Blair Matthew Wohlgemuth, Wu Xingbo, Bhandari Devendra, Astudillo Carolina
Department of Agricultural and Environmental Sciences, Tennessee State University, Nashville TN, USA.
Bayer Crops Research, Davis CA, USA.
Front Plant Sci. 2016 Mar 8;7:219. doi: 10.3389/fpls.2016.00219. eCollection 2016.
Nutrient transport to grain legume seeds is not well studied and can benefit from modern methods of elemental analysis including spectroscopic techniques. Some cations such as potassium (K) and magnesium (Mg) are needed for plant physiological purposes. Meanwhile, some minerals such as copper (Cu), iron (Fe), molybdenum (Mo), and zinc (Zn) are important micronutrients. Phosphorus (P) is rich in legumes, while sulfur (S) concentration is related to essential amino acids. In this research, the goal was to analyze a genetic mapping population of common bean (Phaseolus vulgaris L.) with inductively coupled plasma (ICP) spectrophotometry to determine concentrations of and to discover quantitative trait loci (QTL) for 15 elements in ground flour of whole seeds. The population was grown in randomized complete block design experiments that had been used before to analyze Fe and Zn. A total of 21 QTL were identified for nine additional elements, of which four QTL were found for Cu followed by three each for Mg, Mn, and P. Fewer QTL were found for K, Na and S. Boron (B) and calcium (Ca) had only one QTL each. The utility of the QTL for breeding adaptation to element deficient soils and association with previously discovered nutritional loci are discussed.
营养物质向豆类种子的运输尚未得到充分研究,现代元素分析方法(包括光谱技术)可能会有助于这方面的研究。一些阳离子,如钾(K)和镁(Mg),对植物生理功能有重要作用。同时,一些矿物质,如铜(Cu)、铁(Fe)、钼(Mo)和锌(Zn),是重要的微量营养素。豆类富含磷(P),而硫(S)的含量与必需氨基酸有关。在本研究中,目标是利用电感耦合等离子体(ICP)分光光度法分析普通菜豆(Phaseolus vulgaris L.)的遗传作图群体,以确定全种子磨粉中15种元素的含量,并发现这些元素的数量性状位点(QTL)。该群体在之前用于分析铁和锌的随机完全区组设计实验中种植。共鉴定出9种其他元素的21个QTL,其中铜有4个QTL,其次是镁、锰和磷各有3个QTL。钾、钠和硫的QTL较少。硼(B)和钙(Ca)各只有1个QTL。本文讨论了这些QTL在培育适应缺素土壤品种方面的作用以及与先前发现的营养位点的关联。