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Chinese Journal of Applied Ecology ›› 2017, Vol. 28 ›› Issue (1): 191-198.doi: 10.13287/j.1001-9332.201701.017

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Ecological regionalization of national cotton fiber quality in China using GGE biplot analysis method

XU Nai-yin1*, JIN Shi-qiao2, LI Jian1   

  1. 1Institute of Industrial Crops, Jiangsu Academy of Agricultural Sciences/Key Laboratory of Cotton and Rapeseed, Ministry of Agriculture, Nanjing 210014, China
    2National Extension and Service Center of Agricultural Technology, Beijing 100125, China
  • Received:2016-06-02 Revised:2016-10-25 Published:2017-01-18
  • Contact: *E-mail:naiyin@126.com
  • Supported by:
    This work was supported by National Genetically Modified Organisms Breeding Major Project (2012ZX08013015) and the Project from National Extension and Service Center of Agricultural Technology (012022911108)

Abstract: The distinctive regional characteristics of cotton fiber quality in the major cotton-producing areas in China enhance the textile use efficiency of raw cotton yarn by improving fiber quality through ecological regionalization. The “environment vs. trait” GGE biplot analysis method was adopted to explore the interaction between conventional cotton sub-regions and cotton fiber quality traits based on the datasets collected from the national cotton regional trials from 2011 to 2015. The results showed that the major cotton-producing area in China were divided into four fiber quality ecological regions, namely, the “high fiber quality ecological region”, the “low micronaire ecological region”, the “high fiber strength and micronaire ecological region”, and the “moderate fiber quality ecological region”. The high fiber quality ecological region was characterized by harmonious development of cotton fiber length, strength, micronaire value and the highest spinning consistency index, and located in the conventional cotton regions in the upper and lower reaches of Yangtze River Valley. The low micronaire value ecological region composed of the northern and south Xinjiang cotton regions was characterized by low micronaire value, relatively lower fiber strength, and relatively high spinning consistency index performance. The high fiber strength and micronaire value ecological region covered the middle reaches of Yangtze River Valley, Nanxiang Basin and Huaibei Plain, and was prominently characterized by high strength and micronaire value, and moderate performance of other traits. The moderate fiber quality ecological region included North China Plain and Loess Plateau cotton growing regions in the Yellow River Valley, and was characterized by moderate or lower performances of all fiber quality traits. This study effectively applied “environment vs. trait” GGE biplot to regionalize cotton fiber quality, which provided a helpful reference for the regiona-lized cotton growing regions in terms of optimal raw fiber production for textile industry, and gave a good example for the implementation of similar ecological regionalization of other crops as well.