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不同行比配置下糯高粱-大豆间作系统中糯高粱养分积累与转运的变化

Changes in Nutrient Accumulation and Transportation of Waxy Sorghum in Waxy Sorghum-Soybean Intercropping Systems Under Different Row Ratio Configurations.

作者信息

Wang Can, Zhou Lingbo, Gao Jie, Zhang Guobing, Peng Fangli, Zhang Chunlan, Zhao Qiang, Peng Qiu, Shao Mingbo

机构信息

Institute of Upland Food Crops, Guizhou Academy of Agricultural Sciences, Guiyang, China.

出版信息

Front Plant Sci. 2022 Jul 22;13:921860. doi: 10.3389/fpls.2022.921860. eCollection 2022.

Abstract

To determine the optimal row ratio configuration of waxy sorghum-soybean intercropping systems, a field experiment with seven treatments, including sole waxy sorghum (SW), sole soybean (SS), two rows of waxy sorghum alternated with one row of soybean (2W1S), two rows of waxy sorghum alternated with two rows of soybean (2W2S), three rows of waxy sorghum alternated with one row of soybean (3W1S), three rows of waxy sorghum alternated with two rows of soybean (3W2S), and three rows of waxy sorghum alternated with three rows of soybean (3W3S), was conducted during 2019 and 2020 in Guiyang, China. Accumulation and transportation of nitrogen (N), phosphorus (P), and potassium (K) in waxy sorghum were investigated. The results showed that the row ratio configurations had significant effects on the N, P, and K accumulation and transportation of waxy sorghum. On the one hand, compared to SW treatment, intercropping treatments showed higher N, P, and K contents and accumulation amounts, N, P, and K transportation amounts before anthesis, N, P, and K transportation rates before anthesis, and contribution rates of N, P, and K transportation before anthesis to the grain of each organ in waxy sorghum. Similarly, the waxy sorghum-soybean intercropping system increased the yield components (including spike length, grain number per spike, and 1,000-grain weight) of waxy sorghum. In addition, the yields of waxy sorghum and soybean among all treatments were in the sequence of SW (SS) > 2W1S > 3W1S > 3W2S > 3W3S > 2W2S. Besides, the 2W1S treatment showed the highest land equivalent ratio and economic benefit. On the whole, the waxy sorghum-soybean intercropping system can increase the N, P, and K absorption among organs and promote the N, P, and K transportation from vegetative organs to grain in waxy sorghum so as to promote the growth and development of spike in waxy sorghum to obtain higher land equivalent ratio and economic benefits. The 2W1S treatment was recommended as the optimal row ratio configuration of the waxy sorghum-soybean system to achieve the maximum utilization of nutrient resources.

摘要

为确定糯高粱 - 大豆间作系统的最佳行比配置,于2019年至2020年在中国贵阳进行了一项田间试验,设置了七个处理,包括单作糯高粱(SW)、单作大豆(SS)、两行糯高粱与一行大豆交替种植(2W1S)、两行糯高粱与两行大豆交替种植(2W2S)、三行糯高粱与一行大豆交替种植(3W1S)、三行糯高粱与两行大豆交替种植(3W2S)以及三行糯高粱与三行大豆交替种植(3W3S)。研究了糯高粱中氮(N)、磷(P)和钾(K)的积累与转运情况。结果表明,行比配置对糯高粱的氮、磷、钾积累与转运有显著影响。一方面,与SW处理相比,间作处理的氮、磷、钾含量和积累量、开花前氮、磷、钾的转运量、开花前氮、磷、钾的转运率以及开花前氮、磷、钾转运对糯高粱各器官籽粒的贡献率均较高。同样,糯高粱 - 大豆间作系统提高了糯高粱的产量构成因素(包括穗长、每穗粒数和千粒重)。此外,所有处理中糯高粱和大豆的产量顺序为SW(SS)> 2W1S > 3W1S > 3W2S > 3W3S > 2W2S。此外,2W1S处理的土地当量比和经济效益最高。总体而言,糯高粱 - 大豆间作系统可以增加各器官间氮、磷、钾的吸收,促进糯高粱中氮、磷、钾从营养器官向籽粒的转运,从而促进糯高粱穗的生长发育,以获得更高的土地当量比和经济效益。推荐2W1S处理作为糯高粱 - 大豆系统的最佳行比配置,以实现养分资源的最大利用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/279c/9355604/510197700de0/fpls-13-921860-g0001.jpg

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