نتایج جستجو برای: teqing

تعداد نتایج: 18  

2015
Xiuqin Zhao Guilian Zhang Yun Wang Fan Zhang Wensheng Wang Wenhao Zhang Binying Fu Jianlong Xu Zhikang Li Jin-Song Zhang

A rice introgression line, NIL-SS1, and its recurrent parent, Teqing, were used to investigate the influence of the introgression segment on plant growth. The current research showed NIL-SS1 had an increased flag leaf width, total leaf area, spikelet number per panicle and grain yield, but a decreased photosynthetic rate. The metabolite differences in NIL-SS1 and Teqing at different development...

2017
Jinfeng Zhang Lei Chen Chenglin Fu Lingxia Wang Huainian Liu Yuanzhi Cheng Shuangcheng Li Qiming Deng Shiquan Wang Jun Zhu Yueyang Liang Ping Li Aiping Zheng

Rice sheath blight, caused by Rhizoctonia solani, is one of the most devastating diseases for stable rice production in most rice-growing regions of the world. Currently, studies of the molecular mechanism of rice sheath blight resistance are scarce. Here, we used an RNA-seq approach to analyze the gene expression changes induced by the AG1 IA strain of R. solani in rice at 12, 24, 36, 48, and ...

2016
Md Kamal Hossain Kshirod Kumar Jena Md Atiqur Rahman Bhuiyan Ratnam Wickneswari

Sheath blight is considered the most significant disease of rice and causes enormous yield losses over the world. Breeding for resistant varieties is the only viable option to combat the disease efficiently. Seventeen diverged rice genotypes along with 17 QTL-linked SSR markers were evaluated under greenhouse conditions. Pearson's correlation showed only the flag leaf angle had a significant co...

2016
Baohua Li Yuanyuan Zhang Seyed Abolghasem Mohammadi Dongxin Huai Yongming Zhou Daniel J. Kliebenstein

Studying the genetic basis of variation in plant metabolism has been greatly facilitated by genomic and metabolic profiling advances. In this study, we use metabolomics and growth measurements to map QTL in rice, a major staple crop. Previous rice metabolism studies have largely focused on identifying genes controlling major effect loci. To complement these studies, we conducted a replicated me...

1998
Zhikang Li Shannon R.M. Pinson James W. Stansel Andrew H. Paterson

The genetic basis underlying the relationship between the source leaves (the top two leaves) and the sink capacity in rice was investigated in a replicated trial of 2418 F2 derived F4 progeny from an inter-subspecific cross between cv. Lemont (japonica) and cv. Teqing (indica) and a complete linkage map with 115 well distributed RFLP markers. Path analysis indicated that 50% of the phenotypic v...

2014
Kalaivani Nadarajah Nurfarahana Syuhada Omar Marhamah Md Rosli Ong Shin Tze

Two field isolates of Rhizoctonia solani were isolated from infected paddy plants in Malaysia. These isolates were verified via ITS-rDNA analysis that yielded ~720 bp products of the ITS1-5.8S-ITS4 region, respectively. The sequenced products showed insertion and substitution incidences which may result in strain diversity and possible variation in disease severity. These strains showed some re...

Journal: :Yi chuan xue bao = Acta genetica Sinica 2006
Han-Hua Tong Han-Wei Mei Xin-Qiao Yu Xiao-Yan Xu Ming-Shou Li Shan-Qing Zhang Li-Jun Luo

QTL underlying related traits at the late developmental stage under two different nitrogen levels were investigated in rice using a population of chromosome segment substitution lines (CSSL) derived from a cross between Teqing and Lemont. A total of 31 QTLs referring 5 traits, that is, plant height (PH), panicle number per plant (PN), chlorophyll content (CC), shoot dry weight (SDW) and grain y...

Journal: :Genetics 1997
Z Li S R Pinson A H Paterson W D Park J W Stansel

F1 hybrid sterility and "hybrid breakdown" of F2 and later generations in rice (Oryza sativa L.) are common and genetically complicated. We used a restriction fragment length polymorphism linkage map and F4 progeny testing to investigate hybrid sterility and hybrid breakdown in a cross between "widely compatible" O. sativa ssp. japonica cultivar Lemont from the Southern U.S. and ssp. indica cul...

2015
Yangjun Zhang Lubin Tan Zuofeng Zhu Lixing Yuan Daoxin Xie Chuanqing Sun

Nitrogen (N), the most important mineral nutrient for plants, is critical to agricultural production systems. N deficiency severely affects rice growth and decreases rice yields. However, excessive use of N fertilizer has caused severe pollution to agricultural and ecological environments. The necessity of breeding of crops that require lower input of N fertilizer has been recognized. Here we i...

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