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Agronomic assessment of the wheat semi-dwarfing gene Rht8 in contrasting nitrogen treatments and water regimes

机译:氮素处理和水分调控下小麦半矮基因Rht8的农艺学评价

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摘要

Reduced height 8 (Rht8) is the main alternative to the GA-insensitive Rht alleles in hot and dry environments where it reduces plant height without yield penalty. The potential of Rht8 in northern-European wheat breeding remains unclear, since the close linkage with the photoperiod-insensitive allele Ppd-D1a is unfavourable in the relatively cool summers. In the present study, two near-isogenic lines (NILs) contrasting for the Rht8/tall allele from Mara in a UK-adapted and photoperiod-sensitive wheat variety were evaluated in trials with varying nitrogen fertiliser (N) treatments and water regimes across sites in the UK and Spain.The Rht8 introgression was associated with a robust height reduction of 11% regardless of N treatment and water regime and the Rht8 NIL was more resistant to root-lodging at agronomically-relevant N levels than the tall NIL. In the UK with reduced solar radiation over the growing season than the site in Spain, the Rht8 NIL showed a 10% yield penalty at standard agronomic N levels due to concomitant reduction in grain number and spike number whereas grain weight and harvest index were not significantly different to the tall NIL. The yield penalty associated with the Rht8 introgression was overcome at low N and in irrigated conditions in the UK, and in the high-temperature site in Spain. Decreased spike length and constant spikelet number in the Rht8 NIL resulted in spike compaction of 15%, independent of N and water regime. The genetic interval of Rht8 overlaps with the compactum gene on 2DS, raising the possibility of the same causative gene. Further genetic dissection of these loci is required.
机译:降低高度8(Rht8)是炎热和干燥环境中对GA不敏感的Rht等位基因的主要替代品,在不增加产量的情况下,降低植物高度。 Rht8在北欧小麦育种中的潜力尚不清楚,因为在相对凉爽的夏季,与光周期不敏感的等位基因Ppd-D1a的紧密联系是不利的。在本研究中,在不同地点施以不同氮肥和水制度的试验中,评估了两个近等基因系(NILs)与英国适应性和光周期敏感性小麦品种中来自马拉的Rht8 /高等位基因形成对比。在英国和西班牙,无论氮素处理和水处理方式如何,Rht8渗入都使身高显着降低11%,并且与高NIL相比,Rht8 NIL在与农艺相关的N水平下对根倒塌的抵抗力更高。在英国,整个生长季节的太阳辐射比西班牙低,由于谷物数量和穗数的同时减少,Rht8 NIL在标准农艺氮水平下表现出10%的产量损失,而谷物重量和收获指数却不明显不同于高个子的NIL。在英国和西班牙,在低氮和灌溉条件下,克服了与Rht8基因渗入相关的产量损失。 Rht8 NIL中降低的穗长和恒定的小穗数导致了15%的穗压实,与氮和水分状况无关。 Rht8的遗传间隔与2DS上的致密基因重叠,从而增加了相同致病基因的可能性。这些基因座需要进一步的遗传解剖。

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