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High Temperature-Induced Expression of Rice α-Amylases in Developing Endosperm Produces Chalky Grains

机译:发育中的胚乳产生垩白的水稻中α-淀粉的高温诱导表达

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摘要

Global warming impairs grain filling in rice and reduces starch accumulation in the endosperm, leading to chalky-appearing grains, which damages their market value. We found previously that high temperature-induced expression of starch-lytic α-amylases during ripening is crucial for grain chalkiness. Because the rice genome carries at least eight functional α-amylase genes, identification of the α-amylase(s) that contribute most strongly to the production of chalky grains could accelerate efficient breeding. To identify α-amylase genes responsible for the production of chalky grains, we characterized the histological expression pattern of eight α-amylase genes and the influences of their overexpression on grain appearance and carbohydrate components through a series of experiments with transgenic rice plants. The promoter activity of most α-amylase genes was elevated to various extents at high temperature. Among them, the expression of Amy1A and Amy3C was induced in the internal, especially basal to dorsal, region of developing endosperm, whereas that of Amy3D was confined near the ventral aleurone. These regions coincided with the site of occurrence of chalkiness, which was in clear contrast to conventionally known expression patterns of the enzyme in the scutellum and aleurone during seed germination. Furthermore, overexpression of α-amylase genes, except for Amy3E, in developing endosperm produced various degrees of chalky grains without heat exposure, whereas that of Amy3E yielded normal translucent grains, as was the case in the vector control, even though Amy3E-overexpressing grains contained enhanced α-amylase activities. The weight of the chalky grains was decreased due to reduced amounts of starch, and microscopic observation of the chalky part of these grains revealed that their endosperm consisted of loosely packed round starch granules that had numerous pits on their surface, confirming the hydrolysis of the starch reserve by α-amylases. Moreover, the chalky grains contained increased amounts of soluble sugars including maltooligosaccharides at the expense of starch. The integrated analyses proposed that expression of Amy1A, Amy3C, and Amy3D at the specific regions of the developing endosperm could generate the chalkiness. This finding provides the fundamental knowledge to narrow down the targets for the development of high temperature-tolerant premium rice.
机译:全球变暖削弱了稻谷中的谷物填充,并减少了胚乳中的淀粉积累,导致出现白垩的谷物,从而损害了它们的市场价值。我们以前发现,成熟期间高温诱导的淀粉分解α-淀粉酶表达对于谷物白垩化至关重要。由于水稻基因组至少携带8个功能性α-淀粉酶基因,因此鉴定对白垩粒产生最有力贡献的α-淀粉酶可以加速有效育种。为了鉴定负责生产白垩谷粒的α-淀粉酶基因,我们通过一系列转基因水稻植物的实验,表征了八个α-淀粉酶基因的组织学表达模式以及它们的过表达对谷物外观和碳水化合物成分的影响。大多数α-淀粉酶基因的启动子活性在高温下都有不同程度的提高。其中,Amy1A和Amy3C的表达在发育中的胚乳的内部区域,尤其是从基底到背面的区域被诱导,而Amy3D的表达则被限制在腹侧糊粉层附近。这些区域与白垩化发生部位重合,这与种子发芽过程中盾片和糊粉中酶的常规已知表达模式形成鲜明对比。此外,发育中的胚乳中除Amy3E以外的α-淀粉酶基因的过表达产生了不同程度的白垩化颗粒而没有受热,而与载体对照一样,Amy3E产生了正常的半透明颗粒,即使过表达Amy3E的颗粒也是如此含有增强的α-淀粉酶活性。由于淀粉含量的减少,白垩颗粒的重量降低了,显微镜观察这些颗粒的白垩部分显示它们的胚乳由松散堆积的圆形淀粉颗粒组成,这些颗粒表面上有许多凹坑,证实了淀粉的水解。被α-淀粉酶保留。而且,白垩颗粒含有增加量的可溶性糖,包括麦芽低聚糖,但以淀粉为代价。综合分析表明,Amy1A,Amy3C和Amy3D在发育胚乳的特定区域表达可能会产生白垩。这一发现为缩小耐高温优质稻的开发目标提供了基础知识。

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