Department of Microbiology, College of Basic Sciences and Humanities, Dr. Rajendra Prasad Central Agricultural University, Pusa, Samastipur, Bihar, 848125, India.
ICAR-Central Arid Zone Research Institute, Jodhpur, Rajasthan, 342003, India.
Biol Futur. 2022 Mar;73(1):95-105. doi: 10.1007/s42977-021-00105-0. Epub 2021 Nov 13.
Engineering diazotrophic rice having either an integral component of diazotrophic microbes or placing microbial origin nif gene to the rice plant is the dream of biotechnologist. Rice-Aeschynomene ecosystem of pristine chaur land provides a suitable niche to search Rhizobium endophytes in rice. Accordingly, the work was initiated to search suitable endophytic Rhizobium strain for artificial symbiosis within the roots of Desariya rice and its source through morphological, biochemical and molecular approaches. Detection of Acetylene reduction assay (ARA) activity in sterilized Desariya rice root confirmed the presence of putative diazotrophic endophytes in rice root. Isolates from Aeschynomene aspera L. nodulating and Desariya rice endophytic Rhizobium were evaluated for growth, IAA, morphological and biochemical features. Carbon profiling pattern of both these isolates indicated that Desariya rice endophytic Rhizobium has its similarity with Aeschynomene aspera L. nodulating Rhizobium. 16S rRNA gene sequencing confirmed the presence of endophytic Bradyrhizobium sp. in Desariya rice roots and its similarity with Aeschynomene aspera L. nodulating Bradyrhizobium. Desariya rice Bradyrhizobium may be an ideal candidate in the future for creating artificial symbiosis in rice due to its similarity with Aeschynomene aspera L. Bradyrhizobium.
将固氮微生物的组成部分或微生物来源的 nif 基因导入水稻植物,是生物技术专家的梦想。原始查尔土地上的水稻-田菁生态系统为在水稻中寻找根瘤内生菌提供了一个合适的小生境。因此,我们开始通过形态学、生物化学和分子方法,从水稻根内寻找适合与德萨里亚水稻进行人工共生的内生根瘤菌菌株及其来源。在经过消毒的德萨里亚水稻根中检测到乙炔还原测定(ARA)活性,证实了水稻根中存在潜在的固氮内生菌。对结瘤阿开木和德萨里亚水稻内生根瘤菌的分离物进行了生长、IAA、形态和生化特征的评价。这两种分离物的碳谱模式表明,德萨里亚水稻内生根瘤菌与结瘤阿开木的根瘤菌具有相似性。16S rRNA 基因测序证实了内生慢生根瘤菌存在于德萨里亚水稻根中,与结瘤阿开木的慢生根瘤菌具有相似性。德萨里亚水稻慢生根瘤菌可能因其与结瘤阿开木的相似性,成为未来在水稻中创造人工共生的理想候选菌株。