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Effect of Rht alleles on wheat grain yield and quality under high temperature and drought stress during booting and anthesis

机译:高温和干旱胁迫下花期Rht等位基因对小麦籽粒产量和品质的影响。

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The present study examined the effects of gibberellin semi-sensitive reduced height (Rht) alleles on wheat grain yield and quality under high temperature and drought stress during booting and anthesis stages. Near-isogenic lines (NILs) of winter wheat (Rht (tall), Rht-B1b, Rht-D1b, RhtB1c, Rht-8c, Rht-D1c, Rht-12) having background of Mercia and Maris Widgeon cultivars were compared under variable temperatures (dayight: 20/12, 27/19, 30/22, 33/25, 36/28, and 39/31 degrees C) and irrigation regimes. Pots were transferred to controlled thermal conditions (Saxcil growth chamber) during booting and anthesis stages and were maintained at field capacity (FC) or had water withheld. High temperature (>30 degrees C) and drought stress for seven consecutive days during booting and anthesis stages reduced the grain yield, while increased nitrogen (N) and sulphur (S) concentrations. A 50 % reduction in grain yield was fitted to have occurred at 37.4 degrees C for well-watered plants and at 31.4 degrees C for drought-stressed plants. The N and S concentrations were higher for severe dwarfs, whereas no significant differences were observed between tall and semi-dwarfs in Mercia. In the taller background (Maris Widgeon), N and S concentrations were significantly higher compared with that in Mercia. In Mercia, the severe dwarf Rht-D1c had higher Hagberg falling number (HFN) and sodium dodecyl sulphate (SDS) sedimentation volume. In both backgrounds, semi-dwarfs and severe dwarfs had higher HFN. Moreover, the SDS sedimentation volumes in Maris Widgeon were also higher than that in Mercia. Greater adaptability and improved grain quality traits suggested that severe dwarf Rht alleles are better able to enhance tolerance to high temperature and drought stress in wheat.
机译:本研究研究了赤霉素半敏感降低高度(Rht)等位基因对小麦和花期干旱和高温胁迫下小麦籽粒产量和品质的影响。在可变条件下比较了具有Mercia和Maris Widgeon品种背景的冬小麦(Rht(高),Rht-B1b,Rht-D1b,RhtB1c,Rht-8c,Rht-D1c,Rht-12)的近等基因系(NIL)温度(白天/晚上:20 / 12、27 / 19、30 / 22、33 / 25、36 / 28和39/31摄氏度)和灌溉制度。在启动和开花期,将盆转移到受控的热条件下(Saxcil生长室),并保持在田间持水量(FC)或保留水分。孕穗期和开花期连续七天高温(> 30摄氏度)和干旱胁迫降低了谷物的产量,同时增加了氮(N)和硫(S)的浓度。据估计,对于水分充足的植物,谷物产量降低了50%,在37.4摄氏度时发生;对于干旱胁迫的植物,谷物产量降低至31.4摄氏度。重度矮人的氮和硫浓度较高,而梅尔西亚高矮人和半矮人之间没有观察到显着差异。在较高的背景下(Maris Widgeon),N和S的浓度明显高于Mercia。在Mercia,重度矮人Rht-D1c的Hagberg下降数(HFN)和十二烷基硫酸钠(SDS)的沉降量较高。在这两种背景下,半矮人和重矮人的HFN都较高。此外,Maris Widgeon的SDS沉降量也高于Mercia。较高的适应性和改善的谷物品质性状表明,严重的矮小的Rht等位基因能够更好地增强小麦对高温和干旱胁迫的耐受性。

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