首页> 外文期刊>Tarim Bilimleri Dergisi: Journal of Agricultural Sciences >Grain Yield and Some Physiological Traits Associated with Heat Tolerance in Bread Wheat ( Triticum aestivum L.) Genotypes
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Grain Yield and Some Physiological Traits Associated with Heat Tolerance in Bread Wheat ( Triticum aestivum L.) Genotypes

机译:面包小麦(Triticum aestivum L.)基因型的产量与耐热性相关的某些生理特性。

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This research was carried out in the experimental fields of Department of Field Crops, Faculty of Agriculture, theUniversity of Nam?k Kemal in 2014-2015. In the study, totally 30 bread wheat (Triticum aestivum L.) genotypes(15 cultivars; early, medium-early and late-maturing; 10 lines are tolerant to the heat-temperature stress which wereprovided by CIMMYT-International Maize and Wheat Improvement Center), 5 lines (were taken from the sameuniversity’s wheat breeding program which was collaborated by the CIMMYT) were used as an experimental material.The experiment was adjusted in a split-plot design with 3 replicates. Sowing dates (Normal (NS ≈ November 09, 2014)and Late sowing (LS ≈ January 09, 2015)) were constituted the main plots, and the genotypes constituted the sub-plots.These physiological traits ((membrane thermostability (MT), canopy temperature (CT), leaf chlorophyll content (LCC)and stomatal conductance (SC)) were measured at the LS stage due to giving much more correct, logical and meaningfulresults, but grain yield (GY) was fixed for all the sowing dates. Obtained findings are: The GY was varied between (4.35-6.34 t ha-1) for genotypes; the MT was changed between (10.58-66.25%); the CT was realized between (17.67-22.00 oC);the LCC was varied between (38.30-53.30 SPAD) and the SC was changed between (25.20-166.80 mmol m-2 s-1). It wasobserved that most of the CIMMYT originated genotypes are tolerant to high-temperature stress and most of the wheatsthat are grown in Thrace Region are negatively affected by the high-temperature stress.
机译:这项研究是在2014年至2015年期间,在Namkkmal大学的农学院农作物系的实验领域中进行的。本研究共研究了30个面包小麦基因型(15个品种;早,中早和晚熟;耐高温胁迫的10系),由CIMMYT-国际玉米和小麦改良中心提供),以5条品系(来自CIMMYT合作的同一大学的小麦育种计划)作为实验材料,以分块图设计对实验进行了调整,重复了3次。播期(正常(NS≈2014年11月9日)和后期播种(LS≈2015年1月9日))是主要地块,基因型构成了子图。这些生理特性((膜热稳定性(MT),在LS阶段对冠层温度(CT),叶片叶绿素含量(LCC)和气孔导度(SC)进行了测量,这是由于给出了更加正确,合乎逻辑和有意义的结果,但是在所有播种期谷粒产量(GY)都是固定的。获得的发现是:基因型的GY在(4.35-6.34 t ha-1)之间变化; MT在(10.58-66.25%)之间变化; CT在(17.67-22.00 oC)之间实现; LCC在(17.67-22.00 oC)之间变化。 (SPAD)(38.30-53.30 SPAD)和SC在(25.20-166.80 mmol m-2 s-1)之间变化。观察到,大多数CIMMYT起源的基因型可以忍受高温胁迫,并且大多数在色雷斯种植的小麦该区域受到高温应力的不利影响。

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