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首页> 外文期刊>Journal of Science and Technology of Greenhouse Culture >Assessment of triticale (Triticale spp) root morphology on seed production under water deficit conditions
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Assessment of triticale (Triticale spp) root morphology on seed production under water deficit conditions

机译:缺水条件下黑小麦(Triticale spp)根系形态对种子生产的评估

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摘要

Plant roots, with respect to their intrinsic characteristics, have important role in both improvement and development of germplasms of drought resistant plants. This experiment was conducted to study direct and indirect effects of root morphological traits on grain yield of four triticale genotypes (three promising lines of ET-82-8, ET-82-15 and ET-79-17 along with the conventional Junillo-92 cultivar) under two available moisture levels in soil (irrigation after 50% moisture depletion in the root zone, as control) and moisture stress (irrigation after 80% moisture depletion in the root zone) as a randomized complete blocks design in factorial arrangement with four replications, in Research Greenhouse of College of Agriculture, Ferdowsi University, Mashhad, Iran, in 2008. The results showed that water stress caused a 9% reduction in root depth development. Also, the difference between deepest root in ET-82-15 and the shallowest root in Junillo-92 was about 8.2 cm. Delay in irrigation caused a 25% reduction in accumulated root length. The 43% difference between highest accumulated root length in ET-82-15 and lowest accumulated root length in ET-79-17 was significant at 1% level. The role of root morphology of these genotypes on seed production was different under various soil moisture conditions. In optimum soil water content, direct effect of accumulated root length with regression coefficient of 0.543 was more than water deficit conditions with regression coefficient of 0.286. On the other hand, direct relation of total root surface with grain yield was negative in normal moisture conditions and negative under water deficit. In general, it seems that accumulated root length and root surface are effective characteristics in seed production of these genotypes total root surface has more important role in water deficit conditions, and accumulated root length in optimum soil moisture levels. Keywords: Triticale, Root depth, Accumulated root length, Total root surface. Full-Text Type of Study: Research | Subject: Water Use Management Received: 2012/06/22 | Accepted: 2013/04/15 | Published: 2014/02/27 Send email to the article author Related Websites Scientific Publications Commission - Health Ministry Scientific Publications Commission - Science Ministry Yektaweb Company Site Keywords ?????, Academic Journal, Scientific Article, ???? ????? ??, ???? ????? ??, ???? ????? ??, ???? ????? ??, ???? ????? ??, ???? ????? ??, ???? ?? Vote ? 2015 All Rights Reserved | Journal of Science and Technology of Greenhouse Culture -Isfahan University of Technology
机译:就其固有特性而言,植物根在抗旱植物种质的改良和发展中均具有重要作用。进行本实验以研究根系形态性状对四种小黑麦基因型(ET-82-8,ET-82-15和ET-79-17以及常规的Junillo-92三种有前景的系)的籽粒产量的直接和间接影响在两个可用土壤水分水平下(根区域缺水50%后进行灌溉,作为对照)和水分胁迫(根区域缺水80%后进行灌溉)作为随机完整块设计,按因子分配,四个复制品于2008年在伊朗马什哈德的Ferdowsi大学农业学院的研究温室中进行。结果表明,水分胁迫导致根深发育减少9%。另外,ET-82-15中最深的根与Junillo-92中最浅的根之间的差异约为8.2 cm。灌溉延迟导致根系累积长度减少25%。 ET-82-15中最高累积根长与ET-79-17中最低累积根长之间的43%差异在1%的水平上很显着。在不同的土壤水分条件下,这些基因型的根系形态对种子生产的作用是不同的。在最佳土壤含水量下,累积根长的直接影响(回归系数为0.543)大于水分亏缺条件(回归系数为0.286)。另一方面,在正常水分条件下,总根表面与籽粒产量的直接关系为负,而在缺水条件下为负。通常,似乎累积的根长和根表面是这些基因型种子生产中的有效特征。总的根表面在缺水条件下具有更重要的作用,而累积的根长在最佳土壤水分含量中具有重要作用。关键字:黑小麦,根深,累积根长,总根表面。全文研究类型:研究|主题:用水管理收到日期:2012/06/22 |接受:2013/04/15 |发布:2014/02/27发送电子邮件给文章作者相关网站科学出版物委员会-卫生部科学出版物委员会-科学部Yektaweb公司网站关键字??????,Academic Journal,Scientific Article,???? ?????? ??,???? ?????? ??,???? ?????? ??,???? ?????? ??,???? ?????? ??,???? ?????? ??,???? ??投票吗? 2015版权所有|温室文化科学技术杂志-伊斯法罕工业大学

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