Guo B Z, Xu G, Cao Y G, Holbrook C C, Lynch R E
USDA-ARS, Crop Protection and Management Research Unit, Tifton, GA 31793, USA.
Planta. 2006 Feb;223(3):512-20. doi: 10.1007/s00425-005-0112-0. Epub 2005 Oct 1.
Preharvest aflatoxin contamination has been identified by the peanut industry as a serious issue in food safety and human health because of the carcinogenic toxicity. Drought stress is the most important environmental factor exacerbating Aspergillus infection and aflatoxin contamination in peanut. The development of drought-tolerant peanut cultivars could reduce aflatoxin contamination and would represent a major advance in the peanut industry. In this study, we identified a novel PLD gene in peanut (Arachis hypogaea), encoding a putative phospholipase D (PLD, EC 3.1.4.4). The completed cDNA sequence was obtained by using the consensus-degenerated hybrid oligonucleotide primer strategy. The deduced amino acid sequence shows high identity with known PLDs, and has similar conserved domains. The PLD gene expression under drought stress has been studied using four peanut lines: Tifton 8 and A13 (both drought tolerant) and Georgia Green (moderate) and PI 196754 (drought sensitive). Northern analysis showed that PLD gene expression was induced faster by drought stress in the drought-sensitive lines than the drought tolerance lines. Southern analysis showed that cultivated peanut has multiple copies (3 to 5 copies) of the PLD gene. These results suggest that peanut PLD may be involved in drought sensitivity and tolerance responses. Peanut PLD gene expression may be useful as a tool in germplasm screening for drought tolerance.
收获前黄曲霉毒素污染已被花生行业认定为食品安全和人类健康方面的一个严重问题,因为其具有致癌毒性。干旱胁迫是加剧花生曲霉菌感染和黄曲霉毒素污染的最重要环境因素。培育耐旱花生品种可以减少黄曲霉毒素污染,这将是花生行业的一项重大进展。在本研究中,我们在花生(Arachis hypogaea)中鉴定出一个新的PLD基因,其编码一种假定的磷脂酶D(PLD,EC 3.1.4.4)。通过使用简并杂交寡核苷酸引物策略获得了完整的cDNA序列。推导的氨基酸序列与已知的PLD具有高度同源性,并具有相似的保守结构域。利用四个花生品系研究了干旱胁迫下PLD基因的表达情况:Tifton 8和A13(均耐旱)、Georgia Green(中度耐旱)和PI 196754(干旱敏感)。Northern分析表明,干旱胁迫下,干旱敏感品系中PLD基因的表达比耐旱品系诱导得更快。Southern分析表明,栽培花生有多个PLD基因拷贝(3至5个拷贝)。这些结果表明,花生PLD可能参与干旱敏感性和耐受性反应。花生PLD基因表达可能作为种质耐旱性筛选的一个工具。