY). There was significant (p < 0.05) variation for grain yield and biomass production because of genotypic variation. The highest grain yield of 247.3 g/m2 was recorded in the genotype LM52 and the least was in genotype Sossognon with 30 g/m2. Shoot biomass ranged from 830 g/m2 (genotype Arenza) to 437 g/m2 (LM57), whilst root biomass ranged between 603 g/m2 for Triticale and 140 g/m2 for LM15 across testing sites and water regimes. Triticale also recorded the highest R:S of 1.2, whilst the least was 0.30 for wheat genotype LM18. Overall, drought stress reduced total biomass production by 35% and R:S by 14%. Genotypic variation existed for all measured traits useful for improving drought tolerance, whilst the calculated R:S values can improve accuracy in estimating C sequestration potential of wheat. Wheat genotypes LM26, LM47, BW140, LM70, LM48, BW152, LM75, BW162, LM71 and BW141 were selected for further development based on their high total biomass production, grain yield potential and genetic diversity under drought stress. 相似文献
214.
Abera Wende Hussein Shimelis John Derera Worku Mosisa Jedidah Danson Mark D. Laing 《Euphytica》2013,191(2):269-277
Understanding the genetic relationships among breeding lines is fundamental in crop improvement programs. The objectives of this study were to apply selected polymorphic single sequence repeat (SSR) DNA markers and cluster medium to late maturing tropical elite maize inbred lines for effective hybrid breeding. Twenty elite inbred lines were genotyped with 20 SSR markers. The analysis detected a total of 108 alleles. The unweighted pair group method with arithmetic mean allocated the inbred lines into five clusters consistent with the known pedigrees. The tested inbred lines that were adapted to mid-altitude, sub-humid agro-ecologies were classified in different clusters, except for a few discrepancies. The greatest genetic distance was identified between the clusters of lines CML-202 and Gibe-1-91-1-1-1-1. The analysis determined the genetic grouping present in the source population, which will assist in effective utilization of the lines in tropical hybrid maize breeding programs to exploit heterosis. 相似文献
215.
Combining ability and gene action controlling yield and yield components in bread wheat (Triticum aestivum L.) under drought‐stressed and nonstressed conditions 下载免费PDF全文
This study determined the combining ability and gene action controlling yield and yield‐related traits in wheat under drought‐stressed and nonstressed conditions. Twelve parents possessing Rht‐B1b and Rht‐D1a genes and their 66 half‐diallel crosses were evaluated under field and glasshouse conditions. Plant height (PH), productive tiller number (TN), kernels per spike (KPS), thousand seed weight (TSW) and grain yield (GY) were recorded. Analysis of variance, heritability, correlation and combining ability analyses were performed. Heritability estimates ranged from 53.00% (TN) to 63.07% (KPS). Yield showed positive correlations with all other traits under all test conditions. Significant GCA effects were observed for all traits recorded across test conditions, except for yield in the glasshouse. All Baker's ratios were less than a unit, indicating predominance of nonadditive gene action. Consistently high positive GCA effects were observed on LM02 for GY; LM02 and LM23 for KPS; and LM04 and LM09 for TSW, while LM17 and LM21 had negative effects for PH. Good general and specific combiners will be used for further breeding and selection. 相似文献
216.
CIDR和PMSG诱导东北梅花鹿同期发情的初步研究 总被引:4,自引:3,他引:4
应用阴道内孕酮释放装置 (CIDR)结合不同来源和不同剂量的PMSG处理 ,观察东北梅花鹿同期发情效果。 2 6只试验鹿分成 5组 ,将CIDR放置母鹿阴道内 15d后取出 ,肌注不同剂量 (10 0~ 5 0 0IU)孕马血清促性腺激素 ,放入带试情布的公鹿试情 ,持续观察 72h。结果表明 ,取出CIDR后试验鹿在 (33.3± 7.0 )h发情。其中含 10 0IUPMSG的“Folligon”处理的试验鹿同期发情率达 10 0 % ;国产PMSG处理的梅花鹿随着PMSG剂量的增加 ,发情率有增加的趋势 ,但各组间差异不显著 (χ2 检验P >0 .0 5 )。同时 ,不同剂量的PMSG处理没有显著影响CIDR取出后至发情时的平均时间长度。 相似文献
217.
