Results 11 to 20 of about 205 (120)
InnB, a Novel Type III Effector of Bradyrhizobium elkanii USDA61, Controls Symbiosis With Vigna Species [PDF]
Bradyrhizobium elkanii USDA61 is incompatible with mung bean (Vigna radiata cv. KPS1) and soybean (Glycine max cv. BARC2) and unable to nodulate either plant. This incompatibility is due to the presence of a functional type III secretion system (T3SS) that translocates effector protein into host cells. We previously identified five genes in B.
Michael Göttfert +2 more
exaly +4 more sources
O objetivo deste trabalho foi identificar QTL (locos de caráter quantitativo), utilizando marcadores do tipo microssatélites (SSR), relacionados à fixação biológica de nitrogênio (FBN), em uma população F2:7 de cultivares de soja (Glycine max) com ...
Maria Aparecida dos Santos +2 more
doaj +2 more sources
A eficiência das estirpes de Bradyrhizobium com características Hup+ (SR e USDA-110), Hup- (29W) e Hup hr (SEMIA-587) foi avaliada em caupi (Vigna unguiculata L.), cultivares IPA-202, BR-3 e VITA-4.
Alessandra Alves de Souza +5 more
doaj +2 more sources
Pterocarpus angolensis, a leguminous tree native to the dry woodlands of Southern Africa, provides valuable timber, but is threatened by land conversion and overharvesting while showing limited natural regeneration.
Wiebke Bünger +7 more
doaj +1 more source
QTLs underlying the genetic interrelationship between efficient compatibility of Bradyrhizobium strains with soybean and genistein secretion by soybean roots. [PDF]
Soybean plants establish symbiotic relationships with soil rhizobia which form nodules on the plant roots. Nodule formation starts when the plant roots exudate isoflavonoids that induce nod gene expression of a specific Bradyrhizobium.
Clarissien Ramongolalaina +2 more
doaj +1 more source
Characterization of Bradyrhizobium elkanii Type III Secretion System [PDF]
Type III secretion systems (T3SS) have been identified in a number of rhizobia and were shown to affect symbiosis with legumes. The genes encoding the conserved core of the T3SS (rhc; rhizobium conserved) are highly conserved in all cases, although differences exist in the secreted proteins.
S. Okazaki +3 more
openaire +3 more sources
A Proteomic Network for Symbiotic Nitrogen Fixation Efficiency in Bradyrhizobium elkanii [PDF]
Rhizobia colonize legumes and reduce N2 to NH3 in root nodules. The current model is that symbiotic rhizobia bacteroids avoid assimilating this NH3. Instead, host legume cells form glutamine from NH3, and the nitrogen is returned to the bacteroid as dicarboxylates, peptides, and amino acids.
Bret, Cooper +6 more
openaire +2 more sources
Draft Genome Sequence of Bradyrhizobium elkanii Tn phoA 33, a Producer of Polyhydroxyalkanoates [PDF]
ABSTRACT The genus Bradyrhizobium comprises bacteria with the ability to form nitrogen-fixing symbioses with legumes. They are of great interest in agriculture, as well as for the production of biopolymers such as polyhydroxyalkanoates.
Lopes, Erica M. +6 more
openaire +3 more sources
A expansão da cultura da soja evidenciou uma alta especificidade hospedeira, requerendo a pesquisa de novas estirpes que apresentassem capacidade de nodular a soja e bom potencial de competição com a população de rizóbios naturalizada nos solos.
Fabíola Gomes de Carvalho +2 more
doaj +1 more source
Seeds inoculation and nitrogen fertilization for cowpea production on latosol in the western amazon
The cowpea is an important food crop in the North and Northeast regions of Brazil, where the beans are consumed either green or ripe. Yet, considering its socio-economic importance and its tropical origin, cowpea yields are low in those regions, due to ...
Vladis Barreto Moreira +4 more
doaj +3 more sources

