...
首页> 外文期刊>New Forests >Effect of combined stress (salinity plus hypoxia) and auxin rooting hormone addition on morphology and growth traits in six Salix spp. clones
【24h】

Effect of combined stress (salinity plus hypoxia) and auxin rooting hormone addition on morphology and growth traits in six Salix spp. clones

机译:综合应力(盐度加缺氧)和养肝生物激素添加对六种SALIX SPP中的形态和生长性状的影响。 克隆

获取原文
获取原文并翻译 | 示例
           

摘要

Willows plantations development could be an alternative for hydro-halomorphic soils but it is limited by combined stress salinity + hypoxia (main stressor under waterlogging conditions). We studied the effects of saline stress, alone or interacting with hypoxia, on growth, morphology and rooting process of six willows clones, assessing also whether rooting hormone (H, Indol Butyric Acid) contributes enhancing rooting under combined stress. Three hybrids of Salix matsudana x Salix alba (SmxSa), two of Salix babylonica x Salix alba (SbxSa) and a Salix nigra (Sn4) clone were evaluated in hydroponics. Ten treatments were generated combining salinity [moderate (MS): 5 dS/m, and high (HS): 10 dS/m]; hypoxia (with or without artificial aeration, HypO), and presence or absence of H. After 120 days, shoot and root biomass, root number and length, and hypertrophied lenticel number were evaluated. Contrary to what was expected, SmxSa and SbxSa hybrids showed no adverse additive effects of combined stress compared with saline stress; whereas in Sn4, S + HypO favored root biomass production increasing number and elongation of roots. Salinity was the main limiting factor for root production, being only MS conditions compatible with rooting, although limited. There was no common response in relation to H addition. In Sn4, H potentiated the effects of MS + HypO on root biomass, increasing number of roots. However, it had no positive effect on biomass production in the remaining hybrids, producing a higher root number but shorter in length. More effort is needed to understand the physiological mechanisms behind the response to combined stress in willows.
机译:Willows种植园的发展可能是水卤素土壤的替代方案,但它受到粘附盐度+缺氧(在水涝条件下的主要压力源)的限制。我们研究了盐胁迫,单独或与缺氧相互作用的影响,对六个杨克隆的生长,形态和生根过程,评估是否有助于增强组合应力下的生根。在水培中评估了三种Salix Babylonica X Salix Alba(Smxsa),两种盐糖醇(SmxSa),两种杂种症,两种杂种症x salix alba(sbxsa)和酱油癌(sn4)克隆。产生十种处理组合盐度[中等(MS):5 ds / m,高(HS):10 ds / m];缺氧(有或没有人工曝气,Hypo)和存在或不存在H.在120天后,评估芽和根部生物量,根数和长度,嗜肥的嗜好的必需数。与预期的内容相反,SMXSA和SBXSA杂种与盐胁迫相比,组合应力的不良添加剂效应;而在SN4中,S + Hypo有利于根生物量产量越来越多,根部的伸长率。盐度是根生产的主要限制因素,只有与生根兼容的MS条件,虽然有限。与H添加没有共同的响应。在SN4中,H强调了MS + Hypo对根生物量的影响,越来越多的根。然而,它对剩余的杂种中的生物质产生没有积极影响,产生较高的根数,但长度短。需要更多的努力来了解对柳树综合压力的反应背后的生理机制。

著录项

相似文献

  • 外文文献
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