Mycobacterium farcinogenes is the causal agent of bovine farcy, a chronic infectious disease of zebu cattle in some parts of tropical Africa. Whole
cell homologous antigen of M. farcinogenes was used in the standardization and evaluation of an enzyme linked immunosorbent assay (ELISA) for the detection of circulating
antibodies against bovine farcy using sera from confirmed bovine farcy and from bovine farcy-free cattle. The cut-off optical
density (OD) value was decided at 1.8 using filter 405nm after one hour of incubation at 37°C. Accordingly, 115 out of 124
(92.7%) serum samples from clinically proven bovine farcy cattle were reported sero-positive. Sera from cattle infected with
M. avium and M. paratuberculosis revealed OD value <1.8, indicating the differential diagnostic ability of M. farcinogenes antigen. Our test sensitivity was 92.7% and specificity was 97%, therefore could be routinely employed to support early clinical
diagnosis, epidemiological surveys and for screening animals before exportation to farcy-free regions. 相似文献
218.
The present study aimed to investigate and evaluate the reversal of sedation, analgesia, ataxia, clinicophysiological findings, and hematobiochemical effects of detomidine by subsequent IV administration of tolazoline or atipamezole to improve safety and utility of detomidine in donkeys. Six mature donkeys weighing 250–300 kg and aged 4–6 years were used on three separate occasions. Each donkey received the following three treatments at the rate of one treatment per week in a randomized crossover study. The first group received 0.04 mg/kg bwt detomidine. The second group received 0.04 mg/kg bwt detomidine followed by 4.0 mg/kg bwt tolazoline. The third group received 0.04 mg/kg bwt detomidine followed by 0.4 mg/kg bwt atipamezole. Sedation, analgesia, ataxia, pulse rate, respiratory rate, and rectal temperature were recorded at 5 minutes before, then at 5, 15, 30, 60, and 90 minutes after injections. Red blood cell and white blood cell counts, Packed cell volume (%), hemoglobin, total protein, cholesterol, glucose, urea, aspartate amino transferase, alanine amino transferase, and gamma glutamyl transferase values were determined. Detomidine induced deep sedation, complete analgesia, and significant ataxia. Pulse and respiratory rates were decreased from the base line values, although rectal temperature was within the baseline value. The alterations in hematological and hematobiochemical parameters were mild and transient. 相似文献
219.
H. Hussein A. Ishihara M. Menendez A. Bertone 《Journal of veterinary pharmacology and therapeutics》2014,37(6):556-564
Plasma pharmacokinetic (PK) and bone resorption biomarker [carboxy‐terminal cross‐linking telopeptide of type I collagen (CTX‐1)] analyses were performed following single and multiple oral dose protocols of a Cathepsin K inhibitor (VEL‐0230) in horses. Outcomes included plasma and urine drug and CTX‐1 concentrations. In the dose range study, 2, 4, and 8 mg/kg body weight (b.w.) doses were administered in a Latin square design to three mares and evaluated for 1 week. Based on the PK characteristics of VEL‐0230, 4 mg/kg b.w. was selected for the dose interval study in which 3.25 days (d) and 7 days dose intervals were evaluated over three administrations using four exercising horses in a Latin square design. The 3.25 days and 7 days dose intervals provided a rapid inhibition of bone resorption based on plasma CTX‐1. CTX‐1 inhibition prior to next dose administration was not different from baseline in the 3.25 days and 7 days protocols, and for the first 3 days but the sustained CTX‐1 inhibition in the 7 days protocol along with the cost and logistic benefits for weekly administration made the 7 days protocol preferable. Weekly administration of VEL‐0230 may provide effective inhibition of bone resorption in young exercising horses that returns to baseline within 7 days after drug withdrawal even after multiple doses. 相似文献
220.
The activity of glutathione peroxidase (GSH-Px, E.G. 1.11.1.9.) was determined in heparinized whole blood, blood plasma and washed erythrocytes from goats before and up to 4 weeks after the administration of selenium (0.4 mg/10 kg BW) and vitamin E (20 mg/10 kg BW) or only vit. E (20 mg/10 kg BW). It was found that Se administration caused a significant increase in enzyme activity in whole blood and washed erythrocytes first detected 2 weeks after the intramuscular injection of Se. No changes were observed in plasma from the treated animals. Minor and insignificant changes were seen in the vit. E treated control animals. It is concluded that GSH-Px activity in blood plasma or serum is of no value as a short-term indicator of the selenium status of goats but whole blood is a good indicator of the long-term status. 相似文献