首页> 外文期刊>Natural Resources Research >High-Oil Soybean for More Efficient Energy Conversion to Soy-Based Biodiesel
【24h】

High-Oil Soybean for More Efficient Energy Conversion to Soy-Based Biodiesel

机译:高油大豆可将能源更有效地转化为大豆基生物柴油

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Protein and oil are the most important components of soybean [Glycine max (L.) Merr.], and they have been shown to have an inverse relationship. As there is a growing demand for soybean oil-based diesel as an alternative fuel source, a better understanding of the protein–oil inverse relationship in conjunction with seed yield could be useful in determining the potential of soybean as a source of biodiesel. We retrospectively examined advanced soybean breeding lines from multiple breeding programs across the southern USA to determine associations between protein and oil and seed yield. The data analyzed were a subset of the Uniform Soybean Tests and consisted of 31 different soybean breeding lines and four checks grown at 10 locations in 2000, six locations in 2001, and eight locations in 2002. A progressive multiple regression analysis was used to develop a single equation describing seed yield over all entries, locations, and years as a function of five traits: oil content, protein content, maturity, lodging, and plant height. From this equation, the optimum plant type for maximum seed yield in the southern USA had either high oil (225 g kg?1) and low protein (385 g kg?1), or high protein (437 g kg?1) and low oil (190 g kg?1). Seed yield continues to be the dominant trait of selection in soybean breeding programs. This study demonstrates that high yield can be achieved with either high protein or high oil. Hence, there is potential for maintaining yield while improving soybean cultivars for oil production. Given the energy balance between fossil-derived and soy-derived diesel, if soy-based biodiesel is to be a significant option, an increased focus on developing high-oil/high-yield soybean needs to occur.
机译:蛋白质和油是大豆中最重要的成分[Glycine max(L.)Merr。],它们已显示出相反的关系。由于对以大豆油为基础的柴油作为替代燃料的需求日益增长,因此更好地了解蛋白质与油的反比关系以及种子的产量可能有助于确定大豆作为生物柴油来源的潜力。我们回顾了美国南部多个育种计划中的先进大豆育种系,以确定蛋白质与油脂和种子产量之间的关联。分析的数据是统一大豆测试的子集,包括31个不同的大豆育种系和4个在2000年的10个地点,2001年的6个地点和2002年的8个地点进行的检查。一个单一方程式,描述了所有条目,位置和年份的种子产量,这是五个性状的函数:油含量,蛋白质含量,成熟度,倒伏和株高。根据该方程,美国南部最大种子产量的最佳植物类型是高油(225 g kg?1 )和低蛋白(385 g kg?1 ),或高蛋白( 437克公斤?1 )和低油(190克公斤?1 )。种子产量仍然是大豆育种计划中选择的主要特征。这项研究表明,高蛋白或高油均可实现高产。因此,有潜力在保持产量的同时改善用于油料生产的大豆品种。考虑到化石燃料和大豆燃料之间的能量平衡,如果要使大豆基生物柴油成为重要的选择,就需要更加重视开发高油/高产大豆。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号