Wang Yunqi, Zhang Yinghua, Ji Wei, Yu Peng, Wang Bin, Li Jinpeng, Han Meikun, Xu Xuexin, Wang Zhimin
College of Agronomy, China Agricultural University, Beijing, 100193, China.
PLoS One. 2016 Jun 30;11(6):e0158439. doi: 10.1371/journal.pone.0158439. eCollection 2016.
The effects of cultivar mixture cropping on yield, biomass, and water use efficiency (WUE) in winter wheat (Triticum aestivum L.) were investigated under non-irrigation (W0, no irrigation during growth stage), one time irrigation (W1, irrigation applied at stem elongation) and two times irrigation (W2, irrigation applied at stem elongation and anthesis) conditions. Nearly 90% of cultivar mixture cropping treatments experienced an increase in grain yield as compared with the mean of the pure stands under W0, those for W1 and W2 were 80% and 85%, respectively. Over 75% of cultivar mixture cropping treatments got greater biomass than the mean of the pure stands under the three irrigation conditions. Cultivar mixture cropping cost more water than pure stands under W0 and W1, whereas the water consumption under W2 decreased by 5.9%-6.8% as compared with pure stands. Approximately 90% of cultivar mixtures showed an increase of 5.4%-34.5% in WUE as compared with the mean of the pure stands, and about 75% of cultivar mixtures had 0.8%-28.5% higher WUE than the better pure stands under W0. Similarly, there were a majority of mixture cropping treatments with higher WUE than the mean and the better one of the pure stands under W1 and W2. On the whole, proper cultivar mixture cropping could increase yield and WUE, and a higher increase in WUE occurred under limited irrigation condition.
在非灌溉(W0,生育期不灌溉)、一次灌溉(W1,拔节期灌溉)和两次灌溉(W2,拔节期和开花期灌溉)条件下,研究了冬小麦(Triticum aestivum L.)品种混播对产量、生物量和水分利用效率(WUE)的影响。与W0条件下纯作平均产量相比,近90%的品种混播处理籽粒产量有所增加,W1和W2条件下分别为80%和85%。在三种灌溉条件下,超过75%的品种混播处理生物量高于纯作平均水平。在W0和W1条件下,品种混播比纯作耗水量多,而W2条件下的耗水量与纯作相比减少了5.9%-6.8%。与纯作平均水平相比,约90%的品种混播WUE提高了5.4%-34.5%,在W0条件下,约75%的品种混播WUE比表现较好的纯作高0.8%-28.5%。同样,在W1和W2条件下,大多数混播处理的WUE高于纯作平均水平和表现较好的纯作。总体而言,适宜的品种混播可提高产量和WUE,在有限灌溉条件下WUE提高幅度更大。