Zhao Wenqing
Nanjing Agricultural University
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Featured researches published by Zhao Wenqing.
American Journal of Experimental Agriculture | 2012
Zhao Wenqing; Wang Youhua; Zhou Zhi-guo; Meng Yali; Chen BingLin; Oosterhuis DerrickM.
Nitrogen (N) supply during boll setting and maturation period of cotton can be critical in determining fiber quality. The study aims to investigate the relationship between N rates and formation of fiber length, strength, maturity and micronaire in bolls with different flowering dates. Field experiments were conducted using two cotton cultivars (Kemian 1 and NuCOTN 33B) and three N fertilization rates (0, 240, and 480 kg N ha -1 ) in Nanjing and Xuzhou in 2005 and in Anyang in 2007, China. The fiber length, strength, maturity, micronaire, and N concentration per unit area (N A) of the subtending leaf of cotton boll were analyzed. N fertilization rates, flowering dates, and N fertilization rates × flowering dates significantly (P ≤ 0.05) affected N A and the formation of fiber length, strength, maturity and micronaire. N fertilization rates affected fiber quality by influencing NA which was significantly related to rate and duration of the fiber quality formation process. The optimal N A for fiber quality formation was varied. For bolls flowering before August 25, when mean daily temperature during boll maturation period (MDT BMP ) was higher than 21°C, NA in the 240 kg N ha -1
African Journal of Agricultural Research | 2012
Zhao Wenqing; Wang Youhua; Shu HongMei; Li Jian; Zhou Zhi-guo
To study the effects of sowing date and boll position on fiber quality and the physiological mechanism, field experiments were conducted using two cotton cultivars (Kemian 1 and Sumian 15) with two sowing dates (normal sowing date 25 April, and late sowing date 25 May) at Nanjing (118°50′E, 32°02′N), Jiangsu, China, in 2006 and 2007. Cotton bolls were divided into three parts (low, middle and upper) according to the fruiting branch symbodial positions. Boll weight, fiber quality (bundle strength, span lengths, micronaire), and fiber physiological parameters (cellulose content, callose content, and sucrose transformation rate) were detected, respectively. Boll weight and fiber strength were affected by sowing date, boll position, and sowing date × boll position. Comparing to the normal sowing date, late sowing date declined boll weight, fiber strength, cellulose content, and sucrose transformation rate. The cellulose content and sucrose transformation rate changed with boll position, and consequently resulted in the change of boll weight and fiber strength. In normal sowing date, cotton boll in middle positional sympodial branch had the highest cellulose content, sucrose transformation rate, boll weight, and fiber strength. In late sowing date, cotton boll in low positional sympodial branch had the highest cellulose content, boll weight and fiber quality. The results indicated that the change of fiber yield and quality in sowing dates and boll positions were because the synthesis of cellulose, callose and sucrose were changed. Increasing the cellulose content and sucrose transformation rate can improve yield and fiber quality in late sowing date or sub-optimal environmental conditions.
Acta Agronomica Sinica | 2010
Zhu LiLi; Zhou Zhi-guo; Zhao Wenqing; Meng Yali; Chen BingLin; LüFengJuan
Archive | 2017
王友华; Wang Youhua; 赵文青; Zhao Wenqing; 郝佩佩; Hao Pei-pei; 刘为浒; Liu Wei-hu
Zuowu Xuebao | 2016
Chen BingLin; Yang Hongkun; Song Weichao; Liu Chunyu; Xu Jiao; Zhao Wenqing; Zhou Zhi-guo
Plant Physiology and Biochemistry | 2016
Hu Wei; Zhao Wenqing; Yang Jiashuo; M Oosterhuis Derrick; A Loka Dimitra; Zhou Zhi-guo
Field Crops Research | 2016
Hu Wei; Jiang Nan; Yang Jiashuo; Meng Yali; Wang Youhua; Chen BingLin; Zhao Wenqing; M Oosterhuis Derrick; Zhou Zhi-guo
Archive | 2015
Chen BingLin; Yang Hongkun; Zhou Zhi-guo; Meng Yali; Zhao Wenqing; Wang Youhua; Wang Shanshan
Archive | 2015
Chen BingLin; Zhang He; Zhou Zhi-guo; Li Duansheng; Meng Yali; Zhao Wenqing; Wang Youhua; Wang Shanshan
Cotton Science | 2015
Zou Fanggang; Wang Youhua; Zhao Wenqing; Chen BingLin; Meng Yali; Zhou Zhi-guo