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小黑麦不同生长阶段干旱胁迫下与光合器官活性和叶片水分状况相关的细胞壁结合酚类物质的数量性状位点

QTLs for cell wall-bound phenolics in relation to the photosynthetic apparatus activity and leaf water status under drought stress at different growth stages of triticale.

作者信息

Hura Tomasz, Tyrka Mirosław, Hura Katarzyna, Ostrowska Agnieszka, Dziurka Kinga

机构信息

Polish Academy of Sciences, The Franciszek Górski Institute of Plant Physiology, Niezapominajek 21, 30-239, Kraków, Poland.

Department of Biochemistry and Biotechnology, Rzeszów University of Technology, Albigowa 472, 37-122, Albigowa, Poland.

出版信息

Mol Genet Genomics. 2017 Apr;292(2):415-433. doi: 10.1007/s00438-016-1276-y. Epub 2016 Dec 27.

Abstract

The present study aimed at identifying the regions of triticale genome responsible for cell wall saturation with phenolic compounds under drought stress during vegetative and generative growth. Moreover, the loci determining the activity of the photosynthetic apparatus, leaf water content (LWC) and osmotic potential (Ψ ) were identified, as leaf hydration and functioning of the photosynthetic apparatus under drought are associated with the content of cell wall-bound phenolics (CWPh). Compared with LWC and Ψ , CWPh fluctuations were more strongly associated with changes in chlorophyll fluorescence. At the vegetative stage, CWPh fluctuations were due to the activity of three loci, of which only QCWPh.4B was also related to changes in F /F and ABS/CS. In the other QTLs (QCWPh.6R.2 and QCWPh.6R.3), the genes of these loci determined also the changes in majority of chlorophyll fluorescence parameters. At the generative stage, the changes in CWPh in loci QCWPh.4B, QCWPh.3R and QCWPh.6R.1 corresponded to those in DI/CS. The locus QCWPh.6R.3, active at V stage, controlled majority of chlorophyll fluorescence parameters. This is the first study on mapping quantitative traits in triticale plants exposed to drought at different stages of development, and the first to present the loci for cell wall-bound phenolics.

摘要

本研究旨在确定小黑麦基因组中负责在营养生长和生殖生长期间干旱胁迫下细胞壁酚类化合物饱和的区域。此外,还确定了决定光合机构活性、叶片含水量(LWC)和渗透势(Ψ)的基因座,因为干旱条件下叶片的水合作用和光合机构的功能与细胞壁结合酚类物质(CWPh)的含量有关。与LWC和Ψ相比,CWPh的波动与叶绿素荧光变化的相关性更强。在营养生长阶段,CWPh的波动归因于三个基因座的活性,其中只有QCWPh.4B也与Fv/Fm和ABS/CS的变化有关。在其他QTL(QCWPh.6R.2和QCWPh.6R.3)中,这些基因座的基因也决定了大多数叶绿素荧光参数的变化。在生殖生长阶段,QCWPh.4B、QCWPh.3R和QCWPh.6R.1基因座中CWPh的变化与DI/CS的变化相对应。在V阶段活跃的QCWPh.6R.3基因座控制了大多数叶绿素荧光参数。这是第一项关于在不同发育阶段遭受干旱的小黑麦植株中绘制数量性状图谱的研究,也是第一项展示细胞壁结合酚类物质基因座的研究。

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