Ahmad F
Department of Botany, Brandon University, Manitoba, Canada.
Cytobios. 2000;101(396):37-53.
Thirty-six accessions, representing the full complement of all the nine annual Cicer L. species, viz C. arietinum, C. reticulatum, C. echinospermum, C. pinnatifidum, C. judaicum, C. bijugum, C. chorassanicum, C. yamashitae and C. cuneatum, were subjected to karyotype analysis for the first time in a single comprehensive study. The detailed karyotype of C. chorassanicum was also investigated for the first time. A 12 h cold water pretreatment and 13 min 60 degrees C 1 N HCl hydrolysis confirmed a somatic chromosome number of 2n = 16 in all the species. Within species interchromosomal size variation was observed to be quite large in C. arietinum, C. reticulatum and C. echinospermum, but not in the remaining six species. Individual chromosome size ranged from 3.77 microns in C. echinospermum to 1.32 microns in C. arietinum while the haploid genome length ranged from 20.65 microns in C. echinospermum to 14.92 microns in C. cuneatum. Ample rearrangement of chromatin among chromosomes within a species was implied to have played a role in Cicer genome evolution. The nine species were classified in two groups based on karyotypic similarity, with the first group comprising the inter-crossable species C. arietinum, C. reticulatum and C. echinospermum, while the remaining species forming the second group. The first group species are also genetically close to each other as deduced by other morphological, biochemical and DNA based studies. Circumstantial evidence has lead to the speculation that perhaps karyotypic similarity and interspecific crossability are positively related to each other.
在一项全面的单一研究中,首次对36份种质进行了核型分析,这些种质代表了所有9种一年生鹰嘴豆属(Cicer L.)物种的全部种类,即鹰嘴豆(C. arietinum)、网脉鹰嘴豆(C. reticulatum)、刺籽鹰嘴豆(C. echinospermum)、羽裂鹰嘴豆(C. pinnatifidum)、犹太鹰嘴豆(C. judaicum)、双荚鹰嘴豆(C. bijugum)、阿富汗鹰嘴豆(C. chorassanicum)、山下鹰嘴豆(C. yamashitae)和楔叶鹰嘴豆(C. cuneatum)。同时,还首次对阿富汗鹰嘴豆的详细核型进行了研究。经过12小时的冷水预处理和13分钟60摄氏度的1N盐酸水解,确认所有物种的体细胞染色体数均为2n = 16。在鹰嘴豆、网脉鹰嘴豆和刺籽鹰嘴豆中,观察到种内染色体间大小变异相当大,但其余6个物种中未观察到这种情况。单个染色体大小范围从刺籽鹰嘴豆的3.77微米到鹰嘴豆的1.32微米,而单倍体基因组长度范围从刺籽鹰嘴豆的20.65微米到楔叶鹰嘴豆的14.92微米。暗示物种内染色体间染色质的大量重排对鹰嘴豆属基因组进化起到了作用。根据核型相似性,将这9个物种分为两组,第一组包括可杂交的物种鹰嘴豆、网脉鹰嘴豆和刺籽鹰嘴豆,其余物种构成第二组。根据其他形态学、生物化学和基于DNA的研究推断,第一组物种在遗传上也彼此接近。间接证据引发了这样的推测,即核型相似性和种间可杂交性可能彼此呈正相关。