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Regional Distribution of Cotton Fiber Quality in China 被引量:2
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作者 TANG Shu-rong,YANG Wei-hua(Cotton Research Institute,Chinese Academy of Agricultural Sciences Key Laboratory of Cotton Genetic Improvement,Ministry of Agriculture,Anyang,Henan 455000,China) 《棉花学报》 CSCD 北大核心 2008年第S1期125-,共1页
The fiber quality status is very important for super quality cotton production and diverse requirements of textile industry in China.In this study,the quality of cotton fiber samples which are collected from 13 major ... The fiber quality status is very important for super quality cotton production and diverse requirements of textile industry in China.In this study,the quality of cotton fiber samples which are collected from 13 major cotton production provinces between 2001 to 2005 were analyzed.Eight quality 展开更多
关键词 Regional Distribution of cotton fiber quality in China
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Genetical Genomics Dissection of Cotton Fiber Quality
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作者 LACAPE J M JACOBS J LLEWELLYN D 《棉花学报》 CSCD 北大核心 2008年第S1期30-,共1页
Cotton fiber is a commodity of key economic importance in both developed and developing countries.The two cultivated species,Gossypium hirsutum and G.barbadense,are
关键词 QTL Genetical Genomics Dissection of cotton fiber quality
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Identification of new cotton fiber-quality QTL by multiple genomic analyses and development of markers for genomic breeding
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作者 Haozhe Tan Binghui Tang +10 位作者 Mengling Sun Qiulu Yin Yizan Ma Jianying Li Pengcheng Wang Zhonghua Li Guannan Zhao Maojun Wang Xianlong Zhang Chunyuan You Lili Tu 《The Crop Journal》 SCIE CSCD 2024年第3期866-879,共14页
Cotton fiber is one of the main raw materials for the textile industry.In recent years,many cotton fiber quality QTL have been identified,but few were applied in breeding.In this study,a genome wide association study(... Cotton fiber is one of the main raw materials for the textile industry.In recent years,many cotton fiber quality QTL have been identified,but few were applied in breeding.In this study,a genome wide association study(GWAS)of fiber-quality traits in 265 upland cotton breeding intermediate lines(GhBreeding),combined with genome-wide selective sweep analysis(GSSA)and genomic selection(GS),revealed 25 QTL.Most of these QTL were ignored by only using GWAS.The CRISPR/Cas9 mutants of GhMYB_D13 had shorter fiber,which indicates the credibility of QTL to a certain extent.Then these QTL were verified in other cotton natural populations,5 stable QTL were found having broad potential for application in breeding.Additionally,among these 5 stable QTL,superior genotypes of 4 showed an enrichment in most improved new varieties widely cultivated currently.These findings provide insights for how to identify more QTL through combined multiple genomic analysis to apply in breeding. 展开更多
关键词 cotton fiber quality breeding GWAS Genome-wide selective sweep analysis Genomic selection InDel markers
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Effects of planting dates and shading on carbohydrate content,yield,and fiber quality in cotton with respect to fruiting positions 被引量:2
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作者 ZHAO Wen-qing WU You +5 位作者 Zahoor Rizwan WANG You-hua MA Yi-na CHEN Bing-lin MENG Ya-li ZHOU Zhi-guo 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2018年第5期1106-1119,共14页
Two cotton(Gossypium hirsutum L.) cultivars, Kemian 1(cool temperature-tolerant) and Sumian 15(cool temperaturesensitive) were used to study the effects of cool temperature on carbohydrates, yield, and fiber qua... Two cotton(Gossypium hirsutum L.) cultivars, Kemian 1(cool temperature-tolerant) and Sumian 15(cool temperaturesensitive) were used to study the effects of cool temperature on carbohydrates, yield, and fiber quality in cotton bolls located at different fruiting positions(FP). Cool temperatures were created using late planting and low light. The experiment was conducted in 2010 and 2011 using two planting dates(OPD, the optimized planting date, 25 April; LPD, the late planting date, 10 June) and two shading levels of crop relative light rate(CRLR, 100 and 60%). Compared with fruiting position 1(FP1), cotton yield and yield components(fiber quality, leaf sucrose and starch content, and fiber cellulose) were all decreased on FP3 under all treatments. Compared with OPD-CRLR 100%, other treatments(OPD-CRLR 60%, LPD-CRLR 100%, and LPD-CRLR 60%) had significantly decreased lint yield at both FPs of both cultivars, but especially at FP3 and in Sumian 15; this decrease was mainly caused by a large decline in boll number. All fiber quality indices decreased under late planting and shading except fiber length at FP1 with OPD-CRLR 60%, and a greater reduction was observed at FP3 and in Sumian 15. Sucrose content of the subtending leaf and fiber increased under LPD compared to OPD, whereas it decreased under CRLR 60% compared to CRLR 100%, which led to decreased fiber cellulose content. Therefore, shading primarily decreased the "source" sucrose content in the subtending leaf whereas late planting diminished translocation of sucrose towards cotton fiber. Notably, as planting date was delayed and light was decreased, more carbohydrates were distributed to leaf and bolls at FP1 than those at FP3, resulting in higher yield and better fiber quality at FP1, and a higher proportion of bolls and carbohydrates allocated at FP3 of Kemian 1 compared to that of Sumian 15. In conclusion, cotton yield and fiber quality were reduced less at FP1 compared to those at FP3 under low temperature and low light conditions. Thus, reduced cotton yield and fiber quality loss can be minimized by selecting low temperature tolerant cultivars under both low temperature and light conditions. 展开更多
