【摘 要】
:
Male sterility plays an important role component of heterosis utilization in Brassica napus L.The B.napus line,7-7365ABC, is a recessive epistatic genic male sterile (REGMS) three-line system.The phen
【机 构】
:
National Key Laboratory of Crop Genetic Improvement,National Sub-center of Rapeseed Improvement in W
【出 处】
:
中国作物学会油料作物专业委员会第七次会员代表大会暨学术年会
论文部分内容阅读
Male sterility plays an important role component of heterosis utilization in Brassica napus L.The B.napus line,7-7365ABC, is a recessive epistatic genic male sterile (REGMS) three-line system.The phenotype of 7-7365A with two pairs of recessive duplicate male sterile genes (Bnms3 and Bnms4) and one pair of dominant epistatic inhibitor gene (BnRfRf) is male sterility, 7-7365 B with one pair of heterozygous gene BnMs3, only this locus is different from 7-7365A, is male fertility, and 7-7365C with the recessive homozygous genotypes at three loci shows male fertility.Histological studies leading to male sterility, expression regulation pathways and the role of ABA in the anther development of REGMS were reported here.In the male sterile line 7-7365A, tapetum cells and microspore mother cells separation was effected, which leading to failure of microspores release.The activity of polygalacturonase (PG) and the expression of the pectin methylesterase (AT3g06830) gene were significantly down regulated.Nine genes were down regulated in 7-7365A compared with 7-7365B and 7-7365C including tapetum specially expressed A3, A9, Ms1 genes and ABA responding gene Kin1.Exceptionality, gene AT5G09480.1 was down regulated in 7-7365B and 7-7365A compared with 7-7365C.ABA concentration in 7-7365B was significantly higher than that in 7-7365A and 7-7365C, respectively.We proposed that the REGMS is controlled by the main pathway of male sterile metabolism positively regulated by the BnMs3 gene and the supplementary pathway negatively regulated by the BnRf gene.ABA might control the genes expression for cell separation during early anther development in the main pathway.
其他文献
Oryza sativa and Brassica napus-two important crops for food and oil, respectively-share high seed yield as a common breeding goal.As a model plant, O.sativa genomics have been intensively investigate
Meiotic nondisjunction during microsporegenesis can lead to aneuploid gametes formation and reduced pollen fertility in plants.This paper reports the prevalence of meiosis Ⅰ nondisjunction in a resynt
Yellow-seeded Brassica napus was for the first time developed from interspecific crosses using yellow-seeded B.juncea (AABB), yellow-seeded B.oleracea (CC), and black-seeded artificial B.napus (AACC).
Bleomycin, a glycopeptide antibiotic produced by the bacterium Streptomyces verticillus, has been demonstrated to be an effective mutagen in Arabidopsis thaliana.The objective of the present study was
7365AB, a recessive genetic male sterility (RGMS) system, is controlled by BnMs3 in Brassica napus which encodes a Tic40 protein required for tapetum development.However, the role of BnMs3 in rapeseed
Here, we describe the characteristics of a Brassica napus male sterile mutant 7365A with loss of the BnMs3 gene, which exhibits abnormal enlargement of the tapetal cells during meiosis.Later in develo
S45A, a double recessive mutant at both BnMs1 and BnMs2 loci in Brassica napus, produces no pollen in mature anthers and no seeds by self fertilization.The BnMs1 and BnMs2 genes, which have redundant
Sclerotinia stem rot, caused by fungus Sclerotinia sclerotiorum, is one of the most devastating diseases of rapeseed (Brassica napus L.) in China.The two major factors in limiting developing disease r
Yellow seed color, which results from a thinner seed coat, is associated with improved feed quality of rapeseed meal and increased oil and protein contents.However, this trait follows various genetic
Both the pollination control system and genetic distance are major factors in the utilization of crop heterosis.The recessive genic male sterile line (RGMS), 7-7365A (Bnms3ms3ms4ms4), has been widely