Liu Xinhui, Ren Yujie, Gao Chao, Yan Zhenxing, Li Quanqi
College of Water Conservancy and Civil Engineering, Shandong Agricultural University, Tai'an, 271018, China.
Sci Rep. 2017 Mar 16;7(1):213. doi: 10.1038/s41598-017-00391-6.
Climate change and the growing demand for food security force growers to identify ways both to improve food production and to reduce agricultural carbon emissions. Although straw mulching is known to decrease CO emissions, winter wheat grain yield in the North China Plain was declined under straw mulching. In an effort to determine the most effective way to increase winter wheat yield under straw mulching, a field experiment was conducted using two planting patterns (wide-precision planting and conventional-cultivation planting) and two straw mulching rates (0 and 0.6 kg/m). The results showed the wide-precision planting/non-mulching treatment significantly increased the leaf area index more than the other three treatments at the early growth stage. This treatment improved aboveground dry matter accumulation and was conducive to increased spike weight in the late growth stage. By contrast, straw mulching significantly reduced winter wheat grain yields by lowering both spike number and 1000-grain weight at the mature plant stage. In the wide-precision planting/mulching treatment, a significantly increased spike number compensated for grain yield losses. The results support the idea that wide-precision planting combined with straw mulching has the potential to decrease the winter wheat grain yield reduction previously observed with straw mulching in the North China Plain.
气候变化和对粮食安全日益增长的需求迫使种植者寻找既能提高粮食产量又能减少农业碳排放的方法。尽管已知秸秆覆盖可减少碳排放,但华北平原冬小麦在秸秆覆盖下的籽粒产量却有所下降。为了确定在秸秆覆盖下提高冬小麦产量的最有效方法,采用两种种植模式(宽幅精量种植和常规栽培种植)和两种秸秆覆盖量(0和0.6千克/平方米)进行了田间试验。结果表明,在生长前期,宽幅精量种植/不覆盖处理的叶面积指数显著高于其他三种处理。该处理提高了地上部干物质积累,有利于生长后期穗重增加。相比之下,秸秆覆盖在成熟植株阶段通过降低穗数和千粒重显著降低了冬小麦籽粒产量。在宽幅精量种植/覆盖处理中,显著增加的穗数弥补了籽粒产量损失。这些结果支持了这样一种观点,即宽幅精量种植与秸秆覆盖相结合有可能减少此前在华北平原观察到的秸秆覆盖导致的冬小麦籽粒产量下降。