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基于双标图、基因型稳定性指数和土地当量比的正常和间作条件下玉米高生物量和产量稳定性数据集。

Dataset for stability of high biomass and yield in maize under normal and intercropping conditions based on biplot, genotype stability index and land equivalent ratio.

作者信息

Ruswandi D

机构信息

Faculty of Animal Husbandry, Universitas Padjadjaran, Bandung 45363, West Java, Indonesia.

Faculty of Agriculture, Universitas Padjadjaran, Bandung 45363, West Java, Indonesia.

出版信息

Data Brief. 2024 Nov 20;57:111161. doi: 10.1016/j.dib.2024.111161. eCollection 2024 Dec.

Abstract

Research on high-yielding and biomass of maize hibrids which adaptive to intercropping environment is important in the context of modern agriculture faced with the challenges of climate change. The field evaluation was conducted in Arjasari, West Java, Indonesia, for two seasons in three different cropping systems, namely: maize sole cropping, maize+soybean intercropping and maize+sweet potato intercropping. The evaluation applied a randomized completed block design with three replications. The article provides a data set of Combined Anova Table and biplot graphic of GGE and AMMI. Combined of Anova Table is provided to identify the effect of genotype, environment and their interaction for the traits observed. Thus biplot of GGE and AMMI is provided to identify representative environment and mega-environment for testing and development of hybrid maize; and to evaluate their adaptability in sole cropping as well as in intercropping with soybean and sweetpotato. The data in this article can be utilized by farmers to choose specific or stable maize hybrids for different cropping system.

摘要

在现代农业面临气候变化挑战的背景下,研究适应间作环境的玉米杂交种的高产和生物量具有重要意义。在印度尼西亚西爪哇的阿尔贾萨里进行了田间评估,共两个季节,采用三种不同的种植系统,即:玉米单作、玉米 + 大豆间作和玉米 + 甘薯间作。评估采用随机完全区组设计,重复三次。本文提供了联合方差分析表数据集以及GGE和AMMI双标图。提供联合方差分析表以确定基因型、环境及其相互作用对所观察性状的影响。因此,提供GGE和AMMI双标图以确定用于杂交玉米测试和开发的代表性环境和大环境;并评估它们在单作以及与大豆和甘薯间作中的适应性。本文中的数据可供农民用于为不同种植系统选择特定或稳定的玉米杂交种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/03f0/11648804/1b12fd02c473/gr1a.jpg

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