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Drought Stress Tolerance and Photosynthetic Activity of Alloplasmic Lines T. dicoccum x T. aestivum

机译:异麦线小麦x普通小麦的耐旱性和光合活性。

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摘要

Tetraploid species Shuebl is a potential source of drought tolerance for cultivated wheat, including common wheat. This paper describes the genotyping of nine stable allolines isolated in the offspring from crossing of x L. using 21 microsatellite (simple sequence repeats—SSR) markers and two cytoplasmic mitochondrial markers to orf256, rps19-p genes; evaluation of drought tolerance of allolines at different stages of ontogenesis (growth parameters, relative water content, quantum efficiency of Photosystem II, electron transport rate, energy dissipated in Photosystem II); and the study of drought tolerance regulator gene with allele-specific PCR (AS-MARKER) and partial sequence analysis. Most allolines differ in genomic composition and introgressions. Four allolines—D-b-05, D-d-05, D-d-05b, and D-41-05—revealed signs of drought tolerance of varying degrees. The more drought tolerant D-41-05 line was also characterized by allele introgression from . A number of non-specific patterns and significant differences in allolines in regulation of physiological parameters in drought conditions is identified. Changes in photosynthetic activity in stress-drought are shown to reflect the level of drought tolerance of the forms studied. The contribution of different combinations of nuclear/cytoplasmic genome and alleles of in allolines to the formation of stress tolerance and photosynthetic activity is discussed.
机译:四倍体物种Shuebl是耕作小麦(包括普通小麦)潜在的耐旱性来源。本文描述了从后代中分离出的9个稳定等位基因的基因分型,它们是通过使用21个微卫星(简单序列重复-SSR)标记和两个细胞质线粒体标记对orf256,rps19-p基因进行的x L杂交而获得的。评价个体发育不同阶段的同素异体的耐旱性(生长参数,相对含水量,光系统II的量子效率,电子传输速率,光系统II的耗能);等位基因特异性PCR(AS-MARKER)和部分序列分析研究抗旱调控基因。大多数同素异形体在基因组组成和基因渗入方面不同。 D-b-05,D-d-05,D-d-05b和D-41-05这四种同素异形体显示了不同程度的耐旱性。更耐旱的D-41-05品系的特征还在于等位基因渗入。在干旱条件下,在生理参数调节中存在许多非特异性模式和等位线的显着差异。研究表明,干旱胁迫下光合作用的变化反映了所研究形式的耐旱水平。讨论了核/细胞质基因组和等位基因的等位基因的不同组合对胁迫耐受性和光合作用的形成的贡献。

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