Hao Meng-Bo, Wang Kong-Jun, Dong Shu-Ting, Zhang Ji-Wang, Li Deng-Hai, Liu Peng, Yang Jin-Sheng, Liu Jing-Guo
State Key Laboratory of Crop Biology, College of Agronomy, Shandong Agricultural University, Tai'an 271018, Shandong, China.
Ying Yong Sheng Tai Xue Bao. 2010 Feb;21(2):344-50.
According to the maize yield at plant density of 15000 ind x hm(-2) in 2007, the leaf-redundant type (cultivar Chaoshi 1) and non-redundant type (cultivar Chaoshi 3) at low plant density were selected, and the changes of their above-ground dry matter accumulation and grain yield after cutting all leaves to 1/2 (T1) and 1/4 (T2) at anthesis at the optimal density and under high-yielding condition were analyzed in 2008, aimed to approach whether the leaf redundancy exists in high-yielding maize colonies. The characters of grain-filling were simulated by Richards' model, and the photosynthetic characteristics and chlorophyll fluorescence of the leaves on ear position were determined to reveal the activities of photosynthesis after the removal of redundancy. The results showed that at optimal plant density and under high-yielding condition, both the redundant and non-redundant types had leaf redundancy. The characterization of grain-filling by Richards' model indicated that appropriately removing redundant leaves could increase the net photosynthetic rate and solar energy use efficiency of the leaves on ear position, extend the active period of grain-filling, and enhance the grain yield.
根据2007年种植密度为15000株·hm⁻²时的玉米产量,选取了低密度下的叶片冗余型(品种朝玉1号)和非冗余型(品种朝玉3号),于2008年在最佳密度和高产条件下,分析了花期将所有叶片剪至1/2(T1)和1/4(T2)后地上部干物质积累和籽粒产量的变化,旨在探讨高产玉米群体中是否存在叶片冗余。用Richards模型模拟籽粒灌浆特性,测定穗位叶的光合特性和叶绿素荧光,以揭示去除冗余后光合作用的活性。结果表明,在最佳种植密度和高产条件下,冗余型和非冗余型均存在叶片冗余。Richards模型对籽粒灌浆的表征表明,适当去除冗余叶片可提高穗位叶的净光合速率和光能利用效率,延长籽粒灌浆活跃期,提高籽粒产量。