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Effects of Rht17 in combination with Vrn-B1 and Ppd-D1 alleles on agronomic traits in wheat in black earth and non-black earth regions

机译:rhT17与VRN-B1和PPD-D1相结合的影响对黑土和非黑土地区小麦农艺性状的效果

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BACKGROUND:Plant height is an important wheat trait that is regulated by multiple genes, among which Rht is of the utmost value. In wheat, Rht-B1p (=Rht17) is a mutant allele of the Rht gene that encodes for a DELLA-protein and results in the development of gibberellin-insensitive plants with a dwarfing phenotype. The pleiotropic effects of dwarfing genes on yield are highly dependent on both the genetic background and the environmental conditions. In Russia, the Central Non-Black Earth Region and Krasnodar Krai are two economically important regions that require differing management for sustainable wheat production for food, feed and industry. The purpose of our study was to compare the pleiotropic effects of Rht-B1p on the main valuable agronomic traits in the F 3:4 families of the spring bread wheat Chris Mutant/Novosibirskaya 67 in the genetic background of Vrn-B1a/vrn-B1 (spring/winter phenotype) and Ppd-D1a/Ppd-D1b (insensitivity/sensitivity to photoperiod) alleles in a field experiment in Moscow and Krasnodar Krai.RESULTS:Plant height was reduced on average by 21?cm (28%) and 25?cm (30%), respectively; Ppd-D1a slightly strengthened the dwarfing effect in Moscow and mitigated it in Krasnodar Krai. Grain weight of the main spike was reduced by Rht-B1p in Moscow and to lesser extent in Krasnodar; Ppd-D1a and Vrn-B1a tended to partially compensate for this loss in Krasnodar Krai. Thousand grain weight was reduced on average by 5.3?g (16%) and 2.9?g (10%) in Moscow and Krasnodar Krai, respectively, but was partially compensated for by Ppd-D1a in Krasnodar Krai. Harvest index was increased due to Rht-B1p by 6 and 10% in Moscow and Krasnodar Krai, respectively. Rht-B1p resulted in a delay of heading by 1-2?days in Moscow. Ppd-D1a accelerated heading by 1?day and 6?days in Moscow and in Krasnodar Krai, respectively.CONCLUSIONS:Rht-B1p could be introduced into wheat breeding along with dwarfing genes such as Rht-B1b and Rht-D1b. Special attention should be paid to its combination with Ppd-D1a and Vrn-B1a as regulators of developmental rates, compensators of adverse effects of Rht-B1p on productivity and enhancers of positive effect of Rht-B1p on harvest index.
机译:背景:植物高度是由多种基因调节的重要小麦特征,其中RHT是最有价值的。在小麦中,rHT-B1P(= rHT17)是rHT基因的突变等位基因,其编码Della-蛋白,导致嗜酸性表型的嗜酸甘油蛋白的不敏感植物的发育。矮化基因对产量的热感效应高度依赖于遗传背景和环境条件。在俄罗斯,中央非黑土地区和Krasnodar Krai是两种经济上重要的地区,需要对食品,饲料和行业的可持续小麦产量不同的管理。我们研究的目的是比较RHT-B1P在VRN-B1A / VRN-B1的遗传背景下的春季面包小麦克里斯突变体/新西伯利亚群体67的主要有价值农艺性状(Spring /冬季表型)和PPD-D1A / PPD-D1B(对光周期的不敏感性/敏感性)在莫斯科和Krasnodar Krai的田间实验中的等位基因中的等位基因:结果分别是厘米(30%); PPD-D1A在莫斯科略微加强矮化效果,并在Krasnodar Krai中减轻了它。在莫斯科的RHT-B1P减少了主要尖峰的粒重,并且在克拉斯诺达尔的程度较小; PPD-D1A和VRN-B1A倾向于部分补偿Krasnodar Krai的这种损失。千粒重量平均降低了5.3?g(16%)和2.9?g(10%)在莫斯科和Krasnodar krai,但在Krasnodar Krai中的PPD-D1A部分地补偿了PPD-D1A。由于莫斯科和Krasnodar krai分别为rHT-B1P,收获指数增加了6%和10%。 rht-b1p导致莫斯科的1-2天延迟1-2天。 PPD-D1A分别加速了1?日和6个?在莫斯科和克拉斯诺达尔克莱的日期和6天。结论:rHT-B1p可以与矮化基因一起引入小麦育种,例如rHT-B1b和rhT-D1b。应特别注意其与PPD-D1A和VRN-B1A的组合作为发育速率调节因子,RHT-B1P对生产率和rhT-B1P积极作用的增强剂对收获指数的积极作用的不利影响。

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