关键词 cotton planting date and shading fruiting position yield fiber quality
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Improvement of Fiber Quality by Distant Hybridization in the Green Cotton 被引量:1
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作者 FENG Ke-yun(Academy of Agricultural Sciences,Village No 1,Anning District,Lanzhou City,Gansu 730070,China) 《棉花学报》 CSCD 北大核心 2008年第S1期18-,共1页
In order to improve fiber quality of green cotton,a wide hybrid was used between a green fiber cotton and Sea Island cotton.The results show that the hybrid F1 plants were stable,but F2
关键词 Improvement of fiber quality by Distant Hybridization in the Green cotton
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Molecular Markers in Improvement of Fiber Quality Traits in Cotton
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作者 RAVEENDRAN T S PREETHA S RAJESWARI S 《棉花学报》 CSCD 北大核心 2008年第S1期65-,共1页
Cotton is the worlds leading natural fiber crop,and it is the cornerstone of textile industries worldwide.The cotton industry is confronted with problems in cost of production and
关键词 QTLS Molecular Markers in Improvement of fiber quality Traits in cotton
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Analysis of the Fiber Quality of Upland Cotton in China from 2005 to 2007
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作者 YANG Wei-hua,TANG Shu-rong,XU Hong-xia,WANG Yan-qin,ZHOU Da-yun,KUANG Meng(Cotton Research Institute,Chinese Academy of Agricultural Sciences Key Laboratory of Cotton Genetic Improvement,Ministry of Agriculture,Anyang,Henan 455000,China) 《棉花学报》 CSCD 北大核心 2008年第S1期100-,共1页
Upper-half-mean length(Len),uniformity index(UI),breaking tenacity(Str),and micronaire value(Mic) are the key quality parameters of cotton fiber.In this study,182 upland cotton
关键词 Analysis of the fiber quality of Upland cotton in China from 2005 to 2007
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Susceptible time window and endurable duration of cotton fiber development to high temperature stress
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作者 XU Bo ZHOU Zhi-guo +5 位作者 GUO Lin-tao XU Wen-zheng ZHAO Wen-qin CHEN Bing-lin MENG Ya-li WANG You-hua 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2017年第9期1936-1945,共10页
The development of the cotton fiber is very sensitive to temperature variation, and high temperature stress often causes reduced fiber yield and fiber quality. Short-term high temperature stress often occurs during co... The development of the cotton fiber is very sensitive to temperature variation, and high temperature stress often causes reduced fiber yield and fiber quality. Short-term high temperature stress often occurs during cotton production, but little is known about the specific timing and duration of stress that affects fiber development. To make this clear, pot experiments were carried in 2014 and 2015 in a climate chamber using cotton cultivars HY370WR(less sensitive variety) and Sumian 15(heat sensitive variety), which present different temperature sensitivities. Changes of the most important fiber quality indices(i.e., fiber length, fiber strength and marcironaire) and three very important fiber development components(i.e., cellulose, sucrose and callose) were analyzed to define the time window and critical duration to the high temperature stress at 34°C(max38°C/min30°C). When developing bolls were subjected to 5 days of high temperature stress at different days post-anthesis(DPA), the changes(Δ%) of fiber length, strength and micronire, as a function of imposed time followed square polynomial eq. as y=a+bx+cx^2, and the time around 15 DPA was the most sensitive period for fiber quality development in response to heat stress. When 15 DPA bolls were heat-stressed for different durations(2, 3, 4, 5, 6, 7 days), the changes(Δ%) of fiber length, strength and micronire, as a function of stress duration followed logistic equations y=A_1-A_2/1+(x/x_0)~p+A_2. Referred to that 5, 10 and 15% are usually used as criteria to decide whether techniques are effective or changes are significant in crop culture practice and reguard to the fiber quality indices change range, we suggested that 5% changes of the major fiber quality indices(fiber length, fiber strength and micronaire) and 10% changes of fiber development components(cellulose, sucrose and callose) could be taken as criteria to judge whether fiber development and fiber quality have been significantly affected by high temperature stress. The key time window for cotton fiber development in response to the high temperature stress was 13–19 DPA, and the critical duration was about 5 days. 展开更多
关键词 cotton(Gossypium hirsutum L.) fiber quality high temperature stress susceptible time window stress endurable duration
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