...
首页> 外文期刊>Crop and Pasture Science >Association between collection site soil pH and chlorosis in Lupinus angustifolius induced by a fine-textured, alkaline soil
【24h】

Association between collection site soil pH and chlorosis in Lupinus angustifolius induced by a fine-textured, alkaline soil

机译:质地细密的碱性土壤诱导的羽扇豆集水区土壤pH与绿化之间的关系

获取原文
获取原文并翻译 | 示例
           

摘要

Collection site soil pH may be a useful predictor of tolerance in Lupznus angustifolzus to chlorosis induced by alkaline soils. We examined a range of genotypes from the Mediterranean region for their tolerance of an alkaline sandy clay loam (pH 8.8) from Merredin, Western Australia. Fifteen wild L. angustifolius lines, collected on a variety of soils that ranged in pH from 4.2 to 9.0, were compared with cultivars of L. angustifolzus and known alkaline-tolerant (L. cosentinii) and alkaline-sensitive (L. luteus) lupin species. Five-week-old seedlings varied greatly in chlorosis on the alkaline soil, from almost no chlorosis (as in L. cosentinzi cv Erregulla) to severely chlorotic (L. angustifolius line MJS176 from Spain). No lines were chlorotic after acid amelioration of the soil. Chlorosis score in wild L. angustifolius was not significantly correlated with soil pH at the collection site and was not associated with a particular soil texture, but there was a significant correlation between altitude of collection sites and chlorosis scores. Chlorosis-sensitive lines were from higher altitudes, had lower root and shoot fresh weight, were lower in Fe, Mn and K and were higher in Zn, P, and S in new growth than resistant lines. Chlorosis-sensitive lines also had the largest increases in fresh weight of roots and shoots in response to soil acidification. Genotypes with better root growth and therefore lower chlorosis symptoms on alkaline soil did not necessarily have the strongest root growth on acid ameliorated soil. Soil pH at the collection site in the Mediterranean region was not a reliable predictor of chlorosis in L. angustifolius induced by an alkaline fine-textured soil in Western Australia, although significant variation in tolerance to this soil was found within the species.
机译:收集地点的土壤pH值可能是一个有用的预测值,表明小叶锦葵对碱性土壤诱导的绿化病具有耐受性。我们检查了来自地中海地区的一系列基因型对来自西澳大利亚梅雷丁的碱性砂质壤土(pH 8.8)的耐受性。在15种pH范围为4.2至9.0的土壤中收集的野生野生安氏乳杆菌菌株与安氏乳杆菌和已知耐碱(Cosentinii)和碱敏感(Lutetus)羽扇豆的品种进行了比较种类。五周龄的幼苗在碱性土壤上的绿化变化很大,从几乎没有绿化(如L. cosentinzi cv Erregulla)到严重绿化(西班牙的L. angustifolius品系MJS176)。酸改善土壤后,没有线发生绿藻。野生古铜色湖藻的绿化评分与收集地点的土壤pH值没有显着相关,并且与特定的土壤质地也没有相关性,但是收集地点的海拔高度与绿化分数之间存在显着的相关性。与抗性系相比,新生长的对氯离子敏感的系来自较高的海拔,具有较低的根和枝条鲜重,Fe,Mn和K较低,而Zn,P和S较高。对土壤酸化的反应,对绿化敏感的系的根和茎的鲜重增加量也最大。在碱性土壤上具有较好的根系生长并因此具有较低的绿化症状的基因型在酸性改善的土壤上不一定具有最强的根系生长。尽管在该物种内发现了对这种土壤的耐受性的显着变化,但地中海地区采集点的土壤pH值并不是可靠的预测值,因为西澳大利亚州的一种碱性细纹理土壤会导致罗氏沼虾发生绿化。

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