首页> 美国卫生研究院文献>Applied and Environmental Microbiology >The Genotype of the Calcium/Calmodulin-Dependent Protein Kinase Gene (CCaMK) Determines Bacterial Community Diversity in Rice Roots under Paddy and Upland Field Conditions
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The Genotype of the Calcium/Calmodulin-Dependent Protein Kinase Gene (CCaMK) Determines Bacterial Community Diversity in Rice Roots under Paddy and Upland Field Conditions

机译:钙/钙调蛋白依赖性蛋白激酶基因(CCaMK)的基因型决定水稻和旱地条件下水稻根系细菌群落多样性

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摘要

The effects of the Oryza sativa calcium/calmodulin-dependent protein kinase OsCCaMK genotype (dominant homozygous [D], heterozygous [H], recessive homozygous [R]) on rice root-associated bacteria, including endophytes and epiphytes, were examined by using a Tos17 rice mutant line under paddy and upland field conditions. Roots were sampled at the flowering stage and were subjected to clone library analyses. The relative abundance of Alphaproteobacteria was noticeably decreased in R plants under both paddy and upland conditions (0.8% and 3.0%, respectively) relative to those in D plants (10.3% and 17.4%, respectively). Population shifts of the Sphingomonadales and Rhizobiales were mainly responsible for this low abundance in R plants. The abundance of Anaerolineae (Chloroflexi) and Clostridia (Firmicutes) was increased in R plants under paddy conditions. The abundance of a subpopulation of Actinobacteria (Saccharothrix spp. and unclassified Actinosynnemataceae) was increased in R plants under upland conditions. Principal coordinate analysis revealed unidirectional community shifts in relation to OsCCaMK gene dosage under both conditions. In addition, shoot length, tiller number, and plant weight decreased as the OsCCaMK gene dosage decreased under upland conditions. These results suggest significant impacts of OsCCaMK on both the diversity of root-associated bacteria and rice plant growth under both paddy and upland field conditions.
机译:水稻(Oryza sativa)钙/钙调蛋白依赖性蛋白激酶OsCCaMK基因型(显性纯合[D],杂合[H],隐性纯合[R])对水稻根系相关细菌(包括内生真菌和附生真菌)的影响进行了研究。稻田和旱田条件下的Tos17水稻突变株。在开花期对根取样,并进行克隆文库分析。稻田和旱地条件下,R植物的α变形杆菌的相对丰度显着降低(分别为0.8%和3.0%),而D植物则分别为10.3%和17.4%。 Sphingomonadales和Rhizobiales的种群转移是造成R植物中这种低丰度的主要原因。在稻田条件下,R植物的厌氧菌(Chloroflexi)和梭菌(Firmicutes)的丰度增加。在旱地条件下,R植物中放线杆菌属(Saccharothrix spp。和未分类的放线猕猴桃科)亚群的数量增加。主坐标分析显示,在两种情况下,相对于OsCCaMK基因剂量的单向群落转移。此外,在旱地条件下,随着OsCCaMK基因剂量的减少,苗长,分till数和植物重量也会减少。这些结果表明,在稻田和旱田条件下,OsCCaMK对根系相关细菌的多样性和水稻植物的生长均具有重大影响。

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