首页> 外文期刊>日本作物学会紀事 >Harvest index and grain weight decline when wheat cultivar 'Haruyutaka' bred in Hokkaido grows in the warm areas of western Japan [Japanese]
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Harvest index and grain weight decline when wheat cultivar 'Haruyutaka' bred in Hokkaido grows in the warm areas of western Japan [Japanese]

机译:在北海道繁殖的小麦品种“春丰”在日本西部的温暖地区生长时,收获指数和籽粒重量下降[日语]

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摘要

A wheat cultivar, "Haruyutaka", bred in Hokkaido, was planted and examined at nine cultivation conditions of the four seasons, 1995/1996 to 1998/1999, in Yamaguchi, Japan, for the purpose of introducing a new genotype into this area. Another wheat cultivar, "Daichinominori", bred in Kyushu, a part of western Japan in the same area as Yamaguchi, was compared with Haruyutaka. The Haruyutaka cultivar had lower grain yields than Daichinominori did for almost all conditions because it always had a lower harvest index and a smaller 1,000 grain weight. Haruyutaka's culm had a higher content of water soluble carbohydrate at anthesis than at the milk-ripe stage. This suggested that Haruyutaka had accumulated no reserve material in culm during the former grain-filling period. Showing a larger total dry weight, Haruyutaka increased its grain weight, harvest index, and grain yield as it increased its sink capacity. Daichinominori increased its harvest index as it increased its source ability during the grain-filling period. Haruyutaka seemed to achieve a higher grain yield, a higher harvest index, and a heavier 1,000 grain yield as a result of photosynthesis activity that was not high, but of a quick remobilization of reserve material in culm to grain under the environment of western Japan.
机译:为了将一种新的基因型引入该地区,在日本山口市的1995/1996至1998/1999这四个季节的九种栽培条件下,种植并检验了在北海道培育的小麦品种“ Haruyutaka”。将另一种小麦品种“ Daichinominori”在日本西部的部分地区与山口县位于同一地区的九州繁殖,并与春隆进行了比较。在几乎所有条件下,Haruyutaka品种的谷物单产都比Daichinominori的低,因为它总是具有较低的收获指数和较小的1,000粒重。春宫孝的花茎在花期时的水溶性碳水化合物含量比在牛奶成熟阶段的高。这表明Haruyutaka在前一个灌浆期没有在茎中积聚任何储备材料。显示出较大的总干重,Haruyutaka则增加了谷粒的重量,收成指数和谷物产量,因为其增加了库容。 Daichinominori增加了其收获指数,因为它在灌浆期增加了来源能力。 Haruyutaka似乎获得了更高的谷物产量,更高的收获指数以及更高的1000谷物产量,这是由于光合作用的活动并不高,而是由于在日本西部环境下茎秆中的储备物质快速转移到了谷物中。

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