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Effect of High Temperature at Ripening Stage on the Reserve Accumulation in Seed in Some Rice Cultivars

机译:成熟期高温对部分水稻种子蓄积量的影响

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摘要

The resistance to high-temperature stress and the structural appearance of the imperfect grains caused by a high temperature at the ripening stage were studied using 13 selected cultivars of rice. High temperature treatment (daily maximum temperature range, 32-40℃) given from the 4th day after heading caused the decrease in panicle weight in all of the cultivars examined. The number of empty grains in the upper and lower parts of a panicle was increased by the high temperature in 10 cultivars. Cultivars KRN, Citanduy, Belle patna and BPB were tolerant to the high-temperature treatment at the ripening stage, and cvs. Koshihikari, Sanlicun, Tainung 67, Yamada-nishiki and Lady Wright were sensitive. Light microscopic observation showed that, the whole endosperm was covered with a nucellar epidermis (NE) under both high and natural temperature (26-31℃) conditions at the first week after heading (WAH). Under high-temperature conditions the NE degenerated earlier than under natural temperature conditions. Scanning electron microscopic observation showed that, the endosperm cells of the seeds with a specific gravity (s.g.) of higher than 1.06 had large amyloplasts filled with starch granules. However, the endosperm cells of seeds with a s.g. of 1.00- 1.06 had many small amyloplasts containing small single starch granules and had numerous spaces among the amyloplasts. In the endosperm cells at the dorsal side of imperfect grain, layered structures showing progressive decomposition of starch granules were observed.
机译:利用13个水稻品种,研究了水稻成熟期对高温胁迫的抗性和不成熟粒的结构外观。抽穗后第4天开始的高温处理(每日最高温度范围为32-40℃)导致所有受调查品种的穗重下降。 10个品种的高温使穗上部和下部的空粒数目增加。 KRN,Citanduy,Belle patna和BPB品种在成熟期和cvs都耐高温。 Koshihikari,Sanlicun,Tainung 67,Yamada-nishiki和Lady Wright很敏感。光学显微镜观察表明,抽head后第一周(WAH)在高温和自然温度(26-31℃)条件下,整个胚乳都被细胞核表皮(NE)覆盖。在高温条件下,NE的降解要比在自然温度条件下提前。扫描电子显微镜观察表明,比重(s.g.)高于1.06的种子的胚乳细胞具有充满淀粉颗粒的大的淀粉质体。但是,种子的胚乳细胞具有1.00-1.06中的Aβ具有许多含有小的单个淀粉颗粒的小淀粉状体,并且在这些淀粉状体之间具有许多空间。在不完美谷物背侧的胚乳细胞中,观察到显示淀粉颗粒逐渐分解的层状结构。

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