|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | Peste des Petits Ruminants in Goats in Pakistan显示文摘 | AMJAD H QAMAR U L I FORSYTH M | 1996 | Vet Rec1996,139,5: | 1 |
| 2 | CT angiography images of an anomalous right coronary artery显示文摘 | Qamar u R Khan M U Umair S | 2009 | Int J Cardiol2009,132,2: | 1 |
| 3 | Peste des Pe- tits Ruminants in Goats in Pakistan显示文摘 | Amjad H Qamare U L I Forsyth M | 1996 | Vet Rec1996,13,5: | 1 |
| 4 | Chrysin protects against cisplatin-induced colon. toxicity via amelioration of oxidative stress and apoptosis: Probable role of p38MAPK and p53显示文摘 | Rehan Khan Abdul Quaiyoom Khan Wajhul Qamar Abdul Lateef Mir Tahir Muneeb U Rehman Farrah Ali Sarwat Sultana | 2011 | Toxicology and Applied Pharmacology2011,,: | 1 |
| 5 | Development of prototype automated variable rate sprayer for real-time spot-application of agrochemicals in wild blueberry fields显示文摘 | Qamar U Travis J Arnold W | 2011 | Computers and Electronics in Agriculture2011,76,2: | 1 |
| 6 | Value of a single troponin T at the time of presentation as com- pared to serial CK-MB determinations in patients with suspected myocardial ischemia 显示文摘 | Zarich S W Qamar A U Werdmann M J | 2002 | Clin China Acta2002,326,12: | 1 |
| 7 | QTL mapping for yield components of Brassica napus L. using double haploid and immortalized F_2 populations显示文摘Effective silique number per plant(ESN), seeds per silique(SS), thousand seeds weight(TSW), silique length(SL) and silique density(SD) are important seed yield potential determinant traits in rapeseed(Brassica napus L.), which are controlled by quantitative trait loci(QTL). Mapping QTL to delimited chromosomal region offers an effective method for genetic dissection of these traits. A set of 96 double haploid(DH) lines were developed by crossing 2 Brassica napus lines R1 and R2, and an immortalized F_2(IF_2) population containing 124 combinations was developed by crossing those DH lines. DH populations were planted at 2 locations for 2 years and IF_2 populations were planted in 2 locations for 1 year. Based on the established 2,217.2 cM length high density genetic map, 42 QTLs were identified, with 26 QTLs detected repeatedly in different environments or populations, including 8 for SL, 7 for TSW, 4 for ESN, 4 for SS and 3 for SD. Among these identified QTLs, 3, 4, 1, 1 and 3 QTLs were considered as major QTLs for SL, TSW, ESN, SS and SD, respectively. In addition, 2 QTLs on A9 chromosome which control multiple traits were identified. These results warrant further study of fine mapping for yield and yield components. | Hui Wang Wenhui Huang Jun Wang Jia Liu Wenxiang Wang Li Fu QAMAR U Zaman Qiong Hu Desheng Mei | 2018 | Oil Crop Science2018,3,4: | 0 |
| 8 | Challenges and opportunities to improve tropical fruits in Hainan,China显示文摘Tropical fruits play a major role in the economic and social development of Hainan(China).Despite favorable climatic conditions,the yield of tropical fruits in Hainan remains low,in part due to the low genetic potential of currently grown tropical fruit varieties.Consequently,there is a need to improve yield potential by exploiting the genome and germplasm resources of tropical fruit species,minimizing post-harvest losses,and improving transportation standards.In this study,we intend to collect germplasm resources from a wide range of domestic and exotic sources to evaluate the genetic yield potential and nutritional quality of fruit using plant morphology,taxonomy and physiological parameters.In this review,we aim to identify current bottlenecks in the Hainan tropical fruit industry and propose solutions through the use of conventional breeding and new biotechnological tools,including the use of omics and CRISPR to enhance yield and tackle biotic and abiotic stresses of tropical fruit species.Producing new fruit cultivars in Hainan,either through conventional strategies or the use of genome editing technology such as CRISPR,could help improve the socioeconomic status of this region.Furthermore,increasing the genetic potential and production of new cultivars can help in meeting the demands of new trade agreements with various nations under the'One Belt,One Road'initiative,Boao Forum for Asia,ASEAN agreements,and the Shanghai Cooperation Organization. | Zhixin Zhu Joel Johnson Qamar U Zaman Huafeng Wang | 2022 | Tropical Plants2022,1,1: | 0